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脊髓灰质炎病毒3CD多肽的RNA聚合酶区域的亚结构域特异性功能。

Subdomain specific functions of the RNA polymerase region of poliovirus 3CD polypeptide.

作者信息

Cornell Christopher T, Semler Bert L

机构信息

Department of Microbiology and Molecular Genetics, College of Medicine, University of California, Irvine, CA 92697, USA.

出版信息

Virology. 2002 Jul 5;298(2):200-13. doi: 10.1006/viro.2002.1481.

Abstract

The 3D polymerase domain of the poliovirus 3CD polypeptide plays a role in modulating its RNA binding and protein processing activities, even though the proteinase catalytic site and RNA binding determinants appear to reside within the 3C(pro) portion of the molecule. In this study, we have generated recombinant 3CD polypeptides that contain chimeric 3D polymerase domains representing suballelic sequence exchanges between poliovirus type 1 (PV1) and coxsackievirus B3 (CVB3) to determine which portions of the 3D domain are responsible for influencing these activities. By utilizing these recombinant protein chimeras in protein processing and RNA binding studies in vitro, we have generated data suggesting the presence of separate subdomains within the polymerase domain of 3CD that may independently modulate its RNA binding and protein processing activities. In predicting where our sequence exchanges map by utilizing the previously published three-dimensional structure of the PV1 3D polymerase, we present evidence that sequences contained within the RNA recognition motif of the polymerase are critical for 3CD function in recognizing the 5' RNA cloverleaf. Furthermore, our protein processing data indicate that at least some of the substrate recognition and processing determinants within the 3D domain of 3CD are separate and distinct from the RNA binding determinants in this domain.

摘要

脊髓灰质炎病毒3CD多肽的三维聚合酶结构域在调节其RNA结合和蛋白质加工活性方面发挥作用,尽管蛋白酶催化位点和RNA结合决定簇似乎位于分子的3C(pro)部分。在本研究中,我们生成了重组3CD多肽,其包含嵌合的3D聚合酶结构域,代表脊髓灰质炎病毒1型(PV1)和柯萨奇病毒B3型(CVB3)之间的亚等位基因序列交换,以确定3D结构域的哪些部分负责影响这些活性。通过在体外蛋白质加工和RNA结合研究中利用这些重组蛋白嵌合体,我们获得的数据表明,3CD聚合酶结构域内存在独立的亚结构域,它们可能独立调节其RNA结合和蛋白质加工活性。在利用先前发表的PV1 3D聚合酶三维结构预测我们的序列交换定位时,我们提供证据表明,聚合酶RNA识别基序内包含的序列对于3CD识别5'RNA苜蓿叶结构的功能至关重要。此外,我们的蛋白质加工数据表明,3CD的3D结构域内至少一些底物识别和加工决定簇与该结构域中的RNA结合决定簇是分开且不同的。

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