Andrew W. Murray

Affiliations: 
Molecular and Cellular Biology Harvard University, Cambridge, MA, United States 
Area:
Cell cycle, evolution
Website:
http://labs.mcb.harvard.edu/murray/index.html
Google:
"Andrew W. Murray"
Bio:

http://www.fas.harvard.edu/~biophys/Andrew_W_Murray.htm
http://www.news.harvard.edu/gazette/2000/11.30/03-murray.html
https://www.mcb.harvard.edu/mcb/faculty/profile/andrew-w-murray/
http://129.199.13.35/laureats/cv.2009001.fr.pdf

Cross-listing: Chemistry Tree

Parents

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Jack W. Szostak grad student 1978-1984 Harvard Medical School (Astrobiology Academic Family Tree)
 (Chromosome and Plasmid Behavior in Yeast)
Marc W. Kirschner post-doc 1986-1989 UCSF

Children

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Aaron F. Straight grad student 1998 UCSF
Adam D. Rudner grad student 2000 UCSF
Marion A. Shonn grad student 2001 UCSF
Needhi Bhalla grad student 2002 UCSF
Alexis Szidon grad student 2002 UCSF
Nathaniel S. Edwards grad student 2004 Harvard
Ayellet V. Falcovitz-Segre grad student 2006 Harvard
Vahan B. Indjeian grad student 2006 Harvard
Nicholas T. Ingolia grad student 2006 Harvard
William J. Palframan grad student 2006 Harvard
Laurence A. Shumway grad student 2007 Harvard
Tsz C. Lau grad student 2012 Harvard
Entela Nako grad student 2013 Harvard
Mary E. Wahl grad student 2014 Harvard
Hironori Funabiki post-doc Harvard
Rong Li post-doc UCSF
Gregg A Wildenberg post-doc Harvard
María Angélica Bravo Núñez post-doc 2020- Harvard
Thea C. Norman post-doc 1996-1999 UCSF (Chemistry Tree)
John H Koschwanez post-doc 2007-2013 Harvard (Chemistry Tree)
Edel Hyland post-doc 2009-2013 Harvard (Evolution Tree)
Peter J. Turnbaugh post-doc 2010-2014 Harvard College (Microtree)
Andrea Giometto post-doc 2016-2020 Harvard
BETA: Related publications

Publications

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Giometto A, Nelson DR, Murray AW. (2021) Antagonism between killer yeast strains as an experimental model for biological nucleation dynamics. Elife. 10
Barber F, Amir A, Murray AW. (2020) Cell-size regulation in budding yeast does not depend on linear accumulation of Whi5. Proceedings of the National Academy of Sciences of the United States of America
Srinivasan M, Fumasoni M, Petela NJ, et al. (2020) Cohesion is established during DNA replication utilising chromosome associated cohesin rings as well as those loaded de novo onto nascent DNAs. Elife. 9
Hsieh YP, Makrantoni V, Robertson D, et al. (2020) Evolutionary repair: Changes in multiple functional modules allow meiotic cohesin to support mitosis. Plos Biology. 18: e3000635
Fumasoni M, Murray AW. (2020) The evolutionary plasticity of chromosome metabolism allows adaptation to constitutive DNA replication stress. Elife. 9
Srinivasan M, Fumasoni M, Petela NJ, et al. (2020) Author response: Cohesion is established during DNA replication utilising chromosome associated cohesin rings as well as those loaded de novo onto nascent DNAs Elife
Fumasoni M, Murray AW. (2020) Author response: The evolutionary plasticity of chromosome metabolism allows adaptation to constitutive DNA replication stress Elife
Coelho MC, Pinto RM, Murray AW. (2019) Heterozygous mutations cause genetic instability in a yeast model of cancer evolution. Nature
Atis S, Weinstein BT, Murray AW, et al. (2019) Microbial Range Expansions on Liquid Substrates Physical Review X. 9
Giometto A, Nelson DR, Murray AW. (2018) Physical interactions reduce the power of natural selection in growing yeast colonies. Proceedings of the National Academy of Sciences of the United States of America
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