Modem Suhasini, Badri Kameswara R, Holland Thomas C, Reddy Thipparthi R
Department of Immunology and Microbiology, Wayne State University-School of Medicine Detroit, MI 48201, USA.
Nucleic Acids Res. 2005 Feb 8;33(3):873-9. doi: 10.1093/nar/gki231. Print 2005.
Sam68 functionally complements for, as well as synergizes with, HIV-1 Rev in Rev response element (RRE)-mediated gene expression and virus production. Furthermore, C-terminal deletion/point mutants of Sam68 (Sam68DeltaC/Sam68-P21) exert a transdominant negative phenotype for Rev function and HIV-1 production. However, the relevance of Sam68 in Rev/RRE function is not well defined. To gain more insight into the mechanism of Sam68 in Rev function, we used an RNAi (RNA interference) strategy to create stable Sam68 knockdown HeLa (SSKH) cells. In SSKH cells, Rev failed to activate both RRE-mediated reporter gene [chloramphenicol acetyltransferase (CAT) and/or gag] expressions. Importantly, reduction of Sam68 expression led to a dramatic inhibition of HIV-1 production. Inhibition of the reporter gene expression and HIV production correlated with the failure to export RRE-containing CAT mRNA and unspliced viral mRNAs to the cytoplasm, confirming that SSKH cells are defective for Rev-mediated RNA export. Taken together, these results suggest that Sam68 is involved in Rev-mediated RNA export and is absolutely required for HIV production.
Sam68在Rev反应元件(RRE)介导的基因表达和病毒产生过程中,对HIV-1 Rev起到功能互补以及协同作用。此外,Sam68的C末端缺失/点突变体(Sam68DeltaC/Sam68-P21)对Rev功能和HIV-1产生表现出反式显性负性表型。然而,Sam68在Rev/RRE功能中的相关性尚未明确界定。为了更深入了解Sam68在Rev功能中的机制,我们采用RNA干扰(RNAi)策略创建了稳定敲低Sam68的HeLa细胞(SSKH)。在SSKH细胞中,Rev无法激活RRE介导的报告基因[氯霉素乙酰转移酶(CAT)和/或gag]表达。重要的是,Sam68表达的降低导致HIV-1产生受到显著抑制。报告基因表达和HIV产生的抑制与含有RRE的CAT mRNA和未剪接的病毒mRNA无法转运至细胞质相关,证实SSKH细胞在Rev介导的RNA转运方面存在缺陷。综上所述,这些结果表明Sam68参与Rev介导的RNA转运,并且是HIV产生所绝对必需的。