Abstract
Processing at the L3 polyadenylation site of human adenovirus-2 involves endonucleolytic cleavage generating the 3' terminal sequence -UAOH to which adenosine residues are added. This dinucleotide is 19 nucleotides downstream of the AAUAAA polyadenylation signal. The ATP analog cordycepin triphosphate (3' dATP) inhibits poly(A) synthesis, but precursor RNA is processed to give a product terminating in -UAAH. Addition of only one adenosine analog demonstrates that the initial poly(A) tract is synthesized by polymerization of single residues rather than by ligation of preformed poly(A). Cleavage is not coupled to polyadenylation since incubation with an ATP analog containing a non-hydrolyzable alpha--beta bond generates a product with a 3' terminus coincident with the -UAOH) addition site. Addition of this accurately processed RNA to a nuclear extract results in efficient polyadenylation, suggesting that downstream sequences are not required for synthesis of the poly(A) tract. Finally, processing at the L3 poly(A) site may involve both endonucleolytic and exonucleolytic activities.
MeSH Terms
Adenoviruses, Human/genetics
Base Sequence
Cloning, Molecular
DNA/metabolism
DNA Restriction Enzymes
HeLa Cells/metabolism
Humans
Nuclear Envelope/metabolism
Nucleic Acid Hybridization
Plasmids
Poly A/genetics,metabolism
RNA, Viral/genetics
Ribonuclease T1
Chemicals
RNA, Viral
Poly A
DNA
DNA Restriction Enzymes
Ribonuclease T1
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Moore C L
Skolnik-David H
Sharp P A
References (20)
20 references, click to expand
-
3' non-coding region sequences in eukaryotic messenger RNA.
Nature. 1976 Sep 16;263(5574):211-4
PMID: 822353
-
Characteristics of the polyadenylic acid segment associated with messenger ribonucleic acid in mouse sarcoma 180 ascites cells.
Biochemistry. 1972 Feb 29;11(5):792-8
PMID: 4536742
-
A regulatory sequence near the 3' end of sea urchin histone genes.
Nucleic Acids Res. 1979 Jul 11;6(9):2997-3008
PMID: 493132
-
The sequence 5'-AAUAAA-3'forms parts of the recognition site for polyadenylation of late SV40 mRNAs.
Cell. 1981 Apr;24(1):251-60
PMID: 6113054
-
Inhibition of RNA cleavage but not polyadenylation by a point mutation in mRNA 3' consensus sequence AAUAAA.
Nature. 1983 Oct 13-19;305(5935):600-5
PMID: 6194440
-
Alpha-thalassaemia caused by a polyadenylation signal mutation.
Nature. 1983 Nov 24-30;306(5941):398-400
PMID: 6646217
-
Site-specific polyadenylation in a cell-free reaction.
Cell. 1984 Mar;36(3):581-91
PMID: 6230155
-
3' editing of mRNAs: sequence requirements and involvement of a 60-nucleotide RNA in maturation of histone mRNA precursors.
Proc Natl Acad Sci U S A. 1984 Feb;81(4):1057-61
PMID: 6583695
-
Are U4 small nuclear ribonucleoproteins involved in polyadenylation?
Nature. 1984 May 10-16;309(5964):179-82
PMID: 6325940
-
Requirement for the 3' flanking region of the bovine growth hormone gene for accurate polyadenylylation.
Proc Natl Acad Sci U S A. 1984 Jul;81(13):3944-8
PMID: 6146135
-
Role of the conserved AAUAAA sequence: four AAUAAA point mutants prevent messenger RNA 3' end formation.
Science. 1984 Nov 30;226(4678):1045-51
PMID: 6208611
-
The cDNA sequences of the sea urchin U7 small nuclear RNA suggest specific contacts between histone mRNA precursor and U7 RNA during RNA processing.
EMBO J. 1984 Dec 1;3(12):2801-7
PMID: 6084590
-
RNA sequence containing hexanucleotide AAUAAA directs efficient mRNA polyadenylation in vitro.
Mol Cell Biol. 1985 Feb;5(2):373-9
PMID: 2579321
-
Transcription termination and 3' processing: the end is in site!
Cell. 1985 Jun;41(2):349-59
PMID: 2580642
-
The consensus sequence YGTGTTYY located downstream from the AATAAA signal is required for efficient formation of mRNA 3' termini.
Nucleic Acids Res. 1985 Feb 25;13(4):1347-68
PMID: 2987822
-
Accurate cleavage and polyadenylation of exogenous RNA substrate.
Cell. 1985 Jul;41(3):845-55
PMID: 2408761
-
Splicing of messenger RNA precursors.
Annu Rev Biochem. 1986;55:1119-50
PMID: 2943217
-
Definition of essential sequences and functional equivalence of elements downstream of the adenovirus E2A and the early simian virus 40 polyadenylation sites.
Mol Cell Biol. 1985 Nov;5(11):2975-83
PMID: 3018490
-
Polyadenylic acid sequences: role in conversion of nuclear RNA into messenger RNA.
Science. 1971 Oct 29;174(4008):507-10
PMID: 5110429
-
Use of in vitro 32P labeling in the sequence analysis of nonradioactive tRNAs.
Methods Enzymol. 1979;59:58-109
PMID: 220499