Richard D. Kolodner

Affiliations: 
1978-1997 Biological Chemistry and Molecular Pharmacology Harvard Medical School, Boston, MA, United States 
 1997- Cellular and Molecular Medicine University of California, San Diego, La Jolla, CA 
Area:
genetic recombination and DNA repair
Website:
http://igm.ucsd.edu/faculty/profiles/kolodner.shtml
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"Richard D. Kolodner"
Bio:

http://www.nasonline.org/member-directory/members/3008589.html
http://cmm.ucsd.edu/lab_pages/kolodner/

Mean distance: 4976.62
 

Parents

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Krishna K. Tewari grad student 1975 UC Irvine
 (The size, structure and replication of the chloroplast DNA from higher plants)
Charles C. Richardson post-doc

Children

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Eric Alani grad student Dana Farber Cancer Institute (Cell Biology Tree)
Douglas K. Bishop grad student (Cell Biology Tree)
David H. Evans grad student The University of Alberta, Canada
Robert A.G. Reenan grad student 1991 Harvard (FlyTree)
Patrick J. Lau grad student 2003 UCSD
Ellen S. Kats grad student 2006 UCSD
Marc L. Mendillo grad student 2007 UCSD
Scarlet S. Shell grad student 2008 UCSD
Jill M. Dowen grad student 2009 UCSD
Stephanie R. Soltero grad student 2009 UCSD
Pascale Bertrand post-doc CEA France
Felipe Calil post-doc UCSD
Nai-Wen Chi post-doc UCSD
Jorrit Enserink post-doc University of Oslo, Norway
Richard Fishel post-doc Ohio State University Medical Center (Physics Tree)
Hernan Flores-Rozas post-doc Florida A&M University
Eva M. Goellner post-doc University of Kentucky Medical Center
Wolf-Dietrich Heyer post-doc (Cell Biology Tree)
Hal Hoffman post-doc UCSD
Hans Hombauer post-doc German Cancer Research Center (DKFZ)
Meng-Er Huang post-doc Charge de Recherche, Institute Cure, Orsay, France
Anthony A. James post-doc (Evolution Tree)
Arlen W. Johnson post-doc (Cell Biology Tree)
Bin-zhong Li post-doc UCSD
Susan T. Lovett post-doc (Cell Biology Tree)
Cynthia A. Luisi-Deluca post-doc University of Pittsburgh
Kyungjae Myung post-doc UNIST
Takuro Nakagawa post-doc University of Osaka
Tiehua Ni post-doc Vanderbilt
Philippe Noirot post-doc Argonne National Laboratory
Vincent Pennaneach post-doc CEA Fontenay-aux-roses (France)
Christopher D. Putnam post-doc
Nobuya Sasaki post-doc Hokkaido University
Kristina H. Schmidt post-doc UCSD (Cell Biology Tree)
Hideki Shimodaira post-doc Tohoku University School of Medicine
Mamata Sivagnanam post-doc UCSD
Anjana Srivatsan post-doc UCSD
Keiko Umezu post-doc Fukuoka Dental University
Clark Chen fellowship/program director (Neurosurgery Tree)
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Publications

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Putnam CD, Kolodner RD. (2023) Insights into DNA cleavage by MutL homologs from analysis of conserved motifs in eukaryotic Mlh1. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. e2300031
Torres KA, Calil FA, Zhou AL, et al. (2022) The unstructured linker of Mlh1 contains a motif required for endonuclease function which is mutated in cancers. Proceedings of the National Academy of Sciences of the United States of America. 119: e2212870119
DuPrie ML, Palacio T, Calil FA, et al. (2022) Mlh1 interacts with both Msh2 and Msh6 for recruitment during mismatch repair. Dna Repair. 119: 103405
Miller AK, Mao G, Knicely BG, et al. (2022) Rad5 and Its Human Homologs, HLTF and SHPRH, Are Novel Interactors of Mismatch Repair. Frontiers in Cell and Developmental Biology. 10: 843121
Calil FA, Li BZ, Torres KA, et al. (2021) Rad27 and Exo1 function in different excision pathways for mismatch repair in Saccharomyces cerevisiae. Nature Communications. 12: 5568
Reyes GX, Kolodziejczak A, Devakumar LJPS, et al. (2021) Ligation of newly replicated DNA controls the timing of DNA mismatch repair. Current Biology : Cb
Li BZ, Putnam CD, Kolodner RD. (2020) Mechanisms underlying genome instability mediated by formation of foldback inversions in Saccharomyces cerevisiae. Elife. 9
Guo E, Ishii Y, Mueller J, et al. (2020) FEN1 endonuclease as a therapeutic target for human cancers with defects in homologous recombination. Proceedings of the National Academy of Sciences of the United States of America
Carbone M, Arron ST, Beutler B, et al. (2020) Tumour predisposition and cancer syndromes as models to study gene-environment interactions. Nature Reviews. Cancer
Li B, Putnam CD, Kolodner RD. (2020) Author response: Mechanisms underlying genome instability mediated by formation of foldback inversions in Saccharomyces cerevisiae Elife
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