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Tamarin: Principles of Genetics, Seventh Edition
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Appendix B: Suggestions for Further Reading
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Suggestions for Further Reading
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Scott, J., et al. 1983. Structure of a mouse submaxillary messenger RNA encoding epidermal growth factor and seven related proteins. Science 221:236 40. Selmer, M., et al. 1999. Crystal structure of Thermotoga maritima ribosome recycling factor: a tRNA mimic. Science 286:2349 52. Shtilerman, M., G. Lorimer, and S. Englander. 1999. Chaperonin function: Folding by forced unfolding. Science 284:822 25. Sigler, P., et al. 1998. Structure and function in Gro-EL-mediated protein folding. Annual Review of Biochemistry 67:581 608. Song, H., et al. 2000. The crystal structure of human eukaryotic release factor eRF1 Mechanism of stop codon recognition and peptidyl-tRNA hydrolysis. Cell 100:311 21. Sprinzl, M. 1994. Elongation factor Tu: A regulatory GTPase with an integrated effector. Trends in Biochemical Sciences 19:245 50. Stadtman, T. 1996. Selenocysteine. Annual Review of Biochemistry 65:83 100. Stans eld, I., and M. Tuite. 1994. Polypeptide chain termination in Saccharomyces cerevisiae. Current Genetics 25:385 95. Stark, H., et al. 1997. Arrangement of tRNAs in pre- and posttranslocational ribosomes revealed by electron cryomicroscopy. Cell 88:19 28. . 2000. Large-scale movement of elongation factor G and extensive conformational change of the ribosome during translocation. Cell 100:301 9. Stathopoulos, C., et al. 2000. One polypeptide with two aminoacyl-tRNA synthetase activities. Science 287:479 82. Stern, S., et al. 1989. RNA-protein interactions in 30S ribosomal subunits: Folding and function of 16S rRNA. Science 244:783 90. Vogel, G. 1998. Tracking the history of the genetic code. Science 281:329 31. Wilson, K., and H. Noller. 1998. Molecular movement inside the translational engine. Cell 92:337 49. Wolin, S. 1994. From the elephant to E. coli: SRP-dependent protein targeting. Cell 77:787 90. Xu, Z., A. Horwich, and P. Sigler. 1997. The crystal structure of the asymmetric GroEL-GroES-(ADP)7 chaperonin complex. Nature 388:741 50. 12 DNA: Its Mutation, Repair, and Recombination Aboussekhra, A., et al. 1995. Mammalian DNA nucleotide excision repair reconstituted with puri ed protein components. Cell 80:859 68. Ames, B., R. Magaw, and L. Gold. 1987. Ranking possible carcinogenic hazards. Science 236:271 80.
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Amrein, M., et al. 1988. Scanning tunneling microscopy of RecA-DNA complexes coated with a conducting lm. Science 240:514 16. Anderson, D., and S. Kowalczykowski. 1997. The recombination hot spot is a regulatory element that switches the polarity of DNA degradation by the RecBCD enzyme. Genes & Development 11:571 81. Ariyoshi, M., et al. 1994. Atomic structure of the RuvC resolvase: A Holliday junctionspeci c endonuclease from E. coli. Cell 78:1063 72. Benzer, S. 1961. On the topography of the genetic ne structure. Proceedings of the National Academy of Sciences, USA 47:403 15. Bruner, S., D. Norman, and G.Verdine. 2000. Structural basis for recognition and repair of the endogenous mutagen 8-oxoguanine in DNA. Nature 403:859 66. Bruner, S., et al. 1998. Repair of oxidatively damaged guanine in Saccharomyces cerevisiae by an alternative pathway. Current Biology 8:393 403. Buermeyer, A., et al. 1999. Mammalian DNA mismatch repair. Annual Review of Genetics 33:533 64. Cairns, J., J. Overbaugh, and S. Miller. 1988. The origin of mutants. Nature 335:142 45. Camerini-Otero, R., and P. Hsieh. 1995. Homologous recombination proteins in prokaryotes and eukaryotes. Annual Review of Genetics 29:509 52. Cox, M., et al. 2000. The importance of repairing stalled replication forks. Nature 404:37 41. Craig, N. 1988. The mechanism of conservative site-speci c recombination. Annual Review of Genetics 22:77 105. Culotta, E., and D. Koshland, Jr. 1994. Molecule of the year: DNA repair works its way to the top. Science 266:1926 29. de Laat, W., N. Jaspers, and J. Hoeijmakers. 1999. Molecular mechanisms of nucleotide excision repair. Genes & Development 13:768 85. Drake, J., et al. 1998. Rates of spontaneous mutation. Genetics 148:1667 86. Eggleston, A., and S. West. 1996. Exchanging partners: recombination in E. coli. Trends in Genetics 12:20 26. Epstein, R., et al. 1963. Physiological studies of conditional lethal mutations of bacteriophage T4D. Cold Spring Harbor Symposium on Quantitative Biology 28:375 92. Featherstone, C., and S. Jackson. 1999. Ku, a DNA repair protein with multiple cellular functions Mutation Research 434:3 15. Foster, P. 1999. Mechanisms of stationary phase mutation: A decade of adaptive
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mutation. Annual Review of Genetics 33:57 88. Friedberg, E. 1996. Relationships between DNA repair and transcription. Annual Review of Biochemistry 65:15 42. Friedberg, E., G. Walker, and W. Siede. 1995. DNA Repair and Mutagenesis. Herndon, Va.: ASM Press. Goodman, M., and B. Tippin. 2000. Sloppier copier DNA polymerases involved in genome repair. Current Opinion in Genetics & Development 10:162 68. Green, M. 1990. The foundations of genetic ne structure: A retrospective from memory. Genetics 124:793 96. Hall, B. 1997. On the speci city of adaptive mutations. Genetics 145:39 44. Hanawalt, P., B. Donahue, and K. Sweder. 1994. Repair and transcription: Collision or collusion Current Biology 4:518 21. Hoeijmakers, J. 1993. Nucleotide excision repair I: From E. coli to yeast. Trends in Genetics 9:173 77. . 1993. Nucleotide excision repair II: From yeast to mammals. Trends in Genetics 9:211 17. Holliday, R. 1974. Molecular aspects of genetic exchange and gene conversion. Genetics 78:273 87. Hopfner, K.-P., et al. 2000. Structural biology of the Rad50 ATPase: ATP-driven conformational control in DNA doublestrand break repair and the ABC-ATPase superfamily. Cell 101:789 800. Johnson, R., S. Prakash, and L. Prakash. 1999. Ef cient bypass of a thymine-thymine dimer by yeast DNA polymerase, Pol . Science 283:1001 4. Kanaar, R., J. Hoeijmakers, and D. van Gent. 1998. Molecular mechanisms of DNA double-strand break repair. Trends in Cell Biology 8:483 89. Karran, P. 2000. DNA double-strand break repair in mammalian cells. Current Opinion in Genetics & Development 10:144 50. Keeney, S., C. Giroux, and N. Kleckner. 1997. Meiosis-speci c DNA double-strand breaks are catalyzed by Spo11, a member of a widely conserved protein family. Cell 88:375 84. Kobayashi, T., et al. 1997. Mutations in the XPD gene leading to xeroderma pigmentosum symptoms. Human Mutation 9:322 31. Kowalczykowski, S., and A. Eggleston. 1994. Homologous pairing and DNA strandexchange proteins. Annual Review of Biochemistry 63:991 1043. Lee, C., and M. Levitt. 1991. Accurate prediction of the stability and activity effects of site-directed mutagenesis on a protein core. Nature 352:448 51. Ley, R. 1993. Photoreactivation in humans. Proceedings of the National Academy of Sciences, USA 90:4337.
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