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J Farnham

Showing results (111-120 of 232) with videos related to

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Oncogene|March 19, 2003
Identification and characterization of CRG-L2, a new marker for liver tumor developmentCarrie R Graveel, Sarah R Harkins-Perry, Luis G Acevedo, et al.
Plos One|December 21, 2010
ZNF274 recruits the histone methyltransferase SETDB1 to the 3' ends of ZNF genesSeth Frietze, Henriette O'Geen, Kimberly R Blahnik, et al.
American Journal of Obstetrics and Gynecology|October 1, 1982
The uterine hemodynamic response to repetitive unilateral vascular embolization in the pregnant eweJ F Clapp, M K McLaughlin, R Larrow, et al.
Genome Research|October 21, 2006
A computational genomics approach to identify cis-regulatory modules from chromatin immunoprecipitation microarray data--a case study using E2F1Victor X Jin, Alina Rabinovich, Sharon L Squazzo, et al.
Bioinformatics (Oxford, England)|October 3, 2009
W-ChIPMotifs: a web application tool for de novo motif discovery from ChIP-based high-throughput dataVictor X Jin, Jeff Apostolos, Naga Satya Venkateswara Ra Nagisetty, et al.
British Journal of Pharmacology|May 23, 2012
Activation of PAC(1) and VPAC receptor subtypes elicits differential physiological responses from sympathetic preganglionic neurons in the anaesthetized ratMelissa A Inglott, Ethan A Lerner, Paul M Pilowsky, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 13, 1998
c-Myc target gene specificity is determined by a post-DNAbinding mechanismK E Boyd, J Wells, J Gutman, et al.
Epigenetics & Chromatin|May 23, 2013
ZBTB33 binds unmethylated regions of the genome associated with actively expressed genesAdam Blattler, Lijing Yao, Yao Wang, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 21, 2002
The identification of E2F1-specific target genesJulie Wells, Carrie R Graveel, Stephanie M Bartley, et al.
Molecular and Cellular Biology|July 27, 2000
Target gene specificity of E2F and pocket protein family members in living cellsJ Wells, K E Boyd, C J Fry, et al.
Pageof 24

Showing results (111-120 of 232) with videos related to

Sort By:
Pageof 24
Oncogene|March 19, 2003
Identification and characterization of CRG-L2, a new marker for liver tumor developmentCarrie R Graveel, Sarah R Harkins-Perry, Luis G Acevedo, et al.
Plos One|December 21, 2010
ZNF274 recruits the histone methyltransferase SETDB1 to the 3' ends of ZNF genesSeth Frietze, Henriette O'Geen, Kimberly R Blahnik, et al.
American Journal of Obstetrics and Gynecology|October 1, 1982
The uterine hemodynamic response to repetitive unilateral vascular embolization in the pregnant eweJ F Clapp, M K McLaughlin, R Larrow, et al.
Genome Research|October 21, 2006
A computational genomics approach to identify cis-regulatory modules from chromatin immunoprecipitation microarray data--a case study using E2F1Victor X Jin, Alina Rabinovich, Sharon L Squazzo, et al.
Bioinformatics (Oxford, England)|October 3, 2009
W-ChIPMotifs: a web application tool for de novo motif discovery from ChIP-based high-throughput dataVictor X Jin, Jeff Apostolos, Naga Satya Venkateswara Ra Nagisetty, et al.
British Journal of Pharmacology|May 23, 2012
Activation of PAC(1) and VPAC receptor subtypes elicits differential physiological responses from sympathetic preganglionic neurons in the anaesthetized ratMelissa A Inglott, Ethan A Lerner, Paul M Pilowsky, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 13, 1998
c-Myc target gene specificity is determined by a post-DNAbinding mechanismK E Boyd, J Wells, J Gutman, et al.
Epigenetics & Chromatin|May 23, 2013
ZBTB33 binds unmethylated regions of the genome associated with actively expressed genesAdam Blattler, Lijing Yao, Yao Wang, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 21, 2002
The identification of E2F1-specific target genesJulie Wells, Carrie R Graveel, Stephanie M Bartley, et al.
Molecular and Cellular Biology|July 27, 2000
Target gene specificity of E2F and pocket protein family members in living cellsJ Wells, K E Boyd, C J Fry, et al.
Pageof 24