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B. Kempf, E. Bremer (1998)
Uptake and synthesis of compatible solutes as microbial stress responses to high-osmolality environmentsArchives of Microbiology, 170
W. Metcalf, Jun Zhang, E. Apolinario, K. Sowers, R. Wolfe (1997)
A genetic system for Archaea of the genus Methanosarcina: liposome-mediated transformation and construction of shuttle vectors.Proceedings of the National Academy of Sciences of the United States of America, 94 6
(1989)
Molecular cloning: a laboratory manual, 2nd ed
M. Roeßler, K. Pflüger, H. Flach, T. Lienard, G. Gottschalk, V. Müller (2002)
Identification of a Salt-Induced Primary Transporter for Glycine Betaine in the Methanogen Methanosarcina mazei Gö1Applied and Environmental Microbiology, 68
Mary Roberts (2000)
Osmoadaptation and osmoregulation in archaea.Frontiers in bioscience : a journal and virtual library, 5
J. Wood, E. Bremer, L. Csonka, Reinhard Kraemer, B. Poolman, T. Heide, L. Smith (2001)
Osmosensing and osmoregulatory compatible solute accumulation by bacteria.Comparative biochemistry and physiology. Part A, Molecular & integrative physiology, 130 3
M. Roeßler, V. Müller (2001)
Osmoadaptation in bacteria and archaea: common principles and differences.Environmental microbiology, 3 12
Douglas Smith, L. Doucette-Stamm, Craig Deloughery, H. Lee, J. Dubois, T. Aldredge, R. Bashirzadeh, D. Blakely, R. Cook, K. Gilbert, D. Harrison, L. Hoang, P. Keagle, W. Lumm, B. Pothier, D. Qiu, R. Spadafora, R. Vicaire, Y. Wang, Jamey Wierzbowski, R. Gibson, N. Jiwani, A. Caruso, D. Bush, J. Reeve (1997)
Complete genome sequence of Methanobacterium thermoautotrophicum deltaH: functional analysis and comparative genomicsJournal of Bacteriology, 179
M. Angus-Hill, R. Dutnall, S. Tafrov, R. Sternglanz, V. Ramakrishnan (1999)
Crystal structure of the histone acetyltransferase Hpa2: A tetrameric member of the Gcn5-related N-acetyltransferase superfamily.Journal of molecular biology, 294 5
R. Petrovich, F. Ruzicka, G. Reed, P. Frey (1992)
Characterization of iron-sulfur clusters in lysine 2,3-aminomutase by electron paramagnetic resonance spectroscopy.Biochemistry, 31 44
Stefan Scholz, J. Sonnenbichler, W. Schäfer, R. Hensel (1992)
Di‐myo‐inositol‐1, 1′‐phosphate: A new inositol phosphate isolated from Pyrococcus woeseiFEBS Letters, 306
P. Gernhardt, O. Possot, M. Foglino, L. Sibold, A. Klein (1990)
Construction of an integration vector for use in the archaebacterium Methanococcus voltae and expression of a eubacterial resistance geneMolecular and General Genetics MGG, 221
T. Kaneko, Yasukazu Nakamura, Shusei Sato, E. Asamizu, Tomohiko Kato, S. Sasamoto, A. Watanabe, K. Idesawa, Atsuko Ishikawa, K. Kawashima, Takaharu Kimura, Y. Kishida, C. Kiyokawa, Mitsuyo Kohara, M. Matsumoto, A. Matsuno, Y. Mochizuki, S. Nakayama, N. Nakazaki, Sayaka Shimpo, M. Sugimoto, C. Takeuchi, M. Yamada, S. Tabata (2000)
Complete genome structure of the nitrogen-fixing symbiotic bacterium Mesorhizobium loti.DNA research : an international journal for rapid publication of reports on genes and genomes, 7 6
K. Song, P. Frey (1991)
Molecular properties of lysine-2,3-aminomutase.The Journal of biological chemistry, 266 12
P. Frey, G. Reed (2006)
Lysine 2,3-aminomutase and the mechanism of the interconversion of lysine and beta-lysine.Advances in enzymology and related areas of molecular biology, 66
H. Hippe, D. Caspari, K. Fiebig, G. Gottschalk (1979)
Utilization of trimethylamine and other N-methyl compounds for growth and methane formation by Methanosarcina barkeri.Proceedings of the National Academy of Sciences of the United States of America, 76 1
L. Martins, H. Santos (1995)
Accumulation of Mannosylglycerate and Di-myo-Inositol-Phosphate by Pyrococcus furiosus in Response to Salinity and TemperatureApplied and Environmental Microbiology, 61
H. Santos, M. Costa (2002)
Compatible solutes of organisms that live in hot saline environments.Environmental microbiology, 4 9
R. Ciulla, S. Burggraf, K. Stetter, M. Roberts (1994)
Occurrence and Role of Di-myo-Inositol-1,1′-Phosphate in Methanococcus igneusApplied and Environmental Microbiology, 60
H. Bohnert, D. Nelson, R. Jensen (1995)
Adaptations to Environmental Stresses.The Plant cell, 7
K. Sowers, R. Gunsalus (1995)
Halotolerance in Methanosarcina spp.: Role of N(sup(epsilon))-Acetyl-(beta)-Lysine, (alpha)-Glutamate, Glycine Betaine, and K(sup+) as Compatible Solutes for Osmotic AdaptationApplied and Environmental Microbiology, 61
M. Lai, R. Gunsalus (1992)
Glycine betaine and potassium ion are the major compatible solutes in the extremely halophilic methanogen Methanohalophilus strain Z7302Journal of Bacteriology, 174
(1990)
N-acetyl- -lysine—an osmolyte synthesized by methanogenic archaebacteria
(1997)
Complete genome sequence of Methanobacterium thermoautotrophicum H: functional analysis and comparative genomics
A. Slesarev, Katja Mezhevaya, K. Makarova, N. Polushin, O. Shcherbinina, V. Shakhova, G. Belova, L. Aravind, D. Natale, I. Rogozin, R. Tatusov, Y. Wolf, K. Stetter, A. Malykh, E. Koonin, S. Kozyavkin (2002)
The complete genome of hyperthermophile Methanopyrus kandleri AV19 and monophyly of archaeal methanogensProceedings of the National Academy of Sciences of the United States of America, 99
D. Martin, R. Ciulla, M. Roberts (1999)
Osmoadaptation in ArchaeaApplied and Environmental Microbiology, 65
W. Gardner, W. Whitman (1999)
Expression vectors for Methanococcus maripaludis: overexpression of acetohydroxyacid synthase and beta-galactosidase.Genetics, 152 4
D. Robertson, M. Lai, R. Gunsalus, M. Roberts (1992)
Composition, Variation, and Dynamics of Major Osmotic Solutes in Methanohalophilus Strain FDF1Applied and Environmental Microbiology, 58
W. Whitman, J. Shieh, Seehyang Sohn, David Caras, U. Premachandran (1986)
Isolation and characterization of 22 mesophilic methanococciSystematic and Applied Microbiology, 7
(1992)
Biosynthetic pathways of the osmolytes Nε-acetyl- -lysine, -glutamine, and betaine in Methanohalophilus strain FDF1 suggested by nuclear magnetic resonance analyses
(1996)
Copyright � 1997, American Society for Microbiology Organic Solutes in Hyperthermophilic Archaea
D. Martin, R. Ciulla, P. Robinson, M. Roberts (2000)
Switching osmolyte strategies: response of Methanococcus thermolithotrophicus to changes in external NaCl.Biochimica et biophysica acta, 1524 1
M. Lai, K. Sowers, D. Robertson, M. Roberts, R. Gunsalus (1991)
Distribution of compatible solutes in the halophilic methanogenic archaebacteriaJournal of Bacteriology, 173
W. Nierman, T. Feldblyum, M. Laub, I. Paulsen, K. Nelson, J. Eisen, J. Heidelberg, M. Alley, N. Ohta, J. Maddock, I. Potocka, W. Nelson, A. Newton, C. Stephens, N. Phadke, B. Ely, R. Deboy, R. Dodson, A. Durkin, M. Gwinn, D. Haft, J. Kolonay, J. Smit, M. Craven, H. Khouri, Jyoti Shetty, Kristi Berry, T. Utterback, K. Tran, A. Wolf, J. Vamathevan, M. Ermolaeva, O. White, S. Salzberg, J. Venter, L. Shapiro, C. Fraser (2001)
Complete genome sequence of Caulobacter crescentusProceedings of the National Academy of Sciences of the United States of America, 98
J. Sambrook, E. Fritsch, T. Maniatis (2001)
Molecular Cloning: A Laboratory Manual
U. Deppenmeier, André Johann, T. Hartsch, R. Merkl, R. Schmitz, R. Martínez-Arias, A. Henne, A. Wiezer, Sebastian Bäumer, C. Jacobi, H. Brüggemann, T. Lienard, Andreas Christmann, Mechthild Bömeke, Silke Steckel, A. Bhattacharyya, A. Lykidis, R. Overbeek, H. Klenk, R. Gunsalus, H. Fritz, G. Gottschalk (2002)
The genome of Methanosarcina mazei: evidence for lateral gene transfer between bacteria and archaea.Journal of molecular microbiology and biotechnology, 4 4
C. Stathopoulos, Wonduck Kim, Tong Li, I. Anderson, Britta Deutsch, S. Palioura, W. Whitman, D. Söll (2001)
Cysteinyl-tRNA synthetase is not essential for viability of the archaeon Methanococcus maripaludisProceedings of the National Academy of Sciences of the United States of America, 98
J. Marmur (1961)
A procedure for the isolation of deoxyribonucleic acid from micro-organismsJournal of Molecular Biology, 3
Juan TerceroS, Linda Riles, R. Wickner (1992)
Localized mutagenesis and evidence for post-transcriptional regulation of MAK3. A putative N-acetyltransferase required for double-stranded RNA virus propagation in Saccharomyces cerevisiae.The Journal of biological chemistry, 267 28
J. Galagan, C. Nusbaum, A. Roy, M. Endrizzi, M. Endrizzi, M. Endrizzi, Pendexter Macdonald, Pendexter Macdonald, Pendexter Macdonald, W. Fitzhugh, S. Calvo, Reinhard Engels, S. Smirnov, D. Atnoor, Adam Brown, Nicole Allen, Nicole Allen, Nicole Allen, J. Naylor, N. Stange-thomann, Kurt DeArellano, Robin Johnson, L. Linton, P. McEwan, K. McKernan, Jessica Talamas, A. Tirrell, A. Tirrell, Wenjuan Ye, Wenjuan Ye, A. Zimmer, R. Barber, I. Cann, D. Graham, D. Grahame, A. Guss, R. Hedderich, C. Ingram‐Smith, C. Ingram‐Smith, C. Ingram‐Smith, H. Kuettner, J. Krzycki, J. Krzycki, J. Leigh, Weixi Li, Jinfeng Liu, B. Mukhopadhyay, J. Reeve, Kerry Smith, T. Springer, T. Springer, T. Springer, L. Umayam, O. White, Robert White, E. Macario, E. Macario, J. Ferry, K. Jarrell, K. Jarrell, Hua Jing, Hua Jing, Hua Jing, A. Macario, I. Paulsen, I. Paulsen, I. Paulsen, M. Pritchett, K. Sowers, R. Swanson, S. Zinder, S. Zinder, E. Lander, E. Lander, E. Lander, W. Metcalf, B. Birren (2002)
The genome of M. acetivorans reveals extensive metabolic and physiological diversity.Genome research, 12 4
N. Erdmann, S. Fulda, M. Hagemann (1992)
Glucosylglycerol accumulation during salt acclimation of two unicellular cyanobacteriaMicrobiology, 138
F. Dyda, David Klein, A. Hickman (2000)
GCN5-related N-acetyltransferases: a structural overview.Annual review of biophysics and biomolecular structure, 29
A. Ventosa, J. Nieto, A. Oren (1998)
Biology of Moderately Halophilic Aerobic BacteriaMicrobiology and Molecular Biology Reviews, 62
(1994)
Occurrence of di-myo-inositol-1-1Ј-phosphate in Methanococcus igneus
E. Galinski, H. Trüper (1994)
Microbial behaviour in salt‐stressed ecosystemsFems Microbiology Reviews, 15
(1995)
Halotolerance in Methanosarcina spp.: role of N ε -acetyl--lysine, ␣-glutamate, glycine betaine, and K ϩ as compatible solutes for osmotic adaptation
P. Robinson, M. Roberts (1997)
Effects of Osmolyte Precursors on the Distribution of Compatible Solutes in Methanohalophilus portucalensisApplied and Environmental Microbiology, 63
K. Sowers, D. Robertson, D. Noll, R. Gunsalus, M. Roberts (1990)
N epsilon-acetyl-beta-lysine: an osmolyte synthesized by methanogenic archaebacteria.Proceedings of the National Academy of Sciences of the United States of America, 87
F. Ruzicka, K. Lieder, P. Frey (2000)
Lysine 2,3-Aminomutase from Clostridium subterminale SB4: Mass Spectral Characterization of Cyanogen Bromide-Treated Peptides and Cloning, Sequencing, and Expression of the Gene kamA in Escherichia coliJournal of Bacteriology, 182
C. Bult, O. White, G. Olsen, Lixin Zhou, R. Fleischmann, G. Sutton, J. Blake, L. Fitzgerald, R. Clayton, J. Gocayne, A. Kerlavage, B. Dougherty, J. Tomb, M. Adams, C. Reich, R. Overbeek, E. Kirkness, K. Weinstock, J. Merrick, A. Glodek, J. Scott, N. Geoghagen, J. Weidman, J. Fuhrmann, David Nguyen, T. Utterback, J. Kelley, J. Peterson, P. Sadow, M. Hanna, M. Cotton, K. Roberts, M. Hurst, B. Kaine, M. Borodovsky, H. Klenk, C. Fraser, Hamilton Smith, C. Woese, J. Venter (1996)
Complete Genome Sequence of the Methanogenic Archaeon, Methanococcus jannaschiiScience, 273
G. Seltmann (1989)
Biochemical aspects of the resistance to nourseothricin (streptothricin) of Escherichia coli strainsJournal of Basic Microbiology, 29
D. Rudulier, A. Strøm, A. Dandekar, L. Smith, R. Valentine (1984)
Molecular Biology of OsmoregulationScience, 224
J. Keswani, S. Orkand, U. Premachandran, L. Mandelco, M. Franklin, W. Whitman (1996)
Phylogeny and taxonomy of mesophilic Methanococcus spp. and comparison of rRNA, DNA hybridization, and phenotypic methods.International journal of systematic bacteriology, 46 3
A. Feinberg, B. Vogelstein (1983)
A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity.Analytical biochemistry, 132 1
D. Robertson, D. Noll, M. Roberts (1992)
Free amino acid dynamics in marine methanogens. beta-Amino acids as compatible solutes.The Journal of biological chemistry, 267 21
R. Ciulla, M. Roberts, S. Burggraf, K. Stetter (1994)
Occurrence and role of di-myo-inositol-1,1[prime]-phosphate in methanococcus igneus
T. Chirpich, V. Zappia, R. Costilow, H. Barker (1970)
Lysine 2,3-aminomutase. Purification and properties of a pyridoxal phosphate and S-adenosylmethionine-activated enzyme.The Journal of biological chemistry, 245 7
R. Sleator, C. Hill (2001)
Bacterial osmoadaptation: the role of osmolytes in bacterial stress and virulence.FEMS microbiology reviews, 26 1
(1996)
Complete genome sequence of the methanogenic archaeon
Mary Roberts, Mei-Chin Lai, R. Gunsalus (1992)
Biosynthetic pathways of the osmolytes N epsilon-acetyl-beta-lysine, beta-glutamine, and betaine in Methanohalophilus strain FDF1 suggested by nuclear magnetic resonance analysesJournal of Bacteriology, 174
(1990)
Ne - acetyl - - lysine — an osmolyte synthesized by methanogenic archaebacteria
D. Tumbula, R. Makula, W. Whitman (1994)
Transformation of Methanococcus maripaludis and identification of a Pst I-like restriction systemFems Microbiology Letters, 121
H. Takami, K. Nakasone, Y. Takaki, G. Maeno, Rumie Sasaki, N. Masui, Fumie Fuji, C. Hirama, Yuka Nakamura, N. Ogasawara, S. Kuhara, K. Horikoshi (2000)
Complete genome sequence of the alkaliphilic bacterium Bacillus halodurans and genomic sequence comparison with Bacillus subtilis.Nucleic acids research, 28 21
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Published: Oct 1, 2003
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