Gary Ruvkun

Affiliations: 
Genetics Massachusetts General Hospital, Boston, MA 
Area:
miRNA, C. elegans development and lifespan
Website:
http://www.hms.harvard.edu/dms/BBS/fac/ruvkun.php
Google:
"Gary Bruce Ruvkun"
Bio:

http://www.fas.harvard.edu/~biophys/Gary_Ruvkun.htm
http://genetics.med.harvard.edu/faculty/ruvkun
http://ccib.mgh.harvard.edu/ruvkun
http://www.hms.harvard.edu/agingresearch/pages/garyruvkun.htm
http://molbio.mgh.harvard.edu/laboratories/ruvkun
http://ccib.mgh.harvard.edu/ruvkun/pi_bio
http://news.harvard.edu/gazette/story/2008/11/microbiologist-gary-ruvkun/

Mean distance: 14.92 (cluster 57)
 
SNBCP
Cross-listing: Neurotree - Cell Biology Tree

Parents

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Fred M. Ausubel grad student 1977-1982 Harvard
 (The molecular genetic analysis of symbiotic nitrogen fixation genes from Rhizobium meliloti)
Walter Gilbert post-doc Harvard
H. Robert Horvitz post-doc MIT

Children

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Peter Barrett grad student 1993-1999 Harvard (Neurotree)
Gisela M. Sandoval grad student 2004 Harvard (Neurotree)
Duo Wang grad student 2005 Harvard (Neurotree)
Gabriel D. Hayes grad student 2006 Harvard (Neurotree)
Maurice D. Butler grad student 2008 Harvard (Neurotree)
Harrison W. Gabel grad student 2008 Harvard (Neurotree)
Sascha E. Russel grad student 2011 Harvard (Neurotree)
Zhen Shi grad student 2013 Harvard (Neurotree)
Jacob C. Carlson grad student 2014-2016 Harvard
Oliver Hobert post-doc Columbia (Neurotree)
Ilya Ruvinsky post-doc Harvard Medical School and Massachusetts General Hospital (Evolution Tree)
Justine A. Melo post-doc 2004-
Buck S. Samuel post-doc 2008-2014 MGH & Harvard Medical School (Microtree)
BETA: Related publications

Publications

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Ambros V, Ruvkun G. (2018) Recent Molecular Genetic Explorations of MicroRNAs. Genetics. 209: 651-673
Newman MA, Ji F, Fischer SEJ, et al. (2018) The surveillance of pre-mRNA splicing is an early step in RNAi of endogenous genes. Genes & Development
Dowen RH, Breen PC, Tullius T, et al. (2016) A microRNA program in the C. elegans hypodermis couples to intestinal mTORC2/PQM-1 signaling to modulate fat transport. Genes & Development. 30: 1515-28
Samuel BS, Rowedder H, Braendle C, et al. (2016) Caenorhabditis elegans responses to bacteria from its natural habitats. Proceedings of the National Academy of Sciences of the United States of America
Govindan JA, Jayamani E, Zhang X, et al. (2015) Dialogue between E. coli free radical pathways and the mitochondria of C. elegans. Proceedings of the National Academy of Sciences of the United States of America
Govindan JA, Jayamani E, Zhang X, et al. (2015) Lipid signalling couples translational surveillance to systemic detoxification in Caenorhabditis elegans. Nature Cell Biology. 17: 1294-303
Phillips CM, Brown KC, Montgomery BE, et al. (2015) piRNAs and piRNA-Dependent siRNAs Protect Conserved and Essential C. elegans Genes from Misrouting into the RNAi Pathway. Developmental Cell. 34: 457-65
Kirienko NV, Ausubel FM, Ruvkun G. (2015) Mitophagy confers resistance to siderophore-mediated killing by Pseudomonas aeruginosa. Proceedings of the National Academy of Sciences of the United States of America. 112: 1821-6
Govindan JA, Ruvkun G. (2014) Pathogens. Virulence. 5: 695-6
Wang MC, Oakley HD, Carr CE, et al. (2014) Gene pathways that delay Caenorhabditis elegans reproductive senescence. Plos Genetics. 10: e1004752
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