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J. Behari (2010)
The Wnt/β-catenin signaling pathway in liver biology and diseaseExpert Review of Gastroenterology & Hepatology, 4
V. Savolainen, M. Perola, K. Lalu, A. Penttilä, Ismo Virtanen, P. Karhunen (1995)
Early perivenular fibrogenesis--precirrhotic lesions among moderate alcohol consumers and chronic alcoholics.Journal of hepatology, 23 5
Xi-ping Cheng, Sun Kim, H. Okamoto, Yurong Xin, G. Yancopoulos, A. Murphy, J. Gromada (2018)
Glucagon contributes to liver zonationProceedings of the National Academy of Sciences of the United States of America, 115
E. Bhunchet, K. Wake (1998)
The portal lobule in rat liver fibrosis: A re‐evaluation of the liver unitHepatology, 27
K. Halpern, Rom Shenhav, H. Massalha, Beáta Tóth, A. Egozi, Efi Massasa, Chiara Medgalia, Eyal David, Amir Giladi, A. Moor, Z. Porat, I. Amit, S. Itzkovitz (2018)
Paired-cell sequencing enables spatial gene expression mapping of liver endothelial cellsNature biotechnology, 36
Thomas Leibing, C. Géraud, I. Augustin, M. Boutros, H. Augustin, J. Okun, C. Langhans, Johanna Zierow, Sebastian Wohlfeil, Victor Olsavszky, K. Schledzewski, S. Goerdt, Philipp‐Sebastian Koch (2018)
Angiocrine Wnt signaling controls liver growth and metabolic maturation in miceHepatology (Baltimore, Md.), 68
A. Geerts, J. Lazou, P. Bleser, E. Wisse (1991)
Tissue distribution, quantitation and proliferation kinetics of fat‐storing cells in carbon tetrachloride–injured rat liverHepatology, 13
C. Lieber, L. Decarli (1994)
[58] Animal models of chronic ethanol toxicityMethods in Enzymology, 233
A. Moorman, P. Boer, R. Charles, W. Lamers (1990)
Diet‐ and hormone‐induced reversal of the carbamoylphosphate synthetase mRNA gradient in the rat liver lobulusFEBS Letters, 276
S. Gerbal-Chaloin, Anne-Sophie Dumé, Philippe Briolotti, S. Klieber, E. Raulet, Cédric Duret, J. Fabre, J. Ramos, P. Maurel, Martine Daujat-Chavanieu (2014)
The WNT/β-Catenin Pathway Is a Transcriptional Regulator of CYP2E1, CYP1A2, and Aryl Hydrocarbon Receptor Gene Expression in Primary Human HepatocytesMolecular Pharmacology, 86
D. Häussinger, H. Sies, W. Gerok (1985)
Functional hepatocyte heterogeneity in ammonia metabolism. The intercellular glutamine cycle.Journal of hepatology, 1 1
C. Lieber (1997)
Cytochrome P-4502E1: its physiological and pathological role.Physiological reviews, 77 2
D. Ratanasavanh, P. Beaune, F. Morel, J. Flinois, F. Guengerich, A. Guillouzo (1991)
Intralobular distribution and quantitation of cytochrome P‐450 enzymes in human liver as a function of ageHepatology, 13
K. Fleming, I. Wanless (2013)
Glutamine synthetase expression in activated hepatocyte progenitor cells and loss of hepatocellular expression in congestion and cirrhosisLiver International, 33
Jessica Rios-Esteves, Brittany Haugen, M. Resh (2014)
Identification of Key Residues and Regions Important for Porcupine-mediated Wnt Acylation*The Journal of Biological Chemistry, 289
Kerstin Bartscherer, Nadège Pelte, Dierk Ingelfinger, M. Boutros (2006)
Secretion of Wnt Ligands Requires Evi, a Conserved Transmembrane ProteinCell, 125
A. Loud (1968)
A QUANTITATIVE STEREOLOGICAL DESCRIPTION OF THE ULTRASTRUCTURE OF NORMAL RAT LIVER PARENCHYMAL CELLSThe Journal of Cell Biology, 37
Mutsunori Shirai, Kazuo Nagashima, Shigeru Iwasaki, W. Mori (1987)
A LIGHT AND SCANNING ELECTRON MICROSCOPIC STUDY OF HEPATIC VENO‐OCCLUSIVE DISEASEPathology International, 37
H. Elias, H. Popper (1955)
Venous distribution in livers; comparison in man and experimental animals and application to the morphogenesis of cirrhosis.A.M.A. archives of pathology, 59 3
Sandra Loeppen, C. Koehle, A. Buchmann, M. Schwarz (2004)
A beta-catenin-dependent pathway regulates expression of cytochrome P450 isoforms in mouse liver tumors.Carcinogenesis, 26 1
Shiguang Liu, Tzu‐Hsuan Yeh, Vijay Singh, S. Shiva, Lindsay Krauland, Huanan Li, Pili Zhang, K. Kharbanda, V. Ritov, S. Monga, D. Scott, P. Eagon, J. Behari (2012)
β‐Catenin is essential for ethanol metabolism and protection against alcohol‐mediated liver steatosis in miceHepatology, 55
Meritxell Huch, C. Dorrell, S. Boj, J. Es, Vivian Li, M. Wetering, Toshiro Sato, K. Hamer, Nobuo Sasaki, M. Finegold, Annelise Haft, R. Vries, M. Grompe, H. Clevers (2013)
In vitro expansion of single Lgr5+ liver stem cells induced by Wnt-driven regenerationNature, 494
P. Gooding, J. Chayen, B. Sawyer, Trevor Slater (1978)
Cytochrome P-450 distribution in rat liver and the effect of sodium phenobarbitone administration.Chemico-biological interactions, 20 3
P. R. (2003)
Effect of the Wingless (wg*) Mutation on Wing and Haltere Development in Drosophila melanogaster
C. Torre, C. Perret, S. Colnot (2010)
Molecular determinants of liver zonation.Progress in molecular biology and translational science, 97
Bruce Wang, Ludan Zhao, M. Fish, C. Logan, R. Nusse (2015)
Self-renewing diploid Axin2+ cells fuel homeostatic renewal of the liverNature, 524
S. Milani, H. Herbst, D. Schuppan, E. Hahn, H. Stein (1989)
In situ hybridization for procollagen types I, III and IV mRNA in normal and fibrotic rat liver: Evidence for predominant expression in nonparenchymal liver cellsHepatology, 10
U. Apte, Sucha Singh, G. Zeng, B. Cieply, M. Virji, Tong Wu, S. Monga (2009)
Beta-catenin activation promotes liver regeneration after acetaminophen-induced injury.The American journal of pathology, 175 3
R. Sharma, V. Chopra (1976)
Effect of the Wingless (wg1) mutation on wing and haltere development in Drosophila melanogaster.Developmental biology, 48 2
R. Gebhardt (1988)
Different proliferative activity in vitro of periportal and perivenous hepatocytes.Scandinavian journal of gastroenterology. Supplement, 151
A. Braeuning, C. Ittrich, C. Koehle, S. Hailfinger, M. Bonin, A. Buchmann, M. Schwarz (2006)
Differential gene expression in periportal and perivenous mouse hepatocytesThe FEBS Journal, 273
E. Bhunchet, Kaori Fujieda (1993)
Capillarization and venularization of hepatic sinusoids in porcine serum‐induced rat liver fibrosis: A mechanism to maintain liver blood flowHepatology, 18
Thomas Horn, J. Junge, Per Christoffersen (2008)
Early alcoholic liver injury: changes of the Disse space in acinar zone 3.Liver, 5 6
F. Schaffner, H. Popper (1963)
Capillarization of hepatic sinusoids in man.Gastroenterology, 44
C. Lieber, L. Decarli (1994)
Animal models of chronic ethanol toxicity.Methods in enzymology, 233
Mariam Thomas, Christine Bayha, S. Vetter, U. Hofmann, M. Schwarz, U. Zanger, A. Braeuning (2015)
Activating and Inhibitory Functions of WNT/β-Catenin in the Induction of Cytochromes P450 by Nuclear Receptors in HepaRG CellsMolecular Pharmacology, 87
K. Jungermann, T. Kietzmann (1996)
Zonation of parenchymal and nonparenchymal metabolism in liver.Annual review of nutrition, 16
S. Urashima, M. Tsutsumi, Katsunori Nakase, Jian-Song Wang, A. Takada (1993)
Studies on capillarization of the hepatic sinusoids in alcoholic liver disease.Alcohol and alcoholism (Oxford, Oxfordshire). Supplement, 1B
Rolf Bühler, K. Lindros, Åsa Nordling, I. Johansson, Magnus Ingelman-Sundberg (1992)
Zonation of cytochrome P450 isozyme expression and induction in rat liver.European journal of biochemistry, 204 1
K. Mak, Chien Png (2015)
Type VI Collagen: Biological Functions and Its Neo-epitope as Hepatic Fibrosis Biomarker
K. Mak, P. Sehgal, Cynthia Harris (2014)
Factor VIII-Related Antigen Detects Phenotypic Change of Sinusoidal to Vascular Endothelium in Hepatic Fibrosis of Elderly CadaversInternational Scholarly Research Notices, 2014
A. Moorman, J. Vermeulen, R. Charles, W. Lamers (1989)
Localization of ammonia‐metabolizing enzymes in human liver: Ontogenesis of heterogeneityHepatology, 9
M. Nakano, T. Worner, C. Lieber (1982)
Perivenular fibrosis in alcoholic liver injury: ultrastructure and histologic progression.Gastroenterology, 83 4
Gershom Zajicek, R. Oren, M. Weinreb (1991)
[The streaming liver].Harefuah, 121 10
L. Planas-Paz, V. Orsini, L. Boulter, D. Calabrese, Monika Pikiolek, F. Nigsch, Yang Xie, G. Roma, Adriana Donovan, P. Marti, N. Beckmann, Michael Dill, Walter Carbone, S. Bergling, Andrea Isken, M. Mueller, B. Kinzel, Yi Yang, Xiaohong Mao, Thomas Nicholson, Raffaella Zamponi, Paola Capodieci, Reginald Valdez, Daniel Rivera, Andreas Loew, C. Ukomadu, Luigi Terracciano, T. Bouwmeester, Feng Cong, M. Heim, Stuart Forbes, H. Ruffner, J. Tchorz (2016)
The RSPO–LGR4/5–ZNRF3/RNF43 module controls liver zonation and sizeNature Cell Biology, 18
C. Janda, D. Waghray, A. Levin, Christoph Thomas, K. Garcia (2012)
Structural Basis of Wnt Recognition by FrizzledScience, 337
Marta Colletti, C. Cicchini, A. Conigliaro, L. Santangelo, T. Alonzi, E. Pasquini, M. Tripodi, L. Amicone (2009)
BASIC—LIVER, PANCREAS, AND BILIARY TRACT Convergence of Wnt Signaling on the HNF4-Driven Transcription in Controlling Liver Zonation
S. Boyault, D. Rickman, A. Reyniès, C. Balabaud, S. Rebouissou, E. Jeannot, A. Hérault, J. Saric, J. Belghiti, D. Franco, P. Bioulac-Sage, P. Laurent-Puig, J. Zucman‐Rossi (2007)
Transcriptome classification of HCC is related to gene alterations and to new therapeutic targetsHepatology, 45
R. Gebhardt, A. Baldysiak-Figiel, V. Krügel, E. Ueberham, F. Gaunitz (2007)
Hepatocellular expression of glutamine synthetase: an indicator of morphogen actions as master regulators of zonation in adult liver.Progress in histochemistry and cytochemistry, 41 4
Jonathan Tsai, Pang Koh, A. Stefańska, L. Xing, G. Walmsley, N. Poux, I. Weissman, Yuval Rinkevich (2017)
Localized hepatic lobular regeneration by central-vein–associated lineage-restricted progenitorsProceedings of the National Academy of Sciences, 114
K. Mak, Chien Png, Danielle Lee (2016)
Type V Collagen in Health, Disease, and FibrosisThe Anatomical Record, 299
S. Sekine, Pedro Gutiérrez, Billy Lan, S. Feng, M. Hebrok (2007)
Liver‐specific loss of β‐catenin results in delayed hepatocyte proliferation after partial hepatectomyHepatology, 45
R. Gebhardt, H. Schmid, H. Fitzke (1989)
Immunohistochemical localization of glutamine synthetase in human liverExperientia, 45
V. Rezania, D. Coombe, J. Tuszynski (2016)
A physiologically-based flow network model for hepatic drug elimination III: 2D/3D DLA lobule modelsTheoretical Biology & Medical Modelling, 13
Lorraine Racine-Samson, Jean Scoazec, Antonia D'errico, Michelangelo Fiorentino, Laurence Christa, A. Moreau, Corrado Roda, Walter Grigioni, Gérard Feldmann (1996)
The metabolic organization of the adult human liver: A comparative study of normal, fibrotic, and cirrhotic liver tissueHepatology, 24
F. Kiernan (1834)
The Anatomy and Physiology of the LiverThe Medical Quarterly Review, 2
C. Bänziger, D. Soldini, C. Schütt, Peder Zipperlen, G. Hausmann, K. Basler (2006)
Wntless, a Conserved Membrane Protein Dedicated to the Secretion of Wnt Proteins from Signaling CellsCell, 125
I. Anundi, Tuula Lähteenmäki, Mats Rundgren, P. Moldéus, K. Lindros (1993)
Zonation of acetaminophen metabolism and cytochrome P450 2E1-mediated toxicity studied in isolated periportal and perivenous hepatocytes.Biochemical pharmacology, 45 6
P. Cohen, K. Mak, A. Rosman, I. Kessova, Vladimir Mishin, Tiina Koivisto, Charles Lieber (1997)
Immunohistochemical determination of hepatic cytochrome P-4502E1 in formalin-fixed, paraffin-embedded sections.Alcoholism, clinical and experimental research, 21 6
K. Jungermann, D. Sasse (1978)
Heterogeneity of liver parenchymal cellsTrends in Biochemical Sciences, 3
S. Hailfinger, Maike Jaworski, A. Braeuning, A. Buchmann, M. Schwarz (2006)
Zonal gene expression in murine liver: Lessons from tumorsHepatology, 43
(1989)
Morphometry of terminal hepatic veins. 1. Comparative study in man and baboon.
F. Rijsewijk, M. Schuermann, E. Wagenaar, P. Parren, D. Weigel, R. Nusse (1987)
The Drosophila homology of the mouse mammary oncogene int-1 is identical to the segment polarity gene winglessCell, 50
W. Lau, Weng Peng, P. Gros, H. Clevers (2014)
The R-spondin/Lgr5/Rnf43 module: regulator of Wnt signal strengthGenes & Development, 28
J. Gross, Varun Chaudhary, Kerstin Bartscherer, M. Boutros (2012)
Active Wnt proteins are secreted on exosomesNature Cell Biology, 14
Zoë Burke, D. Tosh (2006)
The Wnt/β‐catenin pathway: master regulator of liver zonation?BioEssays, 28
J. Yoon, Jin-Seon Lee (2012)
Cellular signaling and biological functions of R-spondins.Cellular signalling, 24 2
Adeola Michael, Sungjin Ko, J. Tao, A. Moghe, Hong Yang, Meng Xu, Jacquelyn Russell, Tirthadipa Pradhan‐Sundd, Silvia Liu, Sucha Singh, Minakshi Poddar, Jayvir Monga, Pin Liu, M. Oertel, S. Ranganathan, A. Singhi, S. Rebouissou, J. Zucman‐Rossi, S. Ribback, D. Calvisi, N. Qvartskhava, B. Görg, D. Häussinger, Xin Chen, S. Monga (2019)
Inhibiting Glutamine-Dependent mTORC1 Activation Ameliorates Liver Cancers Driven by β-Catenin Mutations.Cell metabolism, 29 5
R. Nusse, H. Varmus (1982)
Many tumors induced by the mouse mammary tumor virus contain a provirus integrated in the same region of the host genomeCell, 31
Sivan Tanami, S. Ben-Moshe, Anat Elkayam, A. Mayo, K. Halpern, S. Itzkovitz (2016)
Dynamic zonation of liver polyploidyCell and Tissue Research, 368
E. Jho, Tong Zhang, C. Domon, C. Joo, J. Freund, F. Costantini (2002)
Wnt/β-Catenin/Tcf Signaling Induces the Transcription of Axin2, a Negative Regulator of the Signaling PathwayMolecular and Cellular Biology, 22
C. Lieber (1982)
Alcohol and the terminal hepatic venule.Gastroenterology, 83 5
J. Mao, J. Mao, Ji-yong Wang, Bo Liu, Bo Liu, Weijun Pan, G. Farr, C. Flynn, Huidong Yuan, S. Takada, D. Kimelman, Lin Li, Dianqing Wu (2001)
Low-density lipoprotein receptor-related protein-5 binds to Axin and regulates the canonical Wnt signaling pathway.Molecular cell, 7 4
A. Rocha, V. Vidal, M. Mertz, T. Kendall, A. Charlet, H. Okamoto, A. Schedl (2015)
The Angiocrine Factor Rspondin3 Is a Key Determinant of Liver Zonation.Cell reports, 13 9
A. Mclean, V. Cogger, G. Chong, A. Warren, Astrid Markus, J. Dahlstrom, D. Couteur (2003)
Age‐related pseudocapillarization of the human liverThe Journal of Pathology, 200
Ludan Zhao, Yinhua Jin, K. Donahue, Margaret Tsui, M. Fish, C. Logan, Bruce Wang, R. Nusse (2018)
Tissue repair in the mouse liver following acute carbon tetrachloride depends on injury-induced Wnt/β-catenin signalingbioRxiv
G Zajicek, R Oren, M Weinreb (1985)
The streaming liver, 5
C. Janda, Luke Dang, C. You, Junlei Chang, W. Lau, Z. Zhong, Kelley Yan, O. Marecic, D. Siepe, Xingnan Li, J. Moody, B. Williams, H. Clevers, J. Piehler, D. Baker, C. Kuo, K. Garcia (2017)
Surrogate Wnt agonists that phenocopy canonical Wnt/β-catenin signalingNature, 545
B. Ding, D. Nolan, J. Butler, D. James, Alexander Babazadeh, Z. Rosenwaks, V. Mittal, Hideki Kobayashi, K. Shido, D. Lyden, Thomas Sato, S. Rabbany, S. Rafii (2010)
Inductive angiocrine signals from sinusoidal endothelium are required for liver regenerationNature, 468
K. Mak, Lucy Chen, Ting-Fang Lee (2013)
Codistribution of Collagen Type IV and Laminin in Liver Fibrosis of Elderly Cadavers: Immunohistochemical Marker of Perisinusoidal Basement Membrane FormationThe Anatomical Record, 296
Z. Zhong, Jacob Baker, Cassandra Zylstra-Diegel, B. Williams (2012)
Lrp5 and Lrp6 play compensatory roles in mouse intestinal developmentJournal of Cellular Biochemistry, 113
K. Mak, Edward Chu, K.H. Lau, A. Kwong (2012)
Liver Fibrosis in Elderly Cadavers: Localization of Collagen Types I, III, and IV, α‐Smooth Muscle Actin, and Elastic FibersThe Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology, 295
W. Lamers, L.M. Vermeulen, B.M. Hakvoort, F. Moorman (1999)
Expression Pattern of Glutamine Synthetase Marks Transition from Collecting into Conducting Hepatic VeinsJournal of Histochemistry & Cytochemistry, 47
C. Niehrs (2012)
The complex world of WNT receptor signallingNature Reviews Molecular Cell Biology, 13
C. Logan, R. Nusse (2004)
The Wnt signaling pathway in development and disease.Annual review of cell and developmental biology, 20
T. Gramlich, D. Kleiner, A. McCullough, C. Matteoni, N. Boparai, Z. Younossi (2004)
Pathologic features associated with fibrosis in nonalcoholic fatty liver disease.Human pathology, 35 2
F. Kuo, J. Darnell (1991)
Evidence that interaction of hepatocytes with the collecting (hepatic) veins triggers position-specific transcription of the glutamine synthetase and ornithine aminotransferase genes in the mouse liverMolecular and Cellular Biology, 11
MH Ross, W Pawlina (2016)
Histology, a textbook and atlas: with correlated cell and molecular biology
B. Koo, H. Clevers (2014)
Stem cells marked by the R-spondin receptor LGR5.Gastroenterology, 147 2
S. Monga (2014)
Role and regulation of β-catenin signaling during physiological liver growth.Gene expression, 16 2
Danielson Pb (2002)
The cytochrome P450 superfamily: biochemistry, evolution and drug metabolism in humans.Current Drug Metabolism, 3
M. Tsutsumi, J. Lasker, M. Shimizu, A. Rosman, C. Lieber (1989)
The intralobular distribution of ethanol‐inducible P450IIE1 in rat and human liverHepatology, 10
G. Zeng, F. Awan, Wade Otruba, Peggy Muller, U. Apte, Xinping Tan, C. Gandhi, A. Demetris, S. Monga (2007)
Wnt'er in liver: Expression of Wnt and frizzled genes in mouseHepatology, 45
R. Gebhardt, M. Matz-Soja (2014)
Liver zonation: Novel aspects of its regulation and its impact on homeostasis.World journal of gastroenterology, 20 26
L. Schöls, D. Mecke, R. Gebhardt (2004)
Reestablishment of the heterogeneous distribution of hepatic glutamine synthetase during regeneration after CCl4-intoxicationHistochemistry, 94
H. Popper, C. Lieber (1980)
Histogenesis of alcoholic fibrosis and cirrhosis in the baboon.The American journal of pathology, 98 3
R. Nusse, H. Clevers (2017)
Wnt/β-Catenin Signaling, Disease, and Emerging Therapeutic ModalitiesCell, 169
Kendra Carmon, X. Gong, Q. Lin, Anthony Thomas, Qingyun Liu (2011)
R-spondins function as ligands of the orphan receptors LGR4 and LGR5 to regulate Wnt/β-catenin signalingProceedings of the National Academy of Sciences, 108
K. Mak, C. Lieber (1984)
Alterations in Endothelial Fenestrations in Liver Sinusoids of Baboons Fed Alcohol: A Scanning Electron Microscopic StudyHepatology, 4
A. Cadoret, C. Ovejero, B. Terris, E. Souil, Laurence Levy, W. Lamers, J. Kitajewski, A. Kahn, C. Perret (2002)
New targets of β-catenin signaling in the liver are involved in the glutamine metabolismOncogene, 21
Jing Yang, Laura Mowry, Kari Nejak‐Bowen, H. Okabe, Cassandra Diegel, R. Lang, B. Williams, S. Monga (2014)
Beta‐catenin signaling in murine liver zonation and regeneration: A Wnt‐Wnt situation!Hepatology, 60
J. Junge, Thomas Horn, M. Vyberg, Per Christoffersen, L. Svendsen (1991)
The pattern of fibrosis in the acinar zone 3 areas in early alcoholic liver disease.Journal of hepatology, 12 1
J. Leung, F. Kolligs, R. Wu, Y. Zhai, R. Kuick, S. Hanash, Kathleen Cho, E. Fearon (2002)
Activation of AXIN2 expression by beta-catenin-T cell factor. A feedback repressor pathway regulating Wnt signaling.The Journal of biological chemistry, 277 24
F. Kiernan (1834)
The Anatomy and Physiology of the LiverEdinburgh Medical and Surgical Journal, 42
M. Chevallier, S. Guerret, P. Chossegros, F. Gérard, J. Grimaud (1994)
A histological semiquantitative scoring system for evaluation of hepatic fibrosis in needle liver biopsy specimens: Comparison with morphometric studiesHepatology, 20
K. Mercer, L. Hennings, N. Sharma, Keith Lai, M. Cleves, R. Wynne, T. Badger, M. Ronis (2014)
Alcohol Consumption Promotes Diethylnitrosamine-Induced Hepatocarcinogenesis in Male Mice through Activation of the Wnt/β-Catenin Signaling PathwayCancer Prevention Research, 7
K. Mak, R. Mei (2017)
Basement Membrane Type IV Collagen and Laminin: An Overview of Their Biology and Value as Fibrosis Biomarkers of Liver DiseaseThe Anatomical Record, 300
Kyung-ah Kim, M. Wagle, K. Tran, X. Zhan, M. Dixon, Shouchun Liu, D. Gros, W. Korver, S. Yonkovich, N. Tomašević, M. Binnerts, A. Abo (2008)
R-Spondin family members regulate the Wnt pathway by a common mechanism.Molecular biology of the cell, 19 6
Hawjyh Chiu, C. Gardner, D. Dambach, S. Durham, J. Brittingham, J. Laskin, D. Laskin (2003)
Role of tumor necrosis factor receptor 1 (p55) in hepatocyte proliferation during acetaminophen-induced toxicity in mice.Toxicology and applied pharmacology, 193 2
M. Nakano, C. Lieber (1982)
Ultrastructure of initial stages of perivenular fibrosis in alcohol-fed baboons.The American journal of pathology, 106 2
B. Koo, M. Spit, Ingrid Jordens, T. Low, D. Stange, M. Wetering, J. Es, S. Mohammed, A. Heck, M. Maurice, H. Clevers (2012)
Tumour suppressor RNF43 is a stem-cell E3 ligase that induces endocytosis of Wnt receptorsNature, 488
S. Monga (2015)
β-Catenin Signaling and Roles in Liver Homeostasis, Injury, and Tumorigenesis.Gastroenterology, 148 7
G. Wagenaar, Antoon Mocrman, R. Chamuleau, N. Deutz, Corrie Gier, P. Boer, F. Verbeek, W. Lamers (1994)
Vascular branching pattern and zonation of gene expression in the mammalian liver. A comparative study in rat, mouse, cynomolgus monkey, and pigThe Anatomical Record, 239
KM Mak, CYM Png (2017)
Biomarkers in liver disease: methods, discoveries and applications
M. Brosnan, J. Brosnan (2009)
Hepatic glutamate metabolism: a tale of 2 hepatocytes.The American journal of clinical nutrition, 90 3
Xinping Tan, J. Behari, B. Cieply, G. Michalopoulos, Satdarshan Monga (2006)
Conditional deletion of beta-catenin reveals its role in liver growth and regeneration.Gastroenterology, 131 5
M. Gordon, R. Nusse (2006)
Wnt Signaling: Multiple Pathways, Multiple Receptors, and Multiple Transcription Factors*Journal of Biological Chemistry, 281
T. Takahashi (1970)
Lobular structure of the human liver from the viewpoint of hepatic vascular architecture.The Tohoku journal of experimental medicine, 101 2
J. Raucy, J. Lasker, C. Lieber, M. Black (1989)
Acetaminophen activation by human liver cytochromes P450IIE1 and P450IA2.Archives of biochemistry and biophysics, 271 2
M. Weltman, G. Farrell, P. Hall, M. Ingelman-Sundberg, C. Liddle (1998)
Hepatic cytochrome P450 2E1 is increased in patients with nonalcoholic steatohepatitisHepatology, 27
K. Mak, A. Kwong, Edward Chu, Nancy Hoo (2012)
Hepatic Steatosis, Fibrosis, and Cancer in Elderly CadaversThe Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology, 295
Marta Colletti, C. Cicchini, A. Conigliaro, L. Santangelo, T. Alonzi, E. Pasquini, M. Tripodi, L. Amicone (2009)
Convergence of Wnt signaling on the HNF4alpha-driven transcription in controlling liver zonation.Gastroenterology, 137 2
J. Zucman‐Rossi, S. Benhamouche, C. Godard, S. Boyault, G. Grimber, C. Balabaud, A. Cunha, P. Bioulac-Sage, C. Perret (2007)
Differential effects of inactivated Axin1 and activated β-catenin mutations in human hepatocellular carcinomasOncogene, 26
S. Benhamouche, T. Decaens, C. Godard, R. Chambrey, D. Rickman, C. Moinard, M. Vasseur-Cognet, C. Kuo, A. Kahn, C. Perret, S. Colnot (2006)
Apc tumor suppressor gene is the "zonation-keeper" of mouse liver.Developmental cell, 10 6
R. Gebhardt, A. Hovhannisyan (2009)
Organ patterning in the adult stage: The role of Wnt/β‐catenin signaling in liver zonation and beyondDevelopmental Dynamics, 239
R. Gebhardt, J. Reichen (1994)
Changes in distribution and activity of glutamine synthetase in carbon tetrachloride‐induced cirrhosis in the rat: Potential role in hyperammonemiaHepatology, 20
M. Preziosi, H. Okabe, Minakshi Poddar, Sucha Singh, S. Monga (2018)
Endothelial Wnts regulate β‐catenin signaling in murine liver zonation and regeneration: A sequel to the Wnt–Wnt situationHepatology Communications, 2
T. Worner, C. Lieber (1985)
Perivenular fibrosis as precursor lesion of cirrhosis.JAMA, 254 5
Dongli Wang, Binlu Huang, Senyan Zhang, Xiaojuan Yu, Wei Wu, Xinquan Wang (2013)
Structural basis for R-spondin recognition by LGR4/5/6 receptors.Genes & development, 27 12
M. Leo, C. Lieber (2007)
Hepatic Fibrosis After Long‐Term Administration of Ethanol and Moderate Vitamin A Supplementation in the RatHepatology, 3
Huai-Xiang Hao, Yang Xie, Yue Zhang, O. Charlat, Emma Oster, Monika Avello, Hong Lei, C. Mickanin, Dong Liu, H. Ruffner, Xiaohong Mao, Qicheng Ma, Raffaella Zamponi, T. Bouwmeester, P. Finan, M. Kirschner, J. Porter, F. Serluca, Feng Cong (2012)
ZNRF3 promotes Wnt receptor turnover in an R-spondin-sensitive mannerNature, 485
H. Clevers, K. Loh, R. Nusse (2014)
An integral program for tissue renewal and regeneration: Wnt signaling and stem cell controlScience, 346
S. Sekine, B. Lan, M. Bedolli, S. Feng, M. Hebrok (2006)
Liver‐specific loss of β‐catenin blocks glutamine synthesis pathway activity and cytochrome p450 expression in miceHepatology, 43
J. Ruijter, R. Gieling, M. Markman, J. Hagoort, W. Lamers (2004)
Stereological measurement of porto‐central gradients in gene expression in mouse liverHepatology, 39
The hepatic central vein is a primary source of Wnt2, Wnt9b, and R‐spondin3. These angiocrines activate ß‐catenin signaling to regulate hepatic metabolic zonation and perivenous gene expression in mice. Little is known about the central vein ultrastructure. Here, we describe the morphological–functional correlates of the central vein and its draining and branching patterns. Central vein fibrosis occurs in liver disease and is often accompanied by perivenous perisinusoidal fibrosis, which may affect perivenous gene expression. We review the biological properties of perivenous hepatocytes and glutamine synthetase that serve as a biomarker of perivenous hepatocytes. Glutamine synthetase and P4502E1 are indicators of ß‐catenin activity in centrilobular liver injury and regeneration. The Wnt/ß‐catenin pathway is the master regulator of hepatic metabolic zonation and perivenous gene expression and is modulated by the R‐spondin‐LGR4/5‐ZNRF3/RNF43 module. We examined the structures of the molecules of these pathways and their involvements in liver biology. Central vein‐derived Wnts and R‐spondin3 participate in the cellular–molecular circuitry of the Wnt/ß‐catenin and R‐spondin‐LGR4/5‐ZNRF3/RNF43 module. The transport and secretion of lipidated Wnts in Wnt‐producing cells require Wntless protein. Secreted Wnts are carried on exosomes in the extracellular matrix to responder cells. The modes of release of Wnts and R‐spondin3 from central veins and their transit in the venular wall toward perivenous hepatocytes are unknown. We hypothesize that central vein fibrosis may impact perivenous gene expression. The proposal that the central vein constitutes an anatomical niche of perivenous stem cells that subserve homeostatic hepatic renewal still needs studies using additional mouse models for validation. Anat Rec, 2019. © 2019 American Association for Anatomy Anat Rec, 303:1747–1767, 2020. © 2019 American Association for Anatomy
The Anatomical Record : Advances in Integrative Anatomy and Evolutionary Biology – Wiley
Published: Jul 1, 2020
Keywords: ; ; ; ; ;
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