The goal of the proposed experiments is to determine the mechanism of tissue-specific regulation of tRNA transcription. We will focus on two tRNA/A1a genes of silkworms, one of which (C) is transcribed constitutively, and the other (SG) only in silkglands. We will use both in vitro and in vivo assays of promoter function, and will analyze in detail protein-DNA complexes that include the upstream segment of C and SG promoters. This segment is interesting because it controls differential transcription from the two promoters in vitro, in homologous transcription systems. The upstream promoters for both genes are contained within -35 bp DNA segments immediately upstream of their transcription initiation sites, and promoter function for the C gene is conferred by two AT-rich boxes within this segment. The specific sequence or structural distinction that is responsible for differential transcription from C and SG promoters is not known. We plan the following experiments to understand how this critical promoter segment functions: We will use both in vitro and in vivo assays (in cultured cells and in intact silkglands) to identify the sequence and/or structural features that functionally distinguish the upstream promoters of C and SG genes, and that confer silkgland specificity on the SG promoter. We will compare the interaction of TFIIIB with C and SG upstream promoters, using TFIIIB isolated either from silkglands or from a tissue (ovaries) in which the SG promoter is inactive. Based on this analysis, we will identify and purify candidate polypeptides that are likely to be key discriminators between C and SG promoters. Polypeptides that are found to regulate SG transcription in vitro will be functionally tested in vivo by determining their ability to regulate SG transcription when ectopically expressed in cultured Drosophila and silkworm cells and in intact, differentiated silkworm tissues.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
2R01GM032851-11A1
Application #
2176759
Study Section
Molecular Cytology Study Section (CTY)
Project Start
1983-12-01
Project End
1999-06-30
Budget Start
1995-07-01
Budget End
1996-06-30
Support Year
11
Fiscal Year
1995
Total Cost
Indirect Cost
Name
University of Oregon
Department
Biochemistry
Type
Schools of Arts and Sciences
DUNS #
948117312
City
Eugene
State
OR
Country
United States
Zip Code
97403
Martinez, M Juanita; Sprague, Karen U (2003) Cloning of a putative Bombyx mori TFIIB-related factor (BRF). Arch Insect Biochem Physiol 54:55-67
Ouyang, C; Martinez, M J; Young, L S et al. (2000) TATA-Binding protein-TATA interaction is a key determinant of differential transcription of silkworm constitutive and silk gland-specific tRNA(Ala) genes. Mol Cell Biol 20:1329-43
Ouyang, C; Sprague, K U (1998) Cloning and characterization of the TATA-binding protein of the silkworm Bombyx mori. Gene 221:207-13
Young, L S; Ahnert, N; Sprague, K U (1996) Silkworm TFIIIB binds both constitutive and silk gland-specific tRNA Ala promoters but protects only the constitutive promoter from DNase I cleavage. Mol Cell Biol 16:1256-66
Smith, T P; Young, L S; Bender, L B et al. (1995) Silkworm TFIIIA requires additional class III factors for commitment to transcription complex assembly on a 5S RNA gene. Nucleic Acids Res 23:1244-51
Dunstan, H M; Young, L S; Sprague, K U (1994) TFIIIR is an isoleucine tRNA. Mol Cell Biol 14:3588-95
Dunstan, H M; Young, L S; Sprague, K U (1994) tRNA(IleIAU) (TFIIIR) plays an indirect role in silkworm class III transcription in vitro and inhibits low-frequency DNA cleavage. Mol Cell Biol 14:3596-603
Sullivan, H S; Young, L S; White, C N et al. (1994) Silk gland-specific tRNA(Ala) genes interact more weakly than constitutive tRNA(Ala) genes with silkworm TFIIIB and polymerase III fractions. Mol Cell Biol 14:1806-14
Young, L S; Dunstan, H M; Witte, P R et al. (1991) A class III transcription factor composed of RNA. Science 252:542-6
Young, L S; Rivier, D H; Sprague, K U (1991) Sequences far downstream from the classical tRNA promoter elements bind RNA polymerase III transcription factors. Mol Cell Biol 11:1382-92

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