Directed Evolution of Ionizing Radiation Resistance in Escherichia coli
暂无分享,去创建一个
Wendy Schackwitz | Len A. Pennacchio | John R. Battista | Nicole T. Perna | Michael M. Cox | Eric L. Cabot | Hao Li | Thomas J. Albert | Wendy S. Schackwitz | N. Perna | L. Pennacchio | J. Norton | T. Albert | T. Durfee | M. Cox | Sarit A. Klugman | J. Battista | W. Schackwitz | Joel A. Martin | Reece J. Goiffon | Joel Martin | Audrey J. Klingele | E. Wood | E. Cabot | Elizabeth A. Wood | L. Bane | Dennis R. Harris | Steve V. Pollock | Julie Eggington | Timothy J. Durfee | Christina M. Middle | Jason E. Norton | Michael C. Popelars | Lindsay L. Hamilton | Lukas B. Bane | D. R. Harris | Christina M Middle | S. Pollock | J. Eggington | Hao Li | C. Middle
[1] C. Mathews,et al. Imbalanced deoxyribonucleoside triphosphate pools and spontaneous mutation rates determined during dCMP deaminase-defective bacteriophage T4 infections. , 1987, The Journal of biological chemistry.
[2] David Botstein,et al. The Repertoire and Dynamics of Evolutionary Adaptations to Controlled Nutrient-Limited Environments in Yeast , 2008, PLoS genetics.
[3] M. Riley,et al. MultiFun, a multifunctional classification scheme for Escherichia coli K-12 gene products. , 2000, Microbial & comparative genomics.
[4] N. W. Davis,et al. The complete genome sequence of Escherichia coli K-12. , 1997, Science.
[5] E. Ohtsubo,et al. Distribution of the insertion sequence IS1 in Gram-negative bacteria , 1981, Nature.
[6] T. Baker,et al. Proteomic discovery of cellular substrates of the ClpXP protease reveals five classes of ClpX-recognition signals. , 2003, Molecular cell.
[7] A. Sinskey,et al. Radiation-Resistant Mutants of Salmonella typhimurium LT2: Development and Characterization , 1973, Journal of bacteriology.
[8] B. Moseley,et al. Repair of Irradiated Transforming Deoxyribonucleic Acid in Wild Type and a Radiation-Sensitive Mutant of Micrococcus radiodurans , 1971, Journal of bacteriology.
[9] Daniel P. Haeusser,et al. The great divide: coordinating cell cycle events during bacterial growth and division. , 2008, Current opinion in microbiology.
[10] A. Minsky. Structural aspects of DNA repair: the role of restricted diffusion , 2003, Molecular microbiology.
[11] Ziheng Yang,et al. Statistical methods for detecting molecular adaptation , 2000, Trends in Ecology & Evolution.
[12] J. Miller,et al. Proliferation of mutators in A cell population , 1997, Journal of bacteriology.
[13] E. Birney,et al. Velvet: algorithms for de novo short read assembly using de Bruijn graphs. , 2008, Genome research.
[14] Bruce Ravel,et al. Protein Oxidation Implicated as the Primary Determinant of Bacterial Radioresistance , 2007, PLoS biology.
[15] V. Mattimore,et al. Radioresistance of Deinococcus radiodurans: functions necessary to survive ionizing radiation are also necessary to survive prolonged desiccation , 1996, Journal of bacteriology.
[16] M. Goodman. Error-prone repair DNA polymerases in prokaryotes and eukaryotes. , 2002, Annual review of biochemistry.
[17] J. Battista,et al. A ring-like nucleoid is not necessary for radioresistance in the Deinococcaceae , 2005, BMC Microbiology.
[18] Ziheng Yang,et al. Estimating the distribution of selection coefficients from phylogenetic data with applications to mitochondrial and viral DNA. , 2003, Molecular biology and evolution.
[19] R. Heller,et al. Replisome assembly and the direct restart of stalled replication forks , 2006, Nature Reviews Molecular Cell Biology.
[20] R. Lenski,et al. The fate of competing beneficial mutations in an asexual population , 2004, Genetica.
[21] J. Norton,et al. Identification of a nitroimidazo-oxazine-specific protein involved in PA-824 resistance in Mycobacterium tuberculosis. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[22] T. Richmond,et al. Mutation discovery in bacterial genomes: metronidazole resistance in Helicobacter pylori , 2005, Nature Methods.
[23] Y. Zengliang,et al. Comparison of base substitutions in response to nitrogen ion implantation and 60Co-gamma ray irradiation in Escherichia coli , 2004 .
[24] John R. Battista,et al. Extensive Diversity of Ionizing-Radiation-Resistant Bacteria Recovered from Sonoran Desert Soil and Description of Nine New Species of the Genus Deinococcus Obtained from a Single Soil Sample , 2005, Applied and Environmental Microbiology.
[25] R. Woodgate. A plethora of lesion-replicating DNA polymerases. , 1999, Genes & development.
[26] F. S. Thatcher,et al. Studies on the irradiation of microorganisms in relation to food preservation. II. Irradiation resistant mutants. , 1961, Canadian journal of microbiology.
[27] T. Dougherty,et al. The Escherichia coli mutant requiring D-glutamic acid is the result of mutations in two distinct genetic loci , 1993, Journal of bacteriology.
[28] R. Lenski,et al. Microbial genetics: Evolution experiments with microorganisms: the dynamics and genetic bases of adaptation , 2003, Nature Reviews Genetics.
[29] T. Baker,et al. ATP-dependent proteases of bacteria: recognition logic and operating principles. , 2006, Trends in biochemical sciences.
[30] L. Snyder,et al. The lit gene product which blocks bacteriophage T4 late gene expression is a membrane protein encoded by a cryptic DNA element, e14 , 1988, Journal of bacteriology.
[31] R. Benz,et al. The gene bglH present in the bgl operon of Escherichia coli, responsible for uptake and fermentation of β‐glucosides encodes for a carbohydrate‐specific outer membrane porin , 1999, Molecular microbiology.
[32] M. Cox. The Bacterial RecA Protein: Structure, Function, and Regulation , 2006 .
[33] John R. Battista,et al. Deinococcus radiodurans — the consummate survivor , 2005, Nature Reviews Microbiology.
[34] K. Makarova,et al. Accumulation of Mn(II) in Deinococcus radiodurans Facilitates Gamma-Radiation Resistance , 2004, Science.
[35] K. Marians. PriA-directed replication fork restart in Escherichia coli. , 2000, Trends in biochemical sciences.
[36] F. Blattner,et al. Mauve: multiple alignment of conserved genomic sequence with rearrangements. , 2004, Genome research.
[37] S. M. Thomas,et al. Different mechanisms for SOS induced alleviation of DNA restriction in Escherichia coli. , 1991, Biochimie.
[38] M. Cox,et al. Recombinational DNA repair in bacteria and the RecA protein. , 1999, Progress in nucleic acid research and molecular biology.
[39] K. Marians. Replication and recombination intersect. , 2000, Current opinion in genetics & development.
[40] M. Kimura. Preponderance of synonymous changes as evidence for the neutral theory of molecular evolution , 1977, Nature.
[41] M. Cox. The nonmutagenic repair of broken replication forks via recombination. , 2002, Mutation research.
[42] Myron F. Goodman,et al. The importance of repairing stalled replication forks , 2000, Nature.
[43] R. Lenski,et al. Long-Term Experimental Evolution in Escherichia coli. I. Adaptation and Divergence During 2,000 Generations , 1991, The American Naturalist.
[44] C. Mathews,et al. Assessing the Metabolic Function of the MutT 8-Oxodeoxyguanosine Triphosphatase in Escherichia coli by Nucleotide Pool Analysis* , 2002, The Journal of Biological Chemistry.
[45] Jeffrey H. Miller,et al. Direct Selection for Mutators inEscherichia coli , 1999, Journal of bacteriology.
[46] A. Szvetnik,et al. Membrane topology of the GltS Na+/glutamate permease of Escherichia coli. , 2007, FEMS microbiology letters.
[47]
R. Durbin,et al.
Mapping Quality Scores Mapping Short Dna Sequencing Reads and Calling Variants Using P ,
2022
.
[48]
K. Marians.
Understanding how the replisome works
,
2008,
Nature Structural &Molecular Biology.
[49]
A. Greener,et al.
Identification of a novel genetic element in Escherichia coli K-12
,
1980,
Journal of bacteriology.
[50]
Miroslav Radman,et al.
Reassembly of shattered chromosomes in Deinococcus radiodurans
,
2006,
Nature.
[51]
Eyal Shimoni,et al.
Ringlike Structure of the Deinococcus radiodurans Genome: A Key to Radioresistance?
,
2003,
Science.
[52]
B. Bridges.
Error-prone DNA repair and translesion synthesis: focus on the replication fork.
,
2005,
DNA repair.
[53]
A. Antoine,et al.
Increased radiation resistance of vegetative Bacillus pumilus.
,
1974,
Applied microbiology.
[54]
M. Cox,et al.
C-terminal Deletions of the Escherichia coli RecA Protein
,
2003,
The Journal of Biological Chemistry.
[55]
E. Witkin,et al.
Inherited Differences in Sensitivity to Radiation in Escherichia Coli.
,
1946,
Proceedings of the National Academy of Sciences of the United States of America.