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PMID: 7609076 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Inhibition of RNA splicing at the Rous sarcoma virus src 3' splice site is mediated by an interaction between a negative cis element and a chicken embryo fibroblast nuclear factor.

Journal of virology ·Vol. 69 ·No. 8 ·1995-08-00 ·Pages 5068-76

Amendt BA, Simpson SB, Stoltzfus CM

Abstract

In permissive Rous sarcoma virus-infected chicken embryo fibroblasts (CEF), approximately equimolar amounts of env and src mRNAs are present. In nonpermissive mammalian cells, the src mRNA level is elevated and env mRNA level is reduced. A cis element in the region between the env gene and the src 3' splice site, which we have termed the suppressor of src splicing (SSS), acts specifically in CEF but not in human cells to reduce src mRNA levels. The splicing inhibition in CEF is not caused by a base-paired structure which is predicted to form between the SSS and the src 3' splice site. To further investigate the mechanism of the inhibition, we have used human HeLa cell nuclear extracts to compare in vitro the rates of splicing of RNA substrates containing the Rous sarcoma virus major 5' splice site and either the env or src 3' splice sites. We show that the src 3' splice site is used approximately fivefold more efficiently than the env 3' splice site. The efficiency of in vitro splicing at the src 3' splice site is specifically reduced by addition of CEF nuclear extract. The inhibition is dependent on the presence of the SSS element and can be abrogated by addition of competitor RNA. We propose that the SSS region represents a binding site for a negative-acting CEF splicing factor(s).

Related Genes
MeSH Terms
Animals Avian Sarcoma Viruses/genetics Base Composition Base Sequence Chick Embryo Genes, env Genes, src HeLa Cells Humans Molecular Sequence Data Nuclear Proteins/metabolism Point Mutation RNA Splicing Sequence Deletion
Chemicals
Nuclear Proteins
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Amendt B A
Department of Microbiology, University of Iowa, Iowa City 52242, USA.
Simpson S B
Stoltzfus C M
References (37)
37 references, click to expand
  1. Biochemical transfer of single-copy eucaryotic genes using total cellular DNA as donor.
    Cell. 1978 Jul;14(3):725-31 PMID: 210957
  2. A suboptimal src 3' splice site is necessary for efficient replication of Rous sarcoma virus.
    Virology. 1995 Feb 1;206(2):1099-107 PMID: 7856084
  3. Structure of viral DNA and RNA in mammalian cells infected with avian sarcoma virus.
    J Mol Biol. 1980 Nov 15;143(4):363-93 PMID: 6262515
  4. Nucleotide sequence of Rous sarcoma virus.
    Cell. 1983 Mar;32(3):853-69 PMID: 6299578
  5. Excision of an intact intron as a novel lariat structure during pre-mRNA splicing in vitro.
    Cell. 1984 Aug;38(1):317-31 PMID: 6088074
  6. cis-acting regulatory elements within gag genes of avian retroviruses.
    Mol Cell Biol. 1987 Jan;7(1):388-97 PMID: 3031470
  7. Regulation of Rous sarcoma virus RNA splicing and stability.
    Mol Cell Biol. 1988 Nov;8(11):4858-67 PMID: 2850470
  8. Synthesis and processing of avian sarcoma retrovirus RNA.
    Adv Virus Res. 1988;35:1-38 PMID: 2852891
  9. Multiple regions in the Rous sarcoma virus src gene intron act in cis to affect the accumulation of unspliced RNA.
    J Virol. 1989 Apr;63(4):1669-76 PMID: 2538650
  10. Identification, purification, and biochemical characterization of U2 small nuclear ribonucleoprotein auxiliary factor.
    Proc Natl Acad Sci U S A. 1989 Dec;86(23):9243-7 PMID: 2531895
  11. Control of retroviral RNA splicing through maintenance of suboptimal processing signals.
    Mol Cell Biol. 1990 Feb;10(2):696-704 PMID: 2153921
  12. A protein factor, ASF, controls cell-specific alternative splicing of SV40 early pre-mRNA in vitro.
    Cell. 1990 Jul 13;62(1):25-34 PMID: 2163768
  13. The essential pre-mRNA splicing factor SF2 influences 5' splice site selection by activating proximal sites.
    Cell. 1990 Jul 13;62(1):35-42 PMID: 2364434
  14. Small-scale preparation of extracts from radiolabeled cells efficient in pre-mRNA splicing.
    Methods Enzymol. 1990;181:20-30 PMID: 2199756
  15. Comparison of Rous sarcoma virus RNA processing in chicken and mouse fibroblasts: evidence for double-spliced RNA in nonpermissive mouse cells.
    J Virol. 1990 Sep;64(9):4313-20 PMID: 2166819
  16. The role of branchpoint and 3'-exon sequences in the control of balanced splicing of avian retrovirus RNA.
    Genes Dev. 1991 Feb;5(2):211-20 PMID: 1847346
  17. Mutations in the regions of the Rous sarcoma virus 3' splice sites: implications for regulation of alternative splicing.
    J Virol. 1991 May;65(5):2640-6 PMID: 1850037
  18. Analysis of spliced and unspliced Rous sarcoma virus RNAs early and late after infection of chicken embryo fibroblasts: effect of cell culture conditions.
    Virology. 1991 May;182(1):135-44 PMID: 1850899
  19. Characterization of Rous sarcoma virus intronic sequences that negatively regulate splicing.
    Virology. 1991 Nov;185(1):99-108 PMID: 1656608
  20. Intronic sequences and 3' splice sites control Rous sarcoma virus RNA splicing.
    J Virol. 1992 Jan;66(1):6-11 PMID: 1309264
  21. Biochemical mechanisms of constitutive and regulated pre-mRNA splicing.
    Annu Rev Cell Biol. 1991;7:559-99 PMID: 1839712
  22. Two distant upstream regions containing cis-acting signals regulating splicing facilitate 3'-end processing of avian sarcoma virus RNA.
    J Virol. 1992 Jul;66(7):4242-51 PMID: 1318403
  23. Distinct functions of SR proteins in alternative pre-mRNA splicing.
    Science. 1993 Apr 9;260(5105):219-22 PMID: 8385799
  24. A mutational analysis of the polypyrimidine tract of introns. Effects of sequence differences in pyrimidine tracts on splicing.
    J Biol Chem. 1993 May 25;268(15):11222-9 PMID: 8496178
  25. In vitro analysis of bovine growth hormone pre-mRNA alternative splicing. Involvement of exon sequences and trans-acting factor(s).
    J Biol Chem. 1993 Jul 25;268(21):15659-66 PMID: 8340391
  26. U1 snRNP targets an essential splicing factor, U2AF65, to the 3' splice site by a network of interactions spanning the exon.
    Genes Dev. 1992 Dec;6(12B):2554-68 PMID: 1285125
  27. A splicing enhancer in the human fibronectin alternate ED1 exon interacts with SR proteins and stimulates U2 snRNP binding.
    Genes Dev. 1993 Dec;7(12A):2405-17 PMID: 8253386
  28. General splicing factor SF2/ASF promotes alternative splicing by binding to an exonic splicing enhancer.
    Genes Dev. 1993 Dec;7(12B):2598-608 PMID: 8276242
  29. Avian sarcoma virus RNA synthesis, RNA splicing and virus production in human foreskin fibroblasts: effect of co-infection with human cytomegalovirus.
    J Gen Virol. 1993 Dec;74 ( Pt 12):2629-36 PMID: 8277268
  30. Polypurine sequences within a downstream exon function as a splicing enhancer.
    Mol Cell Biol. 1994 Feb;14(2):1347-54 PMID: 8289812
  31. Two different sequence elements within exon 4 are necessary for calcitonin-specific splicing of the human calcitonin/calcitonin gene-related peptide I pre-mRNA.
    Mol Cell Biol. 1994 Feb;14(2):951-60 PMID: 8289835
  32. The tat/rev intron of human immunodeficiency virus type 1 is inefficiently spliced because of suboptimal signals in the 3' splice site.
    J Virol. 1994 May;68(5):3071-9 PMID: 7512159
  33. A novel bipartite splicing enhancer modulates the differential processing of the human fibronectin EDA exon.
    Nucleic Acids Res. 1994 Mar 25;22(6):1018-22 PMID: 8152907
  34. Presence of negative and positive cis-acting RNA splicing elements within and flanking the first tat coding exon of human immunodeficiency virus type 1.
    Mol Cell Biol. 1994 Jun;14(6):3960-70 PMID: 8196635
  35. Splicing of the alternative exons of the chicken, rat, and Xenopus beta tropomyosin transcripts requires class-specific elements.
    J Biol Chem. 1994 Aug 5;269(31):19675-8 PMID: 8051042
  36. SR proteins promote the first specific recognition of Pre-mRNA and are present together with the U1 small nuclear ribonucleoprotein particle in a general splicing enhancer complex.
    Mol Cell Biol. 1994 Nov;14(11):7670-82 PMID: 7935481
  37. Optimal computer folding of large RNA sequences using thermodynamics and auxiliary information.
    Nucleic Acids Res. 1981 Jan 10;9(1):133-48 PMID: 6163133
Article Info
Journal
Journal of virology
Abbr.
J Virol
ISSN
0022-538X
Published
1995-08-00
Pages
5068-76
Language
English
Region
United States
NLM ID
0113724
PMCID
PMC189324
Subset
IM
Grants
NCI NIH HHS · CA28051 · United States
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