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PMID: 10075878 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Transcriptional pulsing approaches for analysis of mRNA turnover in mammalian cells.

Methods (San Diego, Calif.) ·Vol. 17 ·No. 1 ·1999-01-00 ·Pages 11-20

Loflin PT, Chen CY, Xu N, Shyu AB

Abstract

Modulation of mRNA stability provides a powerful means for controlling gene expression during the cell cycle, cell differentiation, the immune response, as well as many other physiological transitions. Through the years, many different methods have been developed for measuring mRNA stability. Frequently mRNA stability is studied indirectly by analyzing the steady-state level of mRNA. Therefore by inference, changes in mRNA abundance are thought to affect only the stability of the mRNA, an assumption that is not always correct. Alternatively, direct measurements of mRNA decay are performed in a number of ways, including kinetic labeling techniques and administration of transcriptional inhibitors. Due to the nature of these techniques, they either are technically demanding or introduce a significant change in cell physiology. In addition, many critical mechanistic issues as to deadenylation kinetics, decay intermediates, and precursor-product relationships cannot be readily addressed by these methods. Here, we describe and discuss in detail two different transcriptional pulsing methods based on the c-fos serum-inducible promoter and the tetracycline-regulated promoter systems as an effort to better elucidate the mechanistic steps and regulation underlying differential and selective mRNA turnover in mammalian cells. Both systems allow unequivocal monitoring of deadenylation and decay kinetics as well as determination of precursor-product relationship. In addition, decay rate constants and half-lives are determined and used in both methods to quantitatively denote the mRNA stability. Thus, they provide a reliable way to determine subtle yet physiologically meaningful changes in mRNA stability. Application of one method or the other covers the study of mRNA turnover in most mammalian cell types under a wide range of physiological conditions.

MeSH Terms
3T3 Cells Animals Bacterial Proteins Culture Techniques Gene Expression Regulation Half-Life Mice Promoter Regions, Genetic RNA, Messenger/metabolism Tetracycline/pharmacology Trans-Activators/genetics Transcription Factors/metabolism Transcription, Genetic Transfection
Chemicals
Bacterial Proteins RNA, Messenger TetR protein, Clostridium tetani Trans-Activators Transcription Factors Tetracycline
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Loflin P T
Department of Biochemistry and Molecular Biology, University of Texas Houston Health Science Center Medical School, Houston, Texas 77030, USA.
Chen C Y
Xu N
Shyu A B
Article Info
Journal
Methods (San Diego, Calif.)
Abbr.
Methods
ISSN
1046-2023
Published
1999-01-00
Pages
11-20
Language
English
Region
United States
NLM ID
9426302
Subset
IM
Grants
NIGMS NIH HHS · GM-46454 · United States
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