RNA scanning by regulatory endonucleases - Resubmission - 1

NIH RePORTER · NIH · R01 · $400,395 · view on reporter.nih.gov ↗

Abstract

PROJECT SUMMARY DESCRIPTION: The long-term goal of this research project is to understand the basic principles that govern mRNA degradation, a process that has long been known to play a key role in controlling gene expression in all organisms. In Escherichia coli and related bacterial species, the ribonuclease with the greatest influence on mRNA lifetimes is RNase E, an endonuclease with a strong preference for decay intermediates that bear a single phosphate at the 5′ terminus. Recent evidence indicates that RNase E locates its cleavage sites in monophosphorylated RNA by scanning linearly downstream from the 5′ end along RNA segments that are single-stranded. The immediate objectives of this research project are to elucidate the mechanism of RNase E scanning, the enzyme characteristics that make it possible, the features of RNA that facilitate or impede it, and the impact of this process on gene expression. Achieving these objectives will require the use of standard molecular biological, biochemical, and genetic methods as well as single-molecule FRET. The knowledge gained from these studies will provide fundamental insights into a novel aspect of gene regulation that is likely to be important for bacterial pathogenesis.

Key facts

NIH application ID
9901585
Project number
5R01GM123124-03
Recipient
NEW YORK UNIVERSITY SCHOOL OF MEDICINE
Principal Investigator
JOEL G BELASCO
Activity code
R01
Funding institute
NIH
Fiscal year
2020
Award amount
$400,395
Award type
5
Project period
2018-04-06 → 2022-03-31