Most human genes are interrupted by non-coding sequences known as introns. The nascent transcript must be processed to remove the introns and to join the coding sequence into a contiguous mature mRNA molecule. The human genome project provided an estimate that only 1 to 1.5% of the approximately 3x10/9 base pair (bp) genome is spanned by coding sequences or exons, whereas introns occupy approximately 24% of the genome. It is apparent that the cellular machinery is presented with a formidable task to precisely locate the splice sites within a gene's transcript. Another dimension of complexity is added when certain exon sequences are skipped or included, a phenomenon known as alternative splicing. Alternative splicing occurs in a large number of human genes and it plays important roles in regulating gene expression during development and differentiation. Alternative splicing is also responsible for generating molecular diversity in certain cells, such as neurons. Splicing of pre-mRNA involves an ordered assembly of components, including small nuclear ribonucleoprotein particles (snRNP) and additional protein splicing factors, resulting in the formation of a large 50-60S complex, termed the spliceosome. We are interested in understanding the molecular mechanism of splice site recognition from a structural standpoint. In this proposal, we focus our study on several well characterized human splicing factors that are important for splice site selection, namely, SR proteins, heterogeneous nuclear ribonucleoprotein A1 (hnRNP A1) and the U2 auxiliary factor (U2AF).

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
7R01GM055874-09
Application #
7039071
Study Section
Biophysical Chemistry Study Section (BBCB)
Program Officer
Lewis, Catherine D
Project Start
1998-01-01
Project End
2008-03-31
Budget Start
2006-04-01
Budget End
2008-03-31
Support Year
9
Fiscal Year
2006
Total Cost
$354,812
Indirect Cost
Name
New York University
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
121911077
City
New York
State
NY
Country
United States
Zip Code
10016
Chen, Li-Shiun; Baker, Timothy; Hung, Rayjean J et al. (2016) Genetic Risk Can Be Decreased: Quitting Smoking Decreases and Delays Lung Cancer for Smokers With High and Low CHRNA5 Risk Genotypes - A Meta-Analysis. EBioMedicine 11:219-226
Shi, Hang; Cordin, Olivier; Minder, C Michael et al. (2004) Crystal structure of the human ATP-dependent splicing and export factor UAP56. Proc Natl Acad Sci U S A 101:17628-33
Shi, Hang; Xu, Rui-Ming (2003) Crystal structure of the Drosophila Mago nashi-Y14 complex. Genes Dev 17:971-6
Vitali, Jacqueline; Ding, Jianzhong; Jiang, Jianzhong et al. (2002) Correlated alternative side chain conformations in the RNA-recognition motif of heterogeneous nuclear ribonucleoprotein A1. Nucleic Acids Res 30:1531-8
Jiang, J; Horowitz, D S; Xu, R M (2000) Crystal structure of the functional domain of the splicing factor Prp18. Proc Natl Acad Sci U S A 97:3022-7
Jiang, J; Zhang, Y; Krainer, A R et al. (1999) Crystal structure of human p32, a doughnut-shaped acidic mitochondrial matrix protein. Proc Natl Acad Sci U S A 96:3572-7
Ding, J; Hayashi, M K; Zhang, Y et al. (1999) Crystal structure of the two-RRM domain of hnRNP A1 (UP1) complexed with single-stranded telomeric DNA. Genes Dev 13:1102-15
Mayeda, A; Munroe, S H; Xu, R M et al. (1998) Distinct functions of the closely related tandem RNA-recognition motifs of hnRNP A1. RNA 4:1111-23