Li Qintong, Cooper Jeffrey J, Altwerger Gary H, Feldkamp Michael D, Shea Madeline A, Price David H
Department of Biochemistry, University of Iowa, Iowa City, Iowa 52242, USA.
Nucleic Acids Res. 2007;35(8):2503-12. doi: 10.1093/nar/gkm150. Epub 2007 Mar 29.
P-TEFb regulates eukaryotic gene expression at the level of transcription elongation, and is itself controlled by the reversible association of 7SK RNA and an RNA-binding protein HEXIM1 or HEXIM2. In an effort to determine the minimal region of 7SK needed to interact with HEXIM1 in vitro, we found that an oligo comprised of nucleotides 10-48 sufficed. A bid to further narrow down the minimal region of 7SK led to a surprising finding that HEXIM1 binds to double-stranded RNA in a sequence-independent manner. Both dsRNA and 7SK (10-48), but not dsDNA, competed efficiently with full-length 7SK for HEXIM1 binding in vitro. Upon binding dsRNA, a large conformational change was observed in HEXIM1 that allowed the recruitment and inhibition of P-TEFb. Both subcellular fractionation and immunofluorescence demonstrated that, while most HEXIM1 is found in the nucleus, a significant fraction is found in the cytoplasm. Immunoprecipitation experiments demonstrated that both nuclear and cytoplasmic HEXIM1 is associated with RNA. Interestingly, the one microRNA examined (mir-16) was found in HEXIM1 immunoprecipitates, while the small nuclear RNAs, U6 and U2, were not. Our study illuminates novel properties of HEXIM1 both in vitro and in vivo, and suggests that HEXIM1 may be involved in other nuclear and cytoplasmic processes besides controlling P-TEFb.
正性转录延伸因子b(P-TEFb)在转录延伸水平调控真核基因表达,其自身受7SK RNA与RNA结合蛋白HEXIM1或HEXIM2的可逆结合所控制。为了确定体外与HEXIM1相互作用所需的7SK最小区域,我们发现由核苷酸10 - 48组成的寡核苷酸就足够了。进一步缩小7SK最小区域的尝试带来了一个惊人的发现,即HEXIM1以序列非依赖的方式结合双链RNA。双链RNA和7SK(10 - 48),而非双链DNA,在体外能有效竞争全长7SK与HEXIM1的结合。结合双链RNA后,在HEXIM1中观察到一个大的构象变化,这使得P-TEFb能够被募集并受到抑制。亚细胞分级分离和免疫荧光实验均表明,虽然大多数HEXIM1存在于细胞核中,但也有相当一部分存在于细胞质中。免疫沉淀实验表明,细胞核和细胞质中的HEXIM1均与RNA相关。有趣的是,在所检测的一种微小RNA(mir-16)中发现于HEXIM1免疫沉淀产物中,而小核RNA U6和U2则未发现。我们的研究揭示了HEXIM1在体外和体内的新特性,并表明HEXIM1除了控制P-TEFb外,可能还参与其他细胞核和细胞质过程。