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Chapter 25 RNA Decay by Messenger RNA Interferases

2008
Two abundant toxin-antitoxin (TA) gene families, relBE and mazEF, encode mRNA cleaving enzymes whose ectopic overexpression abruptly inhibits translation and thereby induces a bacteriostatic condition. Here we describe and discuss protocols for the overproduction, purification, and analysis of mRNA cleaving enzymes such as RelE of Escherichia coli and ...
Christensen-Dalsgaard M   +3 more
openaire   +5 more sources

Intranuclear Trafficking of Messenger RNA

Critical Reviews™ in Eukaryotic Gene Expression, 1999
Within the nucleus, protein-encoding genes are transcribed into messenger RNA by RNA polymerase II. Messenger RNAs migrate to the cytoplasm, but before reaching their final destination the primary transcripts must undergo a series of modifications that include 5'-capping, splicing, and 3'-cleavage/polyadenylation.
Noélia Custódio   +2 more
openaire   +2 more sources

The structure of pre-messenger RNA and messenger RNA from erythroid cells

1977
Pre-mRNA fractions (greater than 45 S) were characterized by electron microscopy. High salt concentrations (0.2 M ammonium acetate, pH 8) yield linear molecules of different length (0.5--17 micrometer). In 10% of the molecules a compact-nonlinear contour (cn-contour) is detectable at one end.
A M, Ladhoff   +3 more
openaire   +2 more sources

A CRISPR cut for messenger RNAs

Lab Animal, 2020
To achieve knockdown rather than knockout of particular genes, a new paper demonstrates a CRISPR/Cas13 method that can efficiently edit mRNA in zebrafish, medaka, killifish, and mouse embryos.
Rebecca Leech, Karuna Sampath
openaire   +3 more sources

Radiation sensitivity of messenger RNA

Molecular and General Genetics MGG, 1979
Messenger RNA function is inactivated by irradiation with ultraviolet light. A unit length mRNA (in bases) is 2-3 times more sensitive than a unit length of DNA (in base pairs) with respect to the inactivation of template function. These data stem from four experimental systems all of which do not repair DNA: the translation of E.
Ponta, H.   +4 more
openaire   +3 more sources

The Decay of Bacterial Messenger RNA

1996
Publisher Summary The many demonstrations that the Escherichia coli (E. coli ) rne gene product (RNase E) is involved in messenger RNA (mRNA) decay have given real impetus to the study of this unusual protein's properties and role. The recent attention given to the polyadenylylation of bacterial mRNAs and the discovery that polyadenylylation ...
George J. Murakawa, Donald P. Nierlich
openaire   +3 more sources

Plant Messenger RNA

2018
The correct interpretation — that this RNA played the role of a messenger between the inserted phage DNA and the appearance of viral proteins in the bacterial cell — was provided by Jacob and Monod. Nevertheless, understanding regulation of important eukaryotic proteins requires that messenger RNAs (mRNAs) be isolated from higher organisms.
openaire   +2 more sources

Messenger RNA Modifications in Plants

Trends in Plant Science, 2019
Over 160 distinct RNA modifications are known and collectively termed the epitranscriptome. Some of these modifications have been discovered in mRNA, uncovering a new layer of gene regulation. Transcriptome-wide mapping of epitranscriptomic codes and the discovery of their writers, erasers, and readers that dynamically install, remove, and interpret ...
Chui E. Wong   +3 more
openaire   +3 more sources

Messenger RNA Vaccines

2011
Twenty years after the seminal observation of Wolff et al. that injection of naked RNA and DNA vectors results in protein expression in vivo, messenger RNA (mRNA) vaccines have found entry into clinical development. Through improved vector design, formulation, and delivery, mRNA, initially perceived as unstable and difficult to manipulate, has been ...
Jochen Probst   +5 more
openaire   +2 more sources

Messenger RNA

Annual Review of Biochemistry, 1969
E P, Geiduschek, R, Haselkorn
openaire   +2 more sources

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