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PMID: 15068396 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The second RNA-binding domain of the human splicing factor ASF/SF2 is the critical domain controlling adenovirus E1A alternative 5'-splice site selection.

The Biochemical journal ·Vol. 381 ·No. Pt 2 ·2004-07-15 ·Pages 343-50

Dauksaite V, Akusjärvi G

Abstract

The human splicing factor ASF/SF2 (alternative splicing factor/splicing factor 2) is modular in structure with two RNA-binding domains (RBD1 and RBD2) and a C-terminal domain rich in arginine-serine dipeptide repeats. ASF/SF2 is an essential splicing factor that also functions as an important regulator of alternative splicing. In adenovirus E1A (early region 1A) alternative pre-mRNA splicing, ASF/SF2 functions as a strong inducer of proximal 5'-splice-site selection, both in vitro and in vivo. In the present study, we tested the functional role of individual domains of ASF/SF2 in alternative splicing in vitro. We show that ASF/SF2-RBD2 is the critical domain controlling E1A alternative splicing. In fact, RBD2 alone is sufficient to mimic the activity of the full-length ASF/SF2 protein as an inducer of proximal 5'-splice-site selection in vitro. The RBD2 domain induces a switch to E1A-proximal 5'-splice-site usage by repressing distal 12 S splicing and simultaneously stimulates proximal 13 S splicing. In contrast, the ASF/SF2-RBD1 domain has a more general splicing enhancer phenotype and appears to stimulate preferentially cap-proximal 5'-splice-site selection. Furthermore, the SWQDLKD motif, which is conserved in all SR proteins (serine/arginine-rich proteins) containing two RBDs, and the ribonucleoprotein-1-type RNA recognition motif were both found to be necessary for the alternative splice-site-switching activity of ASF/SF2. The RNP-1 motif was necessary for efficient RNA binding, whereas the SWQDLKD motif most probably contributes by functioning as a surface-mediating critical protein-protein contact during spliceosome assembly.

MeSH Terms
Adenoviridae/genetics Adenovirus E1A Proteins/metabolism Alternative Splicing/genetics,physiology Amino Acid Motifs/genetics,physiology Amino Acid Sequence/physiology Capsid Proteins/physiology Conserved Sequence/genetics,physiology Gene Expression Regulation, Viral/physiology HeLa Cells/chemistry,metabolism,virology Humans Molecular Sequence Data Mutation/genetics,physiology Nuclear Proteins/chemistry,genetics,physiology Peptides/genetics,physiology Protein Structure, Tertiary/genetics,physiology RNA Precursors/metabolism RNA Splice Sites/physiology RNA Splicing/physiology RNA, Viral/metabolism RNA-Binding Proteins/chemistry,genetics,physiology Repressor Proteins/physiology Serine-Arginine Splicing Factors
Chemicals
Adenovirus E1A Proteins Capsid Proteins Nuclear Proteins Peptides RNA Precursors RNA Splice Sites RNA, Viral RNA-Binding Proteins Repressor Proteins Serine-Arginine Splicing Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Dauksaite Vita
Department of Medical Biochemistry and Microbiology, Uppsala University, BMC, Box 582, 751 23 Uppsala, Sweden.
Akusjärvi Göran
References (38)
38 references, click to expand
  1. Alternative splicing: multiple control mechanisms and involvement in human disease.
    Trends Genet. 2002 Apr;18(4):186-93 PMID: 11932019
  2. Substrate specificities of SR proteins in constitutive splicing are determined by their RNA recognition motifs and composite pre-mRNA exonic elements.
    Mol Cell Biol. 1999 Mar;19(3):1853-63 PMID: 10022872
  3. Remodelling of the host cell RNA splicing machinery during an adenovirus infection.
    Curr Top Microbiol Immunol. 2003;272:253-86 PMID: 12747553
  4. Functional coexpression of serine protein kinase SRPK1 and its substrate ASF/SF2 in Escherichia coli.
    Nucleic Acids Res. 2000 Mar 1;28(5):E14 PMID: 10666475
  5. Sorting out the complexity of SR protein functions.
    RNA. 2000 Sep;6(9):1197-211 PMID: 10999598
  6. Selection of alternative 5' splice sites: role of U1 snRNP and models for the antagonistic effects of SF2/ASF and hnRNP A1.
    Mol Cell Biol. 2000 Nov;20(22):8303-18 PMID: 11046128
  7. Role of SR protein modular domains in alternative splicing specificity in vivo.
    Nucleic Acids Res. 2000 Dec 15;28(24):4822-31 PMID: 11121472
  8. Pre-mRNA splicing in the new millennium.
    Curr Opin Cell Biol. 2001 Jun;13(3):302-9 PMID: 11343900
  9. Structure of the adenovirus 2 early mRNAs.
    Cell. 1978 Jul;14(3):695-711 PMID: 688389
  10. Alternative splicing of E1A transcripts of adenovirus requires appropriate ionic conditions in vitro.
    Cell. 1987 Jul 3;50(1):31-9 PMID: 2954651
  11. Modulation of alternative splicing of adenoviral E1A transcripts: factors involved in the early-to-late transition.
    Genes Dev. 1991 Oct;5(10):1847-58 PMID: 1833268
  12. Regulation of alternative pre-mRNA splicing by hnRNP A1 and splicing factor SF2.
    Cell. 1992 Jan 24;68(2):365-75 PMID: 1531115
  13. Multiple activities of the human splicing factor ASF.
    Gene Expr. 1992;2(1):19-29 PMID: 1535526
  14. General splicing factors SF2 and SC35 have equivalent activities in vitro, and both affect alternative 5' and 3' splice site selection.
    Proc Natl Acad Sci U S A. 1992 Dec 1;89(23):11224-8 PMID: 1454802
  15. Distinct functions of SR proteins in alternative pre-mRNA splicing.
    Science. 1993 Apr 9;260(5105):219-22 PMID: 8385799
  16. Functional analysis of pre-mRNA splicing factor SF2/ASF structural domains.
    EMBO J. 1993 Dec;12(12):4715-26 PMID: 8223480
  17. Functional domains of the human splicing factor ASF/SF2.
    EMBO J. 1993 Dec;12(12):4727-37 PMID: 8223481
  18. Specific interactions between proteins implicated in splice site selection and regulated alternative splicing.
    Cell. 1993 Dec 17;75(6):1061-70 PMID: 8261509
  19. Analysis of the RNA-recognition motif and RS and RGG domains: conservation in metazoan pre-mRNA splicing factors.
    Nucleic Acids Res. 1993 Dec 25;21(25):5803-16 PMID: 8290338
  20. Protein-protein interactions and 5'-splice-site recognition in mammalian mRNA precursors.
    Nature. 1994 Mar 10;368(6467):119-24 PMID: 8139654
  21. The human splicing factor ASF/SF2 can specifically recognize pre-mRNA 5' splice sites.
    Proc Natl Acad Sci U S A. 1994 Apr 12;91(8):3363-7 PMID: 7512732
  22. Characterization and cloning of the human splicing factor 9G8: a novel 35 kDa factor of the serine/arginine protein family.
    EMBO J. 1994 Jun 1;13(11):2639-49 PMID: 8013463
  23. The A1 and A1B proteins of heterogeneous nuclear ribonucleoparticles modulate 5' splice site selection in vivo.
    Proc Natl Acad Sci U S A. 1994 Jul 19;91(15):6924-8 PMID: 8041722
  24. Regulation of alternative splicing in vivo by overexpression of antagonistic splicing factors.
    Science. 1994 Sep 16;265(5179):1706-9 PMID: 8085156
  25. Crystal structure of an RNA bacteriophage coat protein-operator complex.
    Nature. 1994 Oct 13;371(6498):623-6 PMID: 7523953
  26. The human splicing factors ASF/SF2 and SC35 possess distinct, functionally significant RNA binding specificities.
    EMBO J. 1995 Jul 17;14(14):3540-51 PMID: 7543047
  27. Identification and characterization of three members of the human SR family of pre-mRNA splicing factors.
    EMBO J. 1995 Sep 1;14(17):4336-49 PMID: 7556075
  28. Overexpression of the SR proteins ASF/SF2 and SC35 influences alternative splicing in vivo in diverse ways.
    RNA. 1995 May;1(3):335-46 PMID: 7489505
  29. SR proteins escort the U4/U6.U5 tri-snRNP to the spliceosome.
    RNA. 1995 Sep;1(7):692-706 PMID: 7585254
  30. Titration of serine/arginine (SR) splicing factors during adenoviral infection modulates E1A pre-mRNA alternative splicing.
    RNA. 1995 Oct;1(8):794-806 PMID: 7493325
  31. Adenovirus E4 open reading frame 4 protein autoregulates E4 transcription by inhibiting E1A transactivation of the E4 promoter.
    J Virol. 1996 Jun;70(6):3844-51 PMID: 8648720
  32. Inhibition by SR proteins of splicing of a regulated adenovirus pre-mRNA.
    Nature. 1996 Jun 6;381(6582):535-8 PMID: 8632829
  33. The splicing factor U2AF35 mediates critical protein-protein interactions in constitutive and enhancer-dependent splicing.
    Genes Dev. 1996 Jun 1;10(11):1356-68 PMID: 8647433
  34. Functional properties of p54, a novel SR protein active in constitutive and alternative splicing.
    Mol Cell Biol. 1996 Oct;16(10):5400-8 PMID: 8816452
  35. Phosphorylation of the ASF/SF2 RS domain affects both protein-protein and protein-RNA interactions and is necessary for splicing.
    Genes Dev. 1997 Feb 1;11(3):334-44 PMID: 9030686
  36. RNA splicing specificity determined by the coordinated action of RNA recognition motifs in SR proteins.
    Proc Natl Acad Sci U S A. 1997 Apr 15;94(8):3596-601 PMID: 9108022
  37. Role of the modular domains of SR proteins in subnuclear localization and alternative splicing specificity.
    J Cell Biol. 1997 Jul 28;138(2):225-38 PMID: 9230067
  38. Human splicing factor ASF/SF2 encodes for a repressor domain required for its inhibitory activity on pre-mRNA splicing.
    J Biol Chem. 2002 Apr 12;277(15):12579-86 PMID: 11801589
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
1470-8728
Published
2004-07-15
Pages
343-50
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1133838
Subset
IM
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