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光系统II锰稳定蛋白的组装与功能:源于其天然未折叠行为的启示

Assembly and function of the photosystem II manganese stabilizing protein: lessons from its natively unfolded behavior.

作者信息

Wyman Aaron J, Yocum Charles F

机构信息

Department of Molecular, Cellular, and Developmental Biology, The University of Michigan-Ann Arbor, MI 48109, USA.

出版信息

Photosynth Res. 2005 Jun;84(1-3):283-8. doi: 10.1007/s11120-004-7759-4.

Abstract

The Photosystem II (PS II) manganese stabilizing protein (MSP) possesses characteristics, including thermostability, ascribed to the natively unfolded class of proteins (Lydakis-Simantiris et al. (1999) Biochemistry 38: 404-414). A site-directed mutant of MSP, C28A, C51A, which lacks the -S-S- bridge, also binds to PS II at wild-type levels and reconstitutes oxygen evolution activity [Betts et al. (1996) Biochim Biophys Acta 1274: 135-142], although the mutant protein is even more disordered in solution. Both WT and C28A, C51A MSP aggregate upon heating, but an examination of the effects of protein concentration and pH on heat-induced aggregation showed that each MSP species exhibited greater resistance to aggregation at a pH near their pI (5.2) than do either bovine serum albumin (BSA) or carbonic anhydrase, which were used as model water soluble proteins. Increases in pH above the pI of the MSPs and BSA enhanced their aggregation resistance, a behavior which can be predicted from their charge (MSP) or a combination of charge and stabilization by -S-S- bonds (BSA). In the case of aggregation resistance by MSP, this is likely to be an important factor in its ability to avoid unproductive self-association reactions in favor of formation of the protein-protein interactions that lead to formation of the functional oxygen evolving complex.

摘要

光系统II(PS II)锰稳定蛋白(MSP)具有一些特性,包括热稳定性,这些特性归因于天然未折叠的蛋白质类别(Lydakis-Simantiris等人,《生物化学》,1999年,第38卷,第404 - 414页)。MSP的一个定点突变体C28A、C51A,它缺乏二硫键,也能以野生型水平与PS II结合并重建放氧活性[Betts等人,《生物化学与生物物理学报》,1996年,第1274卷,第135 - 142页],尽管该突变蛋白在溶液中更加无序。野生型(WT)和C28A、C51A MSP在加热时都会聚集,但研究蛋白质浓度和pH对热诱导聚集的影响表明,与用作模型水溶性蛋白质的牛血清白蛋白(BSA)或碳酸酐酶相比,每种MSP在接近其pI(5.2)的pH下对聚集表现出更大的抗性。MSP和BSA的pH高于其pI时,其抗聚集能力增强,这种行为可以从它们的电荷(MSP)或电荷与二硫键稳定作用的组合(BSA)来预测。就MSP的抗聚集性而言,这可能是其避免非生产性自缔合反应、有利于形成导致功能性放氧复合物形成的蛋白质 - 蛋白质相互作用的能力的一个重要因素。

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