Witherell G W, Gil A, Wimmer E
Department of Microbiology, State University of New York, Stony Brook 11794.
Biochemistry. 1993 Aug 17;32(32):8268-75. doi: 10.1021/bi00083a030.
Translation of encephalomyocarditis virus (EMCV) mRNA occurs in a cap-independent manner, requiring instead a cis-acting element termed the internal ribosomal entry site (IRES). Binding of a 57-kDa ribosome-associated protein (p57) to the EMCV IRES has been found to correlate with cap-independent translation. p57 has recently been reported to be very similar, if not identical, to the polypyrimidine tract binding protein (pPTB), a spliceosome-associated factor possibly involved in U2 snRNP/pre-mRNA complex formation of 3'-splice-site recognition. The interaction between purified pPTB and the EMCV IRES was characterized in this study using nitrocellulose filter binding and UV cross-linking assays. pPTB bound the EMCV IRES with high affinity (Kd = 40 nM at 25 degrees C, pH 5.5, 80 mM ionic strength). pPTB also bound strongly to RNA fragments containing either the 5'-end, 3'-end, or an internal stem-loop of the IRES. The binding properties of 16 RNA variants derived from the IRES revealed however that purified pPTB bound with less specificity than pPTB in a mixture of cytoplasmic HeLa cell polypeptides. The addition of HeLa extract to purified pPTB increased the binding specificity, suggesting that factors within the extract alter the binding specificity of pPTB. The binding of pPTB to the full-length IRES and three IRES-derived fragments was studied in detail. Complex formation was optimal at low pH and was driven entirely by entropy. As many as four ion pairs are formed upon binding, with electrostatic interactions accounting for approximately 35% of the total free energy of complex formation.
脑心肌炎病毒(EMCV)信使核糖核酸(mRNA)的翻译以不依赖帽子结构的方式进行,而是需要一种称为内部核糖体进入位点(IRES)的顺式作用元件。已发现一种57 kDa的核糖体相关蛋白(p57)与EMCV IRES的结合与不依赖帽子结构的翻译相关。最近有报道称,p57即便不是与多嘧啶序列结合蛋白(pPTB)完全相同,也与其非常相似,pPTB是一种与剪接体相关的因子,可能参与3'剪接位点识别的U2小核核糖核蛋白/前体信使核糖核酸复合物的形成。本研究使用硝酸纤维素滤膜结合和紫外线交联试验对纯化的pPTB与EMCV IRES之间的相互作用进行了表征。pPTB以高亲和力结合EMCV IRES(在25℃、pH 5.5、离子强度80 mM时,解离常数Kd = 40 nM)。pPTB也与含有IRES 5'端、3'端或内部茎环的RNA片段强烈结合。然而,源自IRES的16种RNA变体的结合特性表明,在细胞质HeLa细胞多肽混合物中,纯化的pPTB的结合特异性低于pPTB。向纯化的pPTB中添加HeLa提取物可提高结合特异性,这表明提取物中的因子改变了pPTB的结合特异性。详细研究了pPTB与全长IRES和三个源自IRES的片段的结合。复合物的形成在低pH下最为理想,并且完全由熵驱动。结合时形成多达四个离子对,静电相互作用约占复合物形成总自由能的35%。