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Nathaniel J Moorman

Showing results (11-20 of 107) with videos related to

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Journal of Virology|September 13, 2003
The gammaherpesvirus 68 latency-associated nuclear antigen homolog is critical for the establishment of splenic latencyNathaniel J Moorman, David O Willer, Samuel H Speck
Journal of Virology|January 19, 2018
The 5' Untranslated Region of the Major Immediate Early mRNA Is Necessary for Efficient Human Cytomegalovirus ReplicationKyle C Arend, Erik M Lenarcic, Nathaniel J Moorman
Journal of Virology|September 16, 2004
Identification of candidate gammaherpesvirus 68 genes required for virus replication by signature-tagged transposon mutagenesisNathaniel J Moorman, Chie Yu Lin, Samuel H Speck
Virology|March 14, 2015
An unbiased proteomics approach to identify human cytomegalovirus RNA-associated proteinsErik M Lenarcic, Benjamin J Ziehr, Nathaniel J Moorman
Virology|April 2, 2003
Disruption of the gene encoding the gammaHV68 v-GPCR leads to decreased efficiency of reactivation from latencyNathaniel J Moorman, Herbert W Virgin, Samuel H Speck
Virology|January 17, 2016
The eIF4AIII RNA helicase is a critical determinant of human cytomegalovirus replicationBen Ziehr, Erik Lenarcic, Chad Cecil, et al.
Virology|September 21, 2019
Human cytomegalovirus pTRS1 stimulates cap-independent translationHeather A Vincent, Benjamin Ziehr, Erik M Lenarcic, et al.
Molecular & Cellular Proteomics : MCP|December 22, 2009
A targeted spatial-temporal proteomics approach implicates multiple cellular trafficking pathways in human cytomegalovirus virion maturationNathaniel J Moorman, Ronit Sharon-Friling, Thomas Shenk, et al.
Journal of Virology|April 8, 2011
Human cytomegalovirus induces the activity and expression of acetyl-coenzyme A carboxylase, a fatty acid biosynthetic enzyme whose inhibition attenuates viral replicationCody M Spencer, Xenia L Schafer, Nathaniel J Moorman, et al.
Journal of Virology|July 29, 2016
Multiple Transcripts Encode Full-Length Human Cytomegalovirus IE1 and IE2 Proteins during Lytic InfectionKyle C Arend, Benjamin Ziehr, Heather A Vincent, et al.
Pageof 11

Showing results (11-20 of 107) with videos related to

Sort By:
Pageof 11
Journal of Virology|September 13, 2003
The gammaherpesvirus 68 latency-associated nuclear antigen homolog is critical for the establishment of splenic latencyNathaniel J Moorman, David O Willer, Samuel H Speck
Journal of Virology|January 19, 2018
The 5' Untranslated Region of the Major Immediate Early mRNA Is Necessary for Efficient Human Cytomegalovirus ReplicationKyle C Arend, Erik M Lenarcic, Nathaniel J Moorman
Journal of Virology|September 16, 2004
Identification of candidate gammaherpesvirus 68 genes required for virus replication by signature-tagged transposon mutagenesisNathaniel J Moorman, Chie Yu Lin, Samuel H Speck
Virology|March 14, 2015
An unbiased proteomics approach to identify human cytomegalovirus RNA-associated proteinsErik M Lenarcic, Benjamin J Ziehr, Nathaniel J Moorman
Virology|April 2, 2003
Disruption of the gene encoding the gammaHV68 v-GPCR leads to decreased efficiency of reactivation from latencyNathaniel J Moorman, Herbert W Virgin, Samuel H Speck
Virology|January 17, 2016
The eIF4AIII RNA helicase is a critical determinant of human cytomegalovirus replicationBen Ziehr, Erik Lenarcic, Chad Cecil, et al.
Virology|September 21, 2019
Human cytomegalovirus pTRS1 stimulates cap-independent translationHeather A Vincent, Benjamin Ziehr, Erik M Lenarcic, et al.
Molecular & Cellular Proteomics : MCP|December 22, 2009
A targeted spatial-temporal proteomics approach implicates multiple cellular trafficking pathways in human cytomegalovirus virion maturationNathaniel J Moorman, Ronit Sharon-Friling, Thomas Shenk, et al.
Journal of Virology|April 8, 2011
Human cytomegalovirus induces the activity and expression of acetyl-coenzyme A carboxylase, a fatty acid biosynthetic enzyme whose inhibition attenuates viral replicationCody M Spencer, Xenia L Schafer, Nathaniel J Moorman, et al.
Journal of Virology|July 29, 2016
Multiple Transcripts Encode Full-Length Human Cytomegalovirus IE1 and IE2 Proteins during Lytic InfectionKyle C Arend, Benjamin Ziehr, Heather A Vincent, et al.
Pageof 11