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致病性螺旋体问号钩端螺旋体分子伴侣ClpB的特性分析

Characterization of the molecular chaperone ClpB from the pathogenic spirochaete Leptospira interrogans.

作者信息

Krajewska Joanna, Modrak-Wójcik Anna, Arent Zbigniew J, Więckowski Daniel, Zolkiewski Michal, Bzowska Agnieszka, Kędzierska-Mieszkowska Sabina

机构信息

Department of General and Medical Biochemistry, University of Gdańsk, Faculty of Biology, Gdańsk, Poland.

Division of Biophysics, Institute of Experimental Physics, Faculty of Physics, University of Warsaw, Warsaw, Poland.

出版信息

PLoS One. 2017 Jul 10;12(7):e0181118. doi: 10.1371/journal.pone.0181118. eCollection 2017.

Abstract

Leptospira interrogans is a spirochaete responsible for leptospirosis in mammals. The molecular mechanisms of the Leptospira virulence remain mostly unknown. Recently, it has been demonstrated that an AAA+ chaperone ClpB (a member of the Hsp100 family) from L. interrogans (ClpBLi) is not only essential for survival of Leptospira under the thermal and oxidative stresses, but also during infection of a host. The aim of this study was to provide further insight into the role of ClpB in the pathogenic spirochaetes and explore its biochemical properties. We found that a non-hydrolysable ATP analogue, ATPγS, but not AMP-PNP induces the formation of ClpBLi hexamers and stabilizes the associated form of the chaperone. ADP also induces structural changes in ClpBLi and promotes its self-assembly, but does not produce full association into the hexamers. We also demonstrated that ClpBLi exhibits a weak ATPase activity that is stimulated by κ-casein and poly-lysine, and may mediate protein disaggregation independently from the DnaK chaperone system. Unexpectedly, the presence of E. coli DnaK/DnaJ/GrpE did not significantly affect the disaggregation activity of ClpBLi and ClpBLi did not substitute for the ClpBEc function in the clpB-null E. coli strain. This result underscores the species-specificity of the ClpB cooperation with the co-chaperones and is most likely due to a loss of interactions between the ClpBLi middle domain and the E. coli DnaK. We also found that ClpBLi interacts more efficiently with the aggregated G6PDH in the presence of ATPγS rather than ATP. Our results indicate that ClpB's importance during infection might be due to its role as a molecular chaperone involved in reactivation of protein aggregates.

摘要

问号钩端螺旋体是一种导致哺乳动物感染钩端螺旋体病的螺旋体。钩端螺旋体毒力的分子机制大多仍不清楚。最近,已经证明来自问号钩端螺旋体的一种AAA+伴侣蛋白ClpB(热休克蛋白100家族的成员,即ClpBLi)不仅对钩端螺旋体在热应激和氧化应激下的存活至关重要,而且在宿主感染期间也至关重要。本研究的目的是进一步深入了解ClpB在致病性螺旋体中的作用,并探索其生化特性。我们发现,一种不可水解的ATP类似物ATPγS能诱导ClpBLi六聚体的形成并稳定伴侣蛋白的相关形式,而AMP-PNP则不能。ADP也会诱导ClpBLi的结构变化并促进其自组装,但不会完全形成六聚体。我们还证明,ClpBLi表现出微弱的ATP酶活性,该活性受到κ-酪蛋白和聚赖氨酸的刺激,并且可能独立于DnaK伴侣蛋白系统介导蛋白质解聚。出乎意料的是,大肠杆菌DnaK/DnaJ/GrpE的存在并没有显著影响ClpBLi的解聚活性,并且ClpBLi在clpB基因缺失的大肠杆菌菌株中不能替代ClpBEc的功能。这一结果强调了ClpB与共伴侣蛋白合作的物种特异性,很可能是由于ClpBLi中间结构域与大肠杆菌DnaK之间的相互作用丧失。我们还发现,在存在ATPγS而非ATP的情况下,ClpBLi与聚集的G6PDH的相互作用更有效。我们的结果表明,ClpB在感染期间的重要性可能归因于其作为参与蛋白质聚集体重新激活的分子伴侣的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43b6/5507356/d8a1ac7d3746/pone.0181118.g001.jpg

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