Determinants of mRNA stability in Dictyostelium discoideum amoebae: differences in poly(A) tail length, ribosome loading, and mRNA size cannot account for the heterogeneity of mRNA decay rates.
Open Access
- 1 May 1988
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 8 (5) , 1957-1969
- https://doi.org/10.1128/mcb.8.5.1957
Abstract
As an approach to understanding the structures and mechanisms which determine mRNA decay rates, we have cloned and begun to characterize cDNAs which encode mRNAs representative of the stability extremes in the poly(A)+ RNA population of Dictyostelium discoideum amoebae. The cDNA clones were identified in a screening procedure which was based on the occurrence of poly(A) shortening during mRNA aging. mRNA half-lives were determined by hybridization of poly(A)+ RNA, isolated from cells labeled in a 32PO4 pulse-chase, to dots of excess cloned DNA. Individual mRNAs decayed with unique first-order decay rates ranging from 0.9 to 9.6 h, indicating that the complex decay kinetics of total poly(A)+ RNA in D. discoideum amoebae reflect the sum of the decay rates of individual mRNAs. Using specific probes derived from these cDNA clones, we have compared the sizes, extents of ribosome loading, and poly(A) tail lengths of stable, moderately stable, and unstable mRNAs. We found (i) no correlation between mRNA size and decay rate; (ii) no significant difference in the number of ribosomes per unit length of stable versus unstable mRNAs, and (iii) a general inverse relationship between mRNA decay rates and poly(A) tail lengths. Collectively, these observations indicate that mRNA decay in D. discoideum amoebae cannot be explained in terms of random nucleolytic events. The possibility that specific 3'-structural determinants can confer mRNA instability is suggested by a comparison of the labeling and turnover kinetics of different actin mRNAs. A correlation was observed between the steady-state percentage of a given mRNA found in polysomes and its degree of instability; i.e., unstable mRNAs were more efficiently recruited into polysomes than stable mRNAs. Since stable mRNAs are, on average, "older" than unstable mRNAs, this correlation may reflect a translational role for mRNA modifications that change in a time-dependent manner. Our previous studies have demonstrated both a time-dependent shortening and a possible translational role for the 3' poly(A) tracts of mRNA. We suggest, therefore, that the observed differences in the translational efficiency of stable and unstable mRNAs may, in part, be attributable to differences in steady-state poly(A) tail lengths.This publication has 87 references indexed in Scilit:
- Ribosomal proteins are encoded by single copy genes in Dictyostelium discoideumGene, 1986
- Biogenesis and cell cycle relationship of poly(A)− actin mRNA in mouse ascites cellsExperimental Cell Research, 1986
- Organization of the Dictyostelium discoideum actin multigene familyJournal of Molecular Biology, 1985
- Regulation of messenger RNA stability in mouse erythroleukemia cellsJournal of Molecular Biology, 1985
- Mutationally altered 3′ ends of yeast CYC1 mRNA affect transcript stability and translational efficiencyJournal of Molecular Biology, 1984
- Human beta and delta globin messenger RNAs turn over at different ratesJournal of Molecular Biology, 1983
- Partial purification of a developmentally regulated messenger RNA from Dictyostelium discoideum by thermal elution from poly(U)-SepharoseJournal of Molecular Biology, 1981
- Interference of nonsense mutations with eukaryotic messenger RNA stability.Proceedings of the National Academy of Sciences, 1979
- Fractionation and functional analysis of newly synthesized and decaying messenger RNAs from vegetative cells of Dictyostelium discoideumJournal of Molecular Biology, 1979
- Messenger RNA turnover in mouse L cellsJournal of Molecular Biology, 1973