Karen L. Clyde, Ph.D.
Affiliations: | 2006 | University of California, Berkeley, Berkeley, CA, United States |
Area:
General, VirologyGoogle:
"Karen Clyde"Parents
Sign in to add mentorEva Harris | grad student | 2006 | UC Berkeley | |
(The role of conserved RNA elements in the translation and replication of dengue virus.) |
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Publications
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Abernathy E, Clyde K, Yeasmin R, et al. (2014) Gammaherpesviral gene expression and virion composition are broadly controlled by accelerated mRNA degradation. Plos Pathogens. 10: e1003882 |
Richner JM, Clyde K, Pezda AC, et al. (2011) Global mRNA degradation during lytic gammaherpesvirus infection contributes to establishment of viral latency. Plos Pathogens. 7: e1002150 |
Clyde K, Glaunsinger BA. (2011) Deep sequencing reveals direct targets of gammaherpesvirus-induced mRNA decay and suggests that multiple mechanisms govern cellular transcript escape. Plos One. 6: e19655 |
Clyde K, Glaunsinger BA. (2010) Getting the message direct manipulation of host mRNA accumulation during gammaherpesvirus lytic infection. Advances in Virus Research. 78: 1-42 |
Covarrubias S, Richner JM, Clyde K, et al. (2009) Host shutoff is a conserved phenotype of gammaherpesvirus infection and is orchestrated exclusively from the cytoplasm. Journal of Virology. 83: 9554-66 |
Clyde K, Barrera J, Harris E. (2008) The capsid-coding region hairpin element (cHP) is a critical determinant of dengue virus and West Nile virus RNA synthesis. Virology. 379: 314-23 |
Harris E, Holden KL, Edgil D, et al. (2006) Molecular biology of flaviviruses. Novartis Foundation Symposium. 277: 23-39; discussion 40 |
Clyde K, Kyle JL, Harris E. (2006) Recent advances in deciphering viral and host determinants of dengue virus replication and pathogenesis. Journal of Virology. 80: 11418-31 |
Clyde K, Harris E. (2006) RNA secondary structure in the coding region of dengue virus type 2 directs translation start codon selection and is required for viral replication. Journal of Virology. 80: 2170-82 |
Holden KL, Stein DA, Pierson TC, et al. (2006) Inhibition of dengue virus translation and RNA synthesis by a morpholino oligomer targeted to the top of the terminal 3' stem-loop structure. Virology. 344: 439-52 |