James D. Watson

Cold Spring Harbor Laboratory, Cold Spring Harbor, NY 
molecular biology
"James D. Watson"

The Nobel Prize in Physiology or Medicine 1962 was awarded jointly to Francis Harry Compton Crick, James Dewey Watson and Maurice Hugh Frederick Wilkins "for their discoveries concerning the molecular structure of nucleic acids and its significance for information transfer in living material".

Mean distance: 7.45 (cluster 9)
Cross-listing: GenetiTree


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Susan Gottesman research assistant Harvard (ID Tree)
Robert A. Weisberg research assistant 1958 Harvard
Bill Sugden grad student Columbia (Microtree)
David Schlessinger grad student 1957-1960 Harvard (ID Tree)
Charles G. Kurland grad student 1961 Harvard
Raymond F. Gesteland grad student 1966 Harvard
Peter B. Moore grad student 1966 Harvard
Mario R. Capecchi grad student 1967 Harvard
Joan A. Steitz grad student 1967 Harvard
Richard R. Burgess grad student 1964-1969 Harvard Medical School
Roger W. Hendrix grad student 1965-1970 Harvard (Microtree)
William Alan Haseltine grad student 1973 Harvard
H. Robert Horvitz grad student 1974 Harvard
Keith Burridge post-doc CSHL
James Feramisco post-doc CSHL (Cell Biology Tree)
François Gros post-doc CSHL
Elias Lazarides post-doc (Neurotree)
Uriel Z. Littauer post-doc Harvard
Phillip Allen Sharp post-doc CSHL
Andrew Travers post-doc Harvard
Masayasu Nomura post-doc 1958-1959 Harvard
Alfred Tissières post-doc 1957-1962 Harvard
Daniel L. Wulff post-doc 1963 Harvard
Klaus K. Weber post-doc 1965-1967 Harvard
Mark Ptashne post-doc 1965-1968 Harvard
Ronald W. Davis post-doc 1972 Harvard
Thomas Blumenthal post-doc 1970-1973 Harvard
Michael R. Botchan post-doc 1972-1974 CSHL
Robert Tjian post-doc 1979 CSHL
Ronald D.G. McKay research scientist CSHL (Neurotree)
Richard J. Roberts research scientist 1972-1992 CSHL
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Burgess RR, Watson JD. (2017) Gentle antibody-mimetic affinity chromatography with polyol-responsive nanoCLAMPs. Protein Expression and Purification. 134: 154-155
Lee J, Prokopec SD, Watson JD, et al. (2015) Male and female mice show significant differences in hepatic transcriptomic response to 2,3,7,8-tetrachlorodibenzo-p-dioxin. Bmc Genomics. 16: 625
Boutros PC, Fraser M, Harding NJ, et al. (2015) Spatial genomic heterogeneity within localized, multifocal prostate cancer. Nature Genetics. 47: 736-45
Prokopec SD, Watson JD, Lee J, et al. (2015) Sex-related differences in murine hepatic transcriptional and proteomic responses to TCDD. Toxicology and Applied Pharmacology. 284: 188-96
Sun RX, Chong LC, Simmons TT, et al. (2014) Cross-species transcriptomic analysis elucidates constitutive aryl hydrocarbon receptor activity. Bmc Genomics. 15: 1053
Prokopec SD, Watson JD, Pohjanvirta R, et al. (2014) Identification of reference proteins for Western blot analyses in mouse model systems of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) toxicity. Plos One. 9: e110730
Govind SK, Zia A, Hennings-Yeomans PH, et al. (2014) ShatterProof: operational detection and quantification of chromothripsis. Bmc Bioinformatics. 15: 78
Watson JD, Prokopec SD, Smith AB, et al. (2014) TCDD dysregulation of 13 AHR-target genes in rat liver. Toxicology and Applied Pharmacology. 274: 445-54
Prokopec SD, Buchner NB, Fox NS, et al. (2013) Validating reference genes within a mouse model system of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) toxicity. Chemico-Biological Interactions. 205: 63-71
Prokopec SD, Watson JD, Waggott DM, et al. (2013) Systematic evaluation of medium-throughput mRNA abundance platforms. Rna (New York, N.Y.). 19: 51-62
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