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Plos One|August 30, 2007
Host transcript accumulation during lytic KSHV infection reveals several classes of host responsesSanjay Chandriani, Don GanemMolecular Cell|March 17, 2004
Lytic KSHV infection inhibits host gene expression by accelerating global mRNA turnoverBritt Glaunsinger, Don GanemThe Journal of General Virology|December 16, 2006
Induction of chemokine production by latent Kaposi's sarcoma-associated herpesvirus infection of endothelial cellsYiyiang Xu, Don GanemVirology|March 1, 2011
Infection of primary human tonsillar lymphoid cells by KSHV reveals frequent but abortive infection of T cellsJinjong Myoung, Don GanemThe Journal of Clinical Investigation|February 23, 2011
Active lytic infection of human primary tonsillar B cells by KSHV and its noncytolytic control by activated CD4+ T cellsJinjong Myoung, Don GanemScience (New York, N.Y.)|February 5, 2005
The kaposin B protein of KSHV activates the p38/MK2 pathway and stabilizes cytokine mRNAsCraig McCormick, Don GanemThe Journal of Clinical Investigation|January 1, 2004
Inefficient establishment of KSHV latency suggests an additional role for continued lytic replication in Kaposi sarcoma pathogenesisAdam Grundhoff, Don GanemProceedings of the National Academy of Sciences of the United States of America|July 2, 2003
Lytic but not latent infection by Kaposi's sarcoma-associated herpesvirus requires host CSL protein, the mediator of Notch signalingYuying Liang, Don GanemCell Host & Microbe|December 17, 2009
Regulation of KSHV lytic switch protein expression by a virus-encoded microRNA: an evolutionary adaptation that fine-tunes lytic reactivationPriya Bellare, Don GanemCell Host & Microbe|July 20, 2010
Viral latency and its regulation: lessons from the gamma-herpesvirusesSamuel H Speck, Don GanemPageof 13