Our research focuses on the regulation of gene expression, in particular the mechanisms controlling cellular and viral mRNA expression. A critical step in the mRNA metabolism is the transport of the mRNA from the nucleus to the cytoplasm. Analysis of retroviral systems, pioneered by research on HIV-1, have shed light into some important aspects of nuclear mRNA export and have provided critical insights into mechanisms governing cellular mRNA and protein transport. We are utilizing retroviral systems to identify and study mechanisms of mRNA metabolism using a combination of biochemistry, functional genomics, and proteomics. The dissection of the mechanisms of posttranscriptional control and nucleocytoplasmic trafficking of macromolecules are relevant to understand processes involved in cellular gene expression as well as virus expression. Since posttranscriptional regulation is an essential step in virus propagation, our studies also focus on the understanding of this regulatory step in pathogenesis of HIV and SIV. We had previously identified NXF1 as the key nuclear receptor for cellular mRNAs, and we demonstrated that this function is conserved in metazoa. Recent data from my lab showed that some members of the NXF family participate in cytoplasmic mRNA trafficking. We have also identified and studied the mouse homologs of the human NXF1. We study a new type of RNA transport element, the RTE, which is present in LTR-retrotransposons. We performed a detailed structure-function analysis of RTE, which revealed that RTE, like the HIV-1 RRE, has a complex stem-loop structure essential for function. We identified the RNA binding motif 15 (RBM15) protein as the cellular factor that binds and exports RTE-containing mRNAs. RBM15 is a novel mRNA export factor and is linked to the NXF1 pathway. Thus, these experiments have identified another important factor of the mRNA export route.

Agency
National Institute of Health (NIH)
Institute
Division of Basic Sciences - NCI (NCI)
Type
Intramural Research (Z01)
Project #
1Z01BC010334-07
Application #
7338468
Study Section
Vector Biology Study Section (VB)
Project Start
Project End
Budget Start
Budget End
Support Year
7
Fiscal Year
2006
Total Cost
Indirect Cost
Name
Basic Sciences
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Bergamaschi, Cristina; Jalah, Rashmi; Kulkarni, Viraj et al. (2009) Secretion and biological activity of short signal peptide IL-15 is chaperoned by IL-15 receptor alpha in vivo. J Immunol 183:3064-72
Uranishi, Hiroaki; Zolotukhin, Andrei S; Lindtner, Susan et al. (2009) The RNA-binding motif protein 15B (RBM15B/OTT3) acts as cofactor of the nuclear export receptor NXF1. J Biol Chem 284:26106-16
Felber, Barbara K; Zolotukhin, Andrei S; Pavlakis, George N (2007) Posttranscriptional control of HIV-1 and other retroviruses and its practical applications. Adv Pharmacol 55:161-97
Lindtner, Susan; Zolotukhin, Andrei S; Uranishi, Hiroaki et al. (2006) RNA-binding motif protein 15 binds to the RNA transport element RTE and provides a direct link to the NXF1 export pathway. J Biol Chem 281:36915-28
Smulevitch, Sergey; Bear, Jenifer; Alicea, Candido et al. (2006) RTE and CTE mRNA export elements synergistically increase expression of unstable, Rev-dependent HIV and SIV mRNAs. Retrovirology 3:6
Tan, Wei; Zolotukhin, Andrei S; Tretyakova, Irina et al. (2005) Identification and characterization of the mouse nuclear export factor (Nxf) family members. Nucleic Acids Res 33:3855-65
Smulevitch, Sergey; Michalowski, Daniel; Zolotukhin, Andrei S et al. (2005) Structural and functional analysis of the RNA transport element, a member of an extensive family present in the mouse genome. J Virol 79:2356-65
Tretyakova, Irina; Zolotukhin, Andrei S; Tan, Wei et al. (2005) Nuclear export factor family protein participates in cytoplasmic mRNA trafficking. J Biol Chem 280:31981-90
Zolotukhin, Andrei S; Michalowski, Daniel; Bear, Jenifer et al. (2003) PSF acts through the human immunodeficiency virus type 1 mRNA instability elements to regulate virus expression. Mol Cell Biol 23:6618-30
Tan, W; Zolotukhin, A S; Bear, J et al. (2000) The mRNA export in Caenorhabditis elegans is mediated by Ce-NXF-1, an ortholog of human TAP/NXF and Saccharomyces cerevisiae Mex67p. RNA 6:1762-72