In this application we propose to continue our study of molecular mechanisms in RNA splicing in intact cells using the novel MuSVts110 retrovirus as a model system. As outlined in this application, our previous work has led to an understanding of the role of intron sequences in specifying the commitment of this pre-mRNA to splice and the unique thermosensitivity of the splice event has allowed a promising beginning to the study of molecular mechanisms and interactions occurring during splicing in intact cells. We plan to extend these studies as follows: To facilitate the study of pre-mRNA/spliceosome component interactions in vivo, we plan to construct an MuSVts110 DNA whose transcription can be controlled through the replacement of the viral enhancer with an inducible enhancer, thus allowing us to follow preformed pre-mRNA through the splicing pathway without interference from nascent transcripts, or to study the splicing of nascent viral transcripts only. Interactions between viral transcripts and spliceosome components under splicing-permissive and nonpermissive conditions will be monitored through the use of antibodies specific for spliceosome components aided by techniques that allow crosslinking of pre-mRNAs and nucleic acid moieties of spliceosome components. We plan to continue studies on RNA structures that specify thermosensitive splicing. These studies will focus on the possibility that branchpoint positioning relative to 3' splice sites may help to regulate MuSVts110 splicing and the inference that specific exon structure may also be important. In this connection, we will also determine the nature of the changes made in the viral DNA of a series of 6m2 cell """"""""revertants"""""""" exhibiting stable relaxation in the growth temperature dependence of viral RNA splicing through amplification and sequencing using the PCR technique. Chimeric viruses will be constructed to distinguish splicing-critical versus neutral mutations.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA034734-08
Application #
3172521
Study Section
Experimental Virology Study Section (EVR)
Project Start
1983-06-01
Project End
1994-11-30
Budget Start
1990-12-01
Budget End
1991-11-30
Support Year
8
Fiscal Year
1991
Total Cost
Indirect Cost
Name
University of Texas MD Anderson Cancer Center
Department
Type
Other Domestic Higher Education
DUNS #
001910777
City
Houston
State
TX
Country
United States
Zip Code
77030
Ainsworth, J R; Rossi, L M; Murphy Jr, E C (1996) The Moloney murine sarcoma virus ts110 5' splice site signal contributes to the regulation of splicing efficiency and thermosensitivity. J Virol 70:6474-8
Touchman, J W; D'Souza, I; Heckman, C A et al. (1995) Branchpoint and polypyrimidine tract mutations mediating the loss and partial recovery of the Moloney murine sarcoma virus MuSVts110 thermosensitive splicing phenotype. J Virol 69:7724-33
Sterner, D A; Murphy Jr, E C (1992) Regulation of the efficiency and thermodependence of murine sarcoma virus MuSVts110 RNA splicing by sequences in both exons. Virology 191:638-48
Huai, L; Chiocca, S M; Gilbreth, M A et al. (1992) Moloney murine sarcoma virus MuSVts110 DNA: cloning, nucleotide sequence, and gene expression. J Virol 66:5329-37
Owen-Schaub, L B; de Mars, M; Murphy Jr, E C et al. (1991) IL-2 dose regulates TNF-alpha mRNA transcription and protein secretion in human peripheral blood lymphocytes. Cell Immunol 132:193-200
Chiocca, S M; Sterner, D A; Biggart, N W et al. (1991) Nickel mutagenesis: alteration of the MuSVts110 thermosensitive splicing phenotype by a nickel-induced duplication of the 3' splice site. Mol Carcinog 4:61-71
de Mars, M; Cizdziel, P E; Murphy Jr, E C (1990) Activation of cryptic splice sites in murine sarcoma virus-124 mutants. J Virol 64:5260-9
De Mars, M; Sterner, D A; Chiocca, S M et al. (1990) Regulation of RNA splicing in gag-deficient mutants of Moloney murine sarcoma virus MuSVts110. J Virol 64:1421-8
Owen-Schaub, L B; De Mars, M; Murphy Jr, E C et al. (1990) TNF-beta (lymphotoxin) strongly upregulates TNF-alpha gene expression in human peripheral blood lymphocytes. Lymphokine Res 9:491-7
Biggart, N W; Murphy Jr, E C (1988) Analysis of metal-induced mutations altering the expression or structure of a retroviral gene in a mammalian cell line. Mutat Res 198:115-29

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