Bijal A. Parikh, Ph.D.

Affiliations: 
2004 Rutgers University, New Brunswick, New Brunswick, NJ, United States 
Area:
Molecular Biology
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"Bijal Parikh"

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Nilgun E. Tumer grad student 2004 Rutgers, New Brunswick
 (Expression of pokeweed antiviral protein in Saccharomyces cerevisiae: Characterization of the effects on ribosomes, mRNA, and toxicity.)
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Publications

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Jiang H, Joshi A, Gan T, et al. (2023) The Highly Conserved Stem-Loop II Motif Is Dispensable for SARS-CoV-2. Journal of Virology. e0063523
Jiang H, Joshi A, Gan T, et al. (2023) The highly conserved stem-loop II motif is dispensable for SARS-CoV-2. Biorxiv : the Preprint Server For Biology
Parikh BA, Tortora A, Li XP, et al. (2008) Ricin inhibits activation of the unfolded protein response by preventing splicing of the HAC1 mRNA. The Journal of Biological Chemistry. 283: 6145-53
Parikh BA, Baykal U, Di R, et al. (2005) Evidence for retro-translocation of pokeweed antiviral protein from endoplasmic reticulum into cytosol and separation of its activity on ribosomes from its activity on capped RNA. Biochemistry. 44: 2478-90
Hudak KA, Parikh BA, Di R, et al. (2004) Generation of pokeweed antiviral protein mutations in Saccharomyces cerevisiae: evidence that ribosome depurination is not sufficient for cytotoxicity. Nucleic Acids Research. 32: 4244-56
Parikh BA, Tumer NE. (2004) Antiviral activity of ribosome inactivating proteins in medicine. Mini Reviews in Medicinal Chemistry. 4: 523-43
Parikh BA, Coetzer C, Tumer NE. (2002) Pokeweed antiviral protein regulates the stability of its own mRNA by a mechanism that requires depurination but can be separated from depurination of the alpha-sarcin/ricin loop of rRNA. The Journal of Biological Chemistry. 277: 41428-37
Tumer NE, Parikh BA, Li P, et al. (1998) The pokeweed antiviral protein specifically inhibits Ty1-directed +1 ribosomal frameshifting and retrotransposition in Saccharomyces cerevisiae. Journal of Virology. 72: 1036-42
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