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首页> 外文期刊>Journal of Molecular Biology >Crystal structure of E-coli Hsp100 ClpB Neucleotide binding domain 1 (NBD1) and mechanistic studies on ClpB ATPase activity
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Crystal structure of E-coli Hsp100 ClpB Neucleotide binding domain 1 (NBD1) and mechanistic studies on ClpB ATPase activity

机译:大肠杆菌Hsp100 ClpB核苷酸结合结构域1(NBD1)的晶体结构和ClpB ATPase活性的机理研究

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摘要

E. coli Hsp100 ClpB was recently identified as a critical part in a multi-chaperone system to play important roles in protein folding, protein transport and degradation in cell physiology. ClpB contains two nucleotide-bindin,, domains (NBD1 and NHD2) within their primary sequences. NBD1 and NBD2 of ClpB can be classified as members of the large ATPase family known as ATPases associated with various cellular activities (AAA). To investigate how ClpB performs its ATPase activities for its chaperone activity, we have determined the crystal structure of ClpB nucleotide-binding domain 1 (NBD1) by MAD method to 1.80Angstrom resolution. The NBD1 monomer structure contains one domain that comprises 11 a-helices and six beta-strands. When compared with the typical AAA structures, the crystal structure of ClpB NBD1 reveals a novel AAA topology with six-stranded beta-sheet as its core. The N-terminal portion of NBD1 structure has an extra beta-strand flanked by two extra alpha-helices that are not present in other AAA structures. Moreover, the NBD1 structure does not have a C-terminal helical domain as other AAA proteins do. No nucleotide molecule is bound with ClpB NBD1 in the crystal structure probably due to lack of the C-terminal helix domain in the structure. Isothermal titration calorimetry (ITC) studies of ClpB NBD1 and other ClpB deletion mutations showed that either ClpB NBD1 or NBD2 alone does not bind to nucleotides. However, ClpB NBD2 combined with ClpB C-terminal fragment can interact with one ADP or ATP molecule. ITC data also indicated that full-length ClpB could bind two ADP molecules or one ATP analogue ATPgammaS molecule. Further ATPase activity studies of ClpB and ClpB deletion mutants showed that only wild-type ClpB have ATPase activity. None of ClpB NBD1 domain, NBD2 domain and NBD2 with C-terminal fragment has detectable ATPase activities. On the basis of our structural and mutagenesis data, we proposed a "see-saw" model to illustrate the mechanisms by which ClpB performs its ATPase activities for chaperone functions. (C) 2002 Published by Elsevier Science Ltd. [References: 29]
机译:大肠杆菌Hsp100 ClpB最近被确定为多分子伴侣系统中的关键部分,在蛋白质折叠,蛋白质转运和细胞生理降解中起重要作用。 ClpB在其一级序列中包含两个核苷酸-bindin域(NBD1和NHD2)。 ClpB的NBD1和NBD2可以归类为大ATPase家族的成员,该家族被称为与各种细胞活动(AAA)相关的ATPase。为了研究ClpB如何执行其伴侣蛋白活性的ATPase活性,我们已经通过MAD方法确定了ClpB核苷酸结合结构域1(NBD1)的晶体结构,分辨率为1.80埃。 NBD1单体结构包含一个域,该域包含11个α螺旋和6个β链。与典型的AAA结构相比,ClpB NBD1的晶体结构揭示了一种新颖的AAA拓扑,其六链β-折叠为核心。 NBD1结构的N端部分有一个额外的β链,两侧是两个其他AAA结构中不存在的额外的α螺旋。此外,NBD1结构不像其他AAA蛋白那样具有C末端螺旋结构域。晶体结构中没有核苷酸分子与ClpB NBD1结合,可能是由于该结构中缺少C末端螺旋结构域。 ClpB NBD1和其他ClpB缺失突变的等温滴定热(ITC)研究表明,单独的ClpB NBD1或NBD2都不与核苷酸结合。但是,ClpB NBD2与ClpB C末端片段结合可以与一个ADP或ATP分子相互作用。 ITC数据还表明,全长ClpB可以结合两个ADP分子或一个ATP类似物ATPgammaS分子。 ClpB和ClpB缺失突变体的进一步ATPase活性研究表明,只有野生型ClpB具有ATPase活性。具有C端片段的ClpB NBD1域,NBD2域和NBD2没有一个具有可检测的ATPase活性。根据我们的结构和诱变数据,我们提出了一个“跷跷板”模型来说明ClpB履行其伴侣蛋白功能的ATPase活性的机制。 (C)2002由Elsevier Science Ltd.发布[参考:29]

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