IFM-Department of Chemistry, Linköping University, Sweden.
Biochemistry. 2010 Feb 16;49(6):1137-45. doi: 10.1021/bi901997q.
The single-domain cyclophilin 18 (Cyp18) has long been known to function as a peptidyl-prolyl cis/trans isomerase (PPI) and was proposed by us to also function as a chaperone [Freskgard, P.-O., Bergenhem, N., Jonsson, B.-H., Svensson, M., and Carlsson, U. (1992) Science 258, 466-468]. Later several multidomain PPIs were demonstrated to work as both a peptidyl-prolyl cis/trans isomerase and a chaperone. However, the chaperone ability of Cyp18 has been debated. In this work, we add additional results that show that Cyp18 can both accelerate the rate of refolding and increase the yield of native protein during the folding reaction, i.e., function as both a folding catalyst and a chaperone. Refolding experiments were performed using severely destabilized mutants of human carbonic anhydrase II under conditions where the unfolding reaction is significant and a larger fraction of a more destabilized variant populates molten globule-like intermediates during refolding. A correlation of native state protein stability of the substrate protein versus Cyp18 chaperone activity was demonstrated. The induced correction of misfolded conformations by Cyp18 likely functions through rescue from misfolding of transient molten globule intermediates. ANS binding data suggest that the interaction by Cyp18 leads to an early stage condensation of accessible hydrophobic portions of the misfolding-prone protein substrate during folding. The opposite effect was observed for GroEL known as an unfoldase at early stages of refolding. The chaperone effect of Cyp18 was also demonstrated for citrate synthase, suggesting a general chaperone effect of this PPI.
单域亲环素 18(Cyp18)长期以来一直被认为具有肽基脯氨酰顺/反异构酶(PPI)的功能,我们提出它还具有伴侣蛋白的功能[Freskgard,P.-O.,Bergenhem,N.,Jonsson,B.-H.,Svensson,M.,和 Carlsson,U.(1992)科学 258,466-468]。后来,有几项多结构域 PPI 被证明既可以作为肽基脯氨酰顺/反异构酶,也可以作为伴侣蛋白。然而,Cyp18 的伴侣蛋白能力一直存在争议。在这项工作中,我们增加了其他结果,表明 Cyp18 可以加速折叠反应的复性速率并提高天然蛋白质的产率,即作为折叠催化剂和伴侣蛋白发挥作用。使用严重失稳的人碳酸酐酶 II 突变体进行复性实验,在这些条件下,解折叠反应显著,更不稳定的变体的更大比例在复性过程中形成类似无规卷曲的中间体。证明了底物蛋白的天然状态蛋白稳定性与 Cyp18 伴侣蛋白活性之间存在相关性。Cyp18 通过从瞬态无规卷曲中间体的错误折叠中恢复来纠正错误折叠的构象。ANS 结合数据表明,Cyp18 的相互作用导致折叠过程中易出错的蛋白质底物的可及疏水区早期发生凝聚。在复性的早期阶段,GroEL 作为解折叠酶表现出相反的效果。Cyp18 对柠檬酸合酶的伴侣蛋白效应也得到了证明,这表明这种 PPI 具有普遍的伴侣蛋白效应。