In vitro cleavage of the simian virus 40 early polyadenylation site adjacent to a required downstream TG sequence.
Open Access
- 1 December 1986
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 6 (12) , 4734-4741
- https://doi.org/10.1128/mcb.6.12.4734
Abstract
Exogenous RNA containing the simian virus 40 early polyadenylation site was efficiently and accurately polyadenylated in in vitro nuclear extracts. Correct cleavage required ATP. In the absence of ATP, nonpoly(A)+ products accumulated which were 18 to 20 nucleotides longer than the RNA generated by correct cleavage; the longer RNA terminated adjacent to the downstream TG element required for polyadenylation. In the presence of ATP analogs, alternate cleavage was not observed; instead, correct cleavage without poly(A) addition occurred. ATP-independent cleavage of simian virus 40 early RNA had many of the same properties as correct cleavage including requirements for an intact AAUAAA element, a proximal 3' terminus, and extract small nuclear ribonucleoproteins. This similarity in reaction parameters suggested that ATP-independent cleavage is an activity of the normal polyadenylation machinery. The ATP-independent cleavage product, however, did not behave as an intermediate in polyadenylation. The alternate RNA did not preferentially chase into correctly cleaved material upon readdition of ATP; instead, poly(A) was added to the 3' terminus of the cleaved RNA during a chase. Purified ATP-independent cleavage RNA, however, was a substrate for correct cleavage when reintroduced into the nuclear extract. Thus, alternate cleavage of polyadenylation sites adjacent to a required downstream sequence element is directed by the polyadenylation machinery in the absence of ATP.This publication has 35 references indexed in Scilit:
- U1, U2, and U4/U6 small nuclear ribonucleoproteins are required for in vitro splicing but not polyadenylationCell, 1986
- A small nuclear ribonucleoprotein associates with the AAUAAA polyadenylation signal in vitroCell, 1986
- Accurate cleavage and polyadenylation of exogenous RNA substrateCell, 1985
- A sequence downstream of AAUAAA is required for rabbit β-globin mRNA 3′-end formationNature, 1984
- Dihydrofolate reductase gene expression in cultured mouse cells is regulated by transcript stabilization in the nucleus.The Journal of cell biology, 1984
- Are U4 small nuclear ribonucleoproteins involved in polyadenylation?Nature, 1984
- Transcription and RNA processing by the DNA tumour virusesNature, 1980
- Addition of poly(A) to nuclear RNA occurs soon after RNA synthesis.The Journal of cell biology, 1980
- Steps in the processing of Ad2 mRNA: Poly(A)+ Nuclear sequences are conserved and poly(A) addition precedes splicingCell, 1978
- 3′ Non-coding region sequences in eukaryotic messenger RNANature, 1976