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首页> 外文期刊>The Biochemical Journal >Assembly of the ribonucleoprotein complex containing the mRNA of the beta-subunit of the mitochondrial H+-ATP synthase requires the participation of two distal cis-acting elements and a complex set of cellular trans-acting proteins.
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Assembly of the ribonucleoprotein complex containing the mRNA of the beta-subunit of the mitochondrial H+-ATP synthase requires the participation of two distal cis-acting elements and a complex set of cellular trans-acting proteins.

机译:包含线粒体H + -ATP合酶β亚基的mRNA的核糖核蛋白复合物的组装需要两个远端顺式作用元件和一组复杂的细胞反式作用蛋白的参与。

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摘要

The mRNA encoding the beta-subunit of the mitochondrial H(+)-ATP synthase (beta-F1-ATPase) is localized in an approx. 150 nm structure of the hepatocyte of mammals. In the present study, we have investigated the cis- and trans-acting factors involved in the generation of the ribonucleoprotein complex containing beta-F1-ATPase mRNA. Two cis-acting elements (beta1.2 and 3'beta) have been identified. The beta1.2 element is placed in the open reading frame, downstream of the region encoding the mitochondrial pre-sequence of the protein. The 3'beta element is the 3' non-translated region of the mRNA. Complex sets of proteins from the soluble and non-soluble fractions of the liver interact with the beta1.2 and 3'beta elements. A soluble p88, present also in reticulocyte lysate, displays binding specificity for both the cis-acting elements. Sedimentation and high-resolution in situ hybridization experiments showed that the structure containing the rat liver beta-F1-ATPase mRNA is found in fractions of high sucrose concentration, where large polysomes sediment. Treatment of liver extracts with EDTA promoted the mobilization of beta-F1-ATPase mRNA to fractions of lower sucrose concentration, suggesting that the structure containing beta-F1-ATPase mRNA is a large polysome. Finally, in vitro reconstitution experiments with reticulocyte lysate, using either the full-length, mutant or chimaeric versions of beta-F1-ATPase mRNA, reveal that the assembly of the beta-F1-ATPase mRNA polysome requires the co-operation of both the cis-acting mRNA determinants. The present study illustrates the existence of an intramolecular RNA cross-talking required for the association of the mRNA with the translational machinery.
机译:编码线粒体H(+)-ATP合酶(β-F1-ATPase)的β-亚基的mRNA定位于大约哺乳动物肝细胞的150 nm结构。在本研究中,我们研究了顺式和反式作用因子参与包含β-F1-ATPasemRNA的核糖核蛋白复合物的产生。已经确定了两个顺式作用元件(beta1.2和3'beta)。 beta1.2元素位于开放阅读框中,位于编码蛋白质线粒体前序序列区域的下游。 3'β元件是mRNA的3'非翻译区。来自肝脏可溶性和非可溶性部分的复杂蛋白质组与beta1.2和3'beta元素相互作用。网状细胞裂解物中也存在的可溶性p88对两个顺式作用元件均显示结合特异性。沉降和高分辨率原位杂交实验表明,在高蔗糖浓度的级分中发现了含有大鼠肝脏β-F1-ATPasemRNA的结构,该处存在大量的多核糖体。用EDTA处理肝提取物促进了β-F1-ATPasemRNA的动员至较低蔗糖浓度的级分,表明含β-F1-ATPasemRNA的结构是大的多核糖体。最后,使用全长,突变或嵌合形式的β-F1-ATPasemRNA进行的网状细胞裂解液的体外重建实验表明,β-F1-ATPasemRNA多核糖体的组装需要两个顺式作用mRNA决定簇。本研究说明了将mRNA与翻译机制结合所需的分子内RNA串扰的存在。

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