State Key Laboratory of Hybrid Rice, Department of Genetics, College of Life Sciences, Wuhan University, Wuhan 430072, People's Republic of China.
J Mol Model. 2012 Oct;18(10):4665-73. doi: 10.1007/s00894-012-1464-6. Epub 2012 Jun 1.
The Hsp90 (for heat shock protein90) and the Sgt1 (for suppressor of the G2 allele of skp1) are widely distributed in animals, yeast, and plants. The former functions as molecular chaperon activating a series of client proteins, the latter functions as an adaptor protein participating in multiple biological processes such as immunity response through interactions with different protein complexes. In the present study, we have constructed a homology model of Hsp90-Sgt1 complex in rice based on a recently resolved structure from barley and Arabidopsis to explore its binding mechanisms and to understand the detailed interaction profile. A total of 20 ns explicit solvent molecular dynamics simulations combined with MM-GBSA computations and virtual alanine scanning were performed for the modeled complex. In the final structure, three strong salt bridges were found between OsHsp90 and OsSgt1, D217(OsHsp90)-K186(OsSgt1), D218(OsHsp90)-K237(OsSgt1) and K161(OsHsp90)-E239(OsSgt1). Besides, residue Y173 of OsSgt1 played a vital role in the interactions with OsHsp90, the detailed interactions were discussed. These results would help us understand the critical features determining the Hsp90-Sgt1 binding process.
Hsp90(热休克蛋白 90)和 Sgt1(skp1 G2 等位基因抑制因子)广泛分布于动物、酵母和植物中。前者作为分子伴侣,激活一系列客户蛋白;后者作为衔接蛋白,通过与不同的蛋白复合物相互作用,参与免疫反应等多种生物学过程。本研究基于最近解析的大麦和拟南芥结构,构建了水稻 Hsp90-Sgt1 复合物的同源模型,以探索其结合机制并深入了解其详细的相互作用模式。对模型复合物进行了总计 20ns 的显式溶剂分子动力学模拟,并结合 MM-GBSA 计算和虚拟丙氨酸扫描进行分析。在最终结构中,发现三个强盐桥存在于 OsHsp90 和 OsSgt1 之间,即 D217(OsHsp90)-K186(OsSgt1)、D218(OsHsp90)-K237(OsSgt1)和 K161(OsHsp90)-E239(OsSgt1)。此外,OsSgt1 的残基 Y173 在与 OsHsp90 的相互作用中起着至关重要的作用,对其详细的相互作用进行了讨论。这些结果有助于我们理解决定 Hsp90-Sgt1 结合过程的关键特征。