Moleküler genetikte okunması gereken klasik makaleler

      1. A. E. Garrod, The Incidence of Alkaptonuria: A Study in Chemical Individuality, Lancet vol 2, 1616-20 (1902) http://www.esp.org/foundations/genetics/classical/ag-02.pdf
      2. Cuénot L., “The law of Mendel and the inheritance of pigmentation in mice”, Archives de zoologie expérimentale et générale, 1902, 3rd series, 10, p. XXVII-XXX.
      3. Beadle & Tatum, Genetic control of biochemical reactions in neurospora, PNAS 27, 499-506 (1941) http://www.pnas.org/content/27/11/499.full.pdf+htm
      4. G.Beadle, B. Ephrussi, Drosophilia Eye Transplants , (1935): Chapter 18: EPHRUSSI/BEADLE/TATUM: Genes Encode Enzymes – http://www.mhhe.com/biosci/genbio/raven6b/graphics/raven06b/howscientiststhink/18-lab.pdf
      5. A.J.F. Griffith, J.H. Miller, D.T. Suzuki, R.C. Lewontin and W.M. Gelbart, An Introduction to Genetic Analysis. W.H. Freeman and Company, New York, (2000, Seventh Eddition) http://www.bio.bg.ac.rs/materijali_predmeta/med-eng-griffiths-an-introduction-to-genetic-analysis.pdf
      6. Mendel (1865) – Gregor Mendel experiments in plant hybridisation – http://www.esp.org/foundations/genetics/classical/gm-65.pdf – Faksimile: http://www.esp.org/books/bateson/mendel/facsimile/contents.htm
      7. Avery et al., Studies on the chemical nature of the substance inducing transformation of pneumococcal types, J.Exp.Med. 79, 137-158 (1944 ) – http://jem.rupress.org/content/79/2/137.full.pdf+html
      8. McCarthy, A Retrospective Look: How We Identified the Pnemnococcal Transforming Substance as DNA, J.Exp.Med 179, 385-399, 1994 – http://jem.rupress.org/content/179/2/385.full.pdf+htm
      9. R. M. Steinman and C. L. Moberg, A triple tribute to the experiment that transformed biology. J Exp Med 1994 179:379-384. ( Published February 1, 1994) http://jem.rupress.org/content/179/2/379.full.pdf+html
      10. S.E. Luria & M. Delbrück. Mutations of bacteria from virus sensitivity to virus resistance. Genetics 28, 491-511 (1943). http://www.genetics.org/content/28/6/491.full.pdf+html
      11. H. B. Newcombe. Origin of bacterial variants. Nature 164, 150-151 (1949)http://www.nature.com/nature/journal/v164/n4160/pdf/164150a0.pdf
      12. J.Monod, A.Audureau, Mutation et adaptation enzymatique chez Escherichia coli-mutabile, 1946 http://gallica.bnf.fr/ark:/12148/bpt6k6496737z/f873.image.r=Mutation%20et%20adaptation%20enzymatique
      13. Watson & Crick,(1) A Structure for Deoxyribose Nucleic Acid and (2) Genetic implications of the structure of DNA, Nature 171,737-738 & 964-967 (1953) http://www.nature.com/nature/dna50/archive.html direct download:

        (1) http://www.nature.com/nature/dna50/watsoncrick.pdf

        (2) http://www.nature.com/nature/dna50/watsoncrick2.pdf

      14. Franklin R. and Gosling R.G., Molecular Configuration in Sodium Thymonucleate, Nature 171, 740-741 (1953) http://www.nature.com/nature/dna50/franklingosling.pdf
      15. Wilkins M.H.F., A.R. Stokes A.R. & Wilson, H.R., Molecular Structure of Deoxypentose Nucleic Acids, Nature 171, 738-740 (1953) http://www.nature.com/nature/dna50/wilkins.pdf
      16. DeVoe & Tinoco, The stability of helical polynucleotides: Base contributions, 1962, J mol biol Volume 4, Issue 6, June 1962, Pages 500-517  https://ww2.chemistry.gatech.edu/~lw26/bCourse_Information/6572/papers/tinoco_1962.pdf
      17. Goodman MF, Hydrogen bonding revisited: geometric selection as a principal determinant of DNA replication fidelity, Proc Natl Acad Sci U S A. 1997 Sep 30;94(20):10493-5. http://www.pnas.org/content/94/20/10493.full.pdf?sid=9b3a41db-9727-4bfa-b754-1d86d45386b0
      18. Sean Moran, Rex X.-F. Ren, and Eric T. Kool, A thymidine triphosphate shape analog lacking Watson–Crick pairing ability is replicated with high sequence selectivity PNAS 1997 94 (20) 10506-10511; doi:10.1073/pnas.94.20.10506http://www.pnas.org/content/94/20/10506.full.pdf?sid=8660242e-f6f2-4f0d-a545-2ed76c9e61dc
      19. Speyer JF, Mutagenic DNA polymerase, Biochem Biophys Res Commun. 1965, 21:6-8.
      20. S. Benzer, On the topography of the genetic fine structure , PNAS 47, 403-415 (1961)http://www.pnas.org/content/47/3/403.full.pdf
      21. S. Benzer, Fine structure of a genetic region in Bacteriophage, PNAS, 41, 344-354 (1955)http://www.pnas.org/content/41/6/344.full.pdf?sid=21e9a8b6-27f1-44f8-8e17-645463026f6d
      22. S. Benzer, On the topology of the genetic fine structure, PNAS, Vol. 45, 1607-1620 (1959) http://www.pnas.org/content/45/11/1607.full.pdf?sid=e511f397-ef9f-473c-b1e9-d161edd03ecf
      23. A tribute to Seymour Benzer: NM Bonini, Genetics, 180, 1265-73 (2008) http://www.genetics.org/cgi/content/full/180/3/1265
      24. Champe & Benzer, An active cistron fragment, JMB 4, 288-292 (1962)-Faksimile: http://wellcomelibrary.org/player/b20152000#?asi=0&ai=0
      25. FM Raushel, JB Thoden, and HM Holden, Enzymes with molecular tunnels, Acc Chem Res, 36(7): 539-48 (2003) – http://pubs.acs.org/doi/pdfplus/10.1021/ar020047k
      26. S. Benzer & S.P. Champe, A change from nonsense to sense in the genetic code, PNAS 48, 1114-1121 (1962) – http://www.pnas.org/content/48/7/1114.full.pdf?sid=156982ca-02e5-4808-88d3-90ebbff37019 – http://www.ncbi.nlm.nih.gov/pmc/articles/PMC220916/
      27. S.Brenner, A.O.W.Stretton, S.Kapplan, Genetic Code: The ‘Nonsense’ Triplets for Chain Termination and their Suppression, Nature 206, 994 – 998 (05 June 1965) – http://www.nature.com/nature/journal/v206/n4988/pdf/206994a0.pdf
      28. Epstein et al., Physiological studies of conditional lethal mutants of bacteriophage T4D, Cold Spring Harbor Symposia 28, 375-394 (1964)
      29. F. Stahl. Anecdotal, Historical And Critical Commentaries on Genetics – The amber mutants of phage T4. , Genetics 141, 439-442 (1995) – http://www.genetics.org/content/141/2/439.full.pdf+html
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      31. E. Kellenberger, Vegetative Bacteriophage and the Maturation of the Virus Particles, Advences in Virus Research 8, p. 1-61 (1962)
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      33. Bertani, Studies on Lysogenesis I.: The Mode of Phage Liberation by Lysogenic Escherichia coli, J. Bact. 62, 293-300 (1951) – http://jb.asm.org/content/62/3/293
      34. Bertani, Lysogeny at Mid-Twentieth Century: P1, P2, and Other Experimental Systems, J. Bact. 186, 595-600 (2004) – http://jb.asm.org/content/186/3/595.full – direct download: http://jb.asm.org/content/186/3/595.full.pdf+html?sid=6f5cf16c-06c7-4c9a-87bc-6559c6b71bda
      35. Armin D. Kaiser, Mutations in a temperate bacteriophage affecting its ability to lysogenize Escherichia coli, Virology 3, 42-61 (1957) – No free access : http://www.sciencedirect.com/science/article/pii/0042682257900223 Try this link: https://www.researchgate.net/publication/10156240_Mutations_in_a_temperate_bacteriophage_affecting_its_ability_to_lysogenize_Escherichia_coli
      36. H. Eisen et al., Regulation of Repressor Expression in λ, PNAS 66, 855-862 (1970). – http://www.ncbi.nlm.nih.gov/pmc/articles/PMC283129/pdf/pnas00098-0271.pdf
      37. ngelsberg et al., Positive Control of Enzyme Synthesis by Gene C in the L-Arabinose System, J. Bacteriology 90, 946-957 (1965) – http://jb.asm.org/content/90/4/946.long
      38. R Schleif, AraC protein: A love–hate relationship, Bioessays, 25 274–282 (2003) –http://gene.bio.jhu.edu/Ourspdf/109.pdf
    1.  Kaynak: Coursera-Classic papers in molecular genetics

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