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1.
EMBO J ; 18(4): 1014-24, 1999 Feb 15.
Article in English | MEDLINE | ID: mdl-10022843

ABSTRACT

The cellular protein p32 was isolated originally as a protein tightly associated with the essential splicing factor ASF/SF2 during its purification from HeLa cells. ASF/SF2 is a member of the SR family of splicing factors, which stimulate constitutive splicing and regulate alternative RNA splicing in a positive or negative fashion, depending on where on the pre-mRNA they bind. Here we present evidence that p32 interacts with ASF/SF2 and SRp30c, another member of the SR protein family. We further show that p32 inhibits ASF/SF2 function as both a splicing enhancer and splicing repressor protein by preventing stable ASF/SF2 interaction with RNA, but p32 does not block SRp30c function. ASF/SF2 is highly phosphorylated in vivo, a modification required for stable RNA binding and protein-protein interaction during spliceosome formation, and this phosphorylation, either through HeLa nuclear extracts or through specific SR protein kinases, is inhibited by p32. Our results suggest that p32 functions as an ASF/SF2 inhibitory factor, regulating ASF/SF2 RNA binding and phosphorylation. These findings place p32 into a new group of proteins that control RNA splicing by sequestering an essential RNA splicing factor into an inhibitory complex.


Subject(s)
Hyaluronan Receptors , Nuclear Proteins/genetics , Proteins/genetics , RNA Splicing/genetics , RNA-Binding Proteins/genetics , Carrier Proteins , Cytoplasm/genetics , Gene Expression Regulation/genetics , Globins/genetics , HeLa Cells , Humans , Mitochondrial Proteins , Phosphoproteins/genetics , Phosphorylation , Recombinant Proteins/genetics , Serine-Arginine Splicing Factors , Transfection/genetics
2.
Nature ; 393(6681): 185-7, 1998 May 14.
Article in English | MEDLINE | ID: mdl-9603524

ABSTRACT

SR proteins are a family of essential splicing factors required for early recognition of splice sites during spliceosome assembly. They also function as alternative RNA splicing factors when overexpressed in vivo or added in excess to extracts in vitro. SR proteins are highly phosphorylated in vivo, a modification that is required for their function in spliceosome assembly and splicing catalysis. Here we show that SR proteins purified from late adenovirus-infected cells are inactivated as splicing enhancer or splicing repressor proteins by virus-induced dephosphorylation. We further show that the virus-encoded protein E4-ORF4 activates dephosphorylation by protein phosphatase 2A of HeLa SR proteins and converts their splicing properties into that of SR proteins purified from late adenovirus-infected cells. Taken together, our results suggest that E4-ORF4 is an important factor controlling the temporal shift in adenovirus alternative RNA splicing. We conclude that alternative pre-mRNA splicing, like many other biological processes, is regulated by reversible protein phosphorylation.


Subject(s)
Adenoviridae/genetics , Adenovirus E4 Proteins/genetics , RNA Splicing , RNA-Binding Proteins/metabolism , Viral Proteins/metabolism , Escherichia coli , HeLa Cells , Humans , Open Reading Frames , Phosphorylation , Transfection , Viral Proteins/genetics
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