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本文引用的文献

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Specific aggregation of partially folded polypeptide chains: the molecular basis of inclusion body composition.部分折叠多肽链的特异性聚集:包涵体组成的分子基础。
Nat Biotechnol. 1996 Oct;14(10):1283-7. doi: 10.1038/nbt1096-1283.
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Mutational effects on inclusion body formation.突变对包涵体形成的影响。
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Conformational disease.构象病
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Disulphide-bonded intermediate on the folding and assembly pathway of a non-disulphide bonded protein.非二硫键结合蛋白折叠与组装途径中的二硫键结合中间体。
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GroEL-mediated protein folding.伴侣蛋白GroEL介导的蛋白质折叠
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6
Prevalence of temperature sensitive folding mutations in the parallel beta coil domain of the phage P22 tailspike endorhamnosidase.噬菌体P22尾刺内鼠李糖苷酶平行β-螺旋结构域中温度敏感折叠突变的发生率。
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Model peptide studies demonstrate that amphipathic secondary structures can be recognized by the chaperonin GroEL (cpn60).模型肽研究表明,两亲性二级结构可被伴侣蛋白GroEL(cpn60)识别。
J Biol Chem. 1997 Feb 21;272(8):5105-11. doi: 10.1074/jbc.272.8.5105.
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Conformation of P22 tailspike folding and aggregation intermediates probed by monoclonal antibodies.用单克隆抗体探测P22尾刺折叠和聚集中间体的构象
Protein Sci. 1997 Jan;6(1):99-108. doi: 10.1002/pro.5560060111.
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Control of aggregation in protein refolding: the temperature-leap tactic.蛋白质重折叠过程中聚集的控制:温度跃变策略。
Protein Sci. 1996 Mar;5(3):517-23. doi: 10.1002/pro.5560050314.
10
Crystal structure of phage P22 tailspike protein complexed with Salmonella sp. O-antigen receptors.与沙门氏菌O抗原受体复合的噬菌体P22尾刺蛋白的晶体结构。
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在有效折叠与非天然聚集交界处对热不稳定尾刺中间体进行低温挽救。

Cold rescue of the thermolabile tailspike intermediate at the junction between productive folding and off-pathway aggregation.

作者信息

Betts S D, King J

机构信息

Department of Biology and The Biotechnology Process Engineering Center, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Protein Sci. 1998 Jul;7(7):1516-23. doi: 10.1002/pro.5560070704.

DOI:10.1002/pro.5560070704
PMID:9684883
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2144048/
Abstract

Off-pathway intermolecular interactions between partially folded polypeptide chains often compete with correct intramolecular interactions, resulting in self-association of folding intermediates into the inclusion body state. Intermediates for both productive folding and off-pathway aggregation of the parallel beta-coil tailspike trimer of phage P22 have been identified in vivo and in vitro using native gel electrophoresis in the cold. Aggregation of folding intermediates was suppressed when refolding was initiated and allowed to proceed for a short period at 0 degrees C prior to warming to 20 degrees C. Yields of refolded tailspike trimers exceeding 80% were obtained using this temperature-shift procedure, first described by Xie and Wetlaufer (1996, Protein Sci 5:517-523). We interpret this as due to stabilization of the thermolabile monomeric intermediate at the junction between productive folding and off-pathway aggregation. Partially folded monomers, a newly identified dimer, and the protrimer folding intermediates were populated in the cold. These species were electrophoretically distinguished from the multimeric intermediates populated on the aggregation pathway. The productive protrimer intermediate is disulfide bonded (Robinson AS, King J, 1997, Nat Struct Biol 4:450-455), while the multimeric aggregation intermediates are not disulfide bonded. The partially folded dimer appears to be a precursor to the disulfide-bonded protrimer. The results support a model in which the junctional partially folded monomeric intermediate acquires resistance to aggregation in the cold by folding further to a conformation that is activated for correct recognition and subunit assembly.

摘要

部分折叠的多肽链之间的非天然分子间相互作用常常与正确的分子内相互作用相互竞争,导致折叠中间体自缔合形成包涵体状态。利用低温下的天然凝胶电泳技术,在体内和体外都已鉴定出噬菌体P22平行β-螺旋尾刺三聚体进行有效折叠和非天然聚集的中间体。当在0℃起始重折叠并使其在升温至20℃之前短时间进行时,折叠中间体的聚集受到抑制。使用这种温度转换程序获得了超过80%的重折叠尾刺三聚体产率,该程序最早由Xie和Wetlaufer(1996年,《蛋白质科学》5:517 - 523)描述。我们将此解释为是由于热不稳定单体中间体在有效折叠和非天然聚集之间的交界处得到了稳定。部分折叠的单体、新鉴定出的二聚体以及前体三聚体折叠中间体在低温下出现。这些物种通过电泳与聚集途径上出现的多聚体中间体区分开来。有效的前体三聚体中间体是通过二硫键结合的(Robinson AS,King J,1997年,《自然结构生物学》4:450 - 455),而多聚体聚集中间体则没有二硫键结合。部分折叠的二聚体似乎是二硫键结合的前体三聚体的前体。这些结果支持了一个模型,即交界处的部分折叠单体中间体通过进一步折叠成一种被激活以进行正确识别和亚基组装的构象,从而在低温下获得抗聚集能力。