Joel G. Belasco

Affiliations: 
Biology New York University, New York, NY, United States 
Area:
Microbiology Biology
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"Joel Belasco"

Children

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Lucas D. Ward research assistant 2003 (Computational Biology Tree)
Alexis A. Diwa grad student 2001 NYU
Alyssa Schuck grad student 2006 NYU
Helena S. Celesnik grad student 2007 NYU
Jhilya F. Mayas grad student 2008 NYU
Sagar S. Mungekar grad student 2009 NYU
Ligang Wu post-doc 2001-2008 Center for Excellence in Molecular Cell Science, Chinese Academy of Science
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Publications

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Banerjee T, Rothenberg E, Belasco JG. (2024) RNase E searches for cleavage sites in RNA by linear diffusion: direct evidence from single-molecule FRET. Nucleic Acids Research
Richards J, Belasco JG. (2023) Graded impact of obstacle size on scanning by RNase E. Nucleic Acids Research
Richards J, Belasco JG. (2022) PABLO-QA: A sensitive assay for quantifying monophosphorylated RNA 5' ends. Star Protocols. 3: 101190
Levenson-Palmer R, Luciano DJ, Vasilyev N, et al. (2022) A distinct RNA recognition mechanism governs Np decapping by RppH. Proceedings of the National Academy of Sciences of the United States of America. 119
Hui MP, Belasco JG. (2021) Multifaceted impact of a nucleoside monophosphate kinase on 5'-end-dependent mRNA degradation in bacteria. Nucleic Acids Research
Richards J, Belasco JG. (2021) Riboswitch control of bacterial RNA stability. Molecular Microbiology
Richards J, Belasco JG. (2020) Widespread Protection of RNA Cleavage Sites by a Riboswitch Aptamer that Folds as a Compact Obstacle to Scanning by RNase E. Molecular Cell
Luciano DJ, Belasco JG. (2020) NpA alarmones function in bacteria as precursors to RNA caps. Proceedings of the National Academy of Sciences of the United States of America
Luciano DJ, Levenson-Palmer R, Belasco JG. (2019) Stresses that Raise NpA Levels Induce Protective Nucleoside Tetraphosphate Capping of Bacterial RNA. Molecular Cell
Richards J, Belasco JG. (2019) Obstacles to Scanning by RNase E Govern Bacterial mRNA Lifetimes by Hindering Access to Distal Cleavage Sites. Molecular Cell
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