PIN1 proteins are a class of peptidyl prolyl cis-trans isomerases (PPIases), which have been implicated in numerous cellular functions like cell cycle progression, transcriptional control, signal transduction, promotion of oncogenesis and host-parasite interactions. In this work, the unfolding mechanism of a single domain PIN1 from Leishmania major (LmPIN1) has been characterized during thermal and denaturant-induced unfolding by differential scanning calorimetry (DSC), fluorescence and circular dichroism. Further, MD simulations have been performed to structurally probe the possible stages of its unfolding process. Both the fluorescence and CD data confirm classical two-state unfolding transitions for urea and GdnHCl. The thermal unfolding of LmPIN1, characterized by DSC, could optimally be fitted to a non two-state transition curve exhibiting two Tm's (53 °C and 57 °C) suggesting the possibility of an intermediate. Thermal unfolding of the modeled LmPIN1 by MD simulation shows that the unfolding process is initiated by increased fluctuations (dynamics) spanning residues 70-80, followed by perturbations in the sheet system and disjuncture of helix-sheet packing. Importantly, simulation and fluorescence quenching studies clearly suggest the possibility of the presence of residual structures of LmPIN1 even after complete denaturation.

译文

PIN1蛋白是一类肽基脯氨酰顺反式异构酶 (PPIases),与许多细胞功能有关,例如细胞周期进程,转录控制,信号转导,促进肿瘤发生和宿主-寄生虫相互作用。在这项工作中,通过差示扫描量热法 (DSC),荧光和圆二色性表征了来自利什曼原虫 (LmPIN1) 的单域PIN1在热和变性剂诱导的展开过程中的展开机理。此外,已经进行了MD模拟,以从结构上探究其展开过程的可能阶段。荧光和CD数据都证实了尿素和GdnHCl的经典双态展开跃迁。以DSC为特征的LmPIN1的热展开可以最佳地拟合为具有两个Tm (53 °C和57 °C) 的非两态转变曲线,表明存在中间体的可能性。通过MD模拟对建模的LmPIN1进行的热展开表明,展开过程是由跨越70-80的残余物的波动 (动力学) 增加引发的,随后是片材系统的扰动和螺旋片材填料的分离。重要的是,模拟和荧光猝灭研究清楚地表明,即使完全变性后,LmPIN1的残留结构也可能存在。

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