Torielli Luca, Guarra Federica, Shao Hao, Gestwicki Jason E, Serapian Stefano A, Colombo Giorgio
Department of Chemistry, University of Pavia, Pavia, Italy.
Department of Pharmaceutical Chemistry and the Institute for Neurodegenerative Diseases, University of California San Francisco, San Francisco, CA, USA.
Nat Commun. 2025 Apr 3;16(1):3158. doi: 10.1038/s41467-025-57958-5.
Mitochondrial chaperonin Heat Shock Protein 60 kDa (Hsp60) oversees the correct folding of client proteins in cooperation with Hsp10. Hsp60 monomers M first form 7-meric Single rings (S), which then pair into 14-meric Double rings (D) that accommodate clients in their lumen. Recruitment of 7 Hsp10 molecules per pole yields a sealed 28-meric Football-shaped complex (F). ATP hydrolysis in each Hsp60 unit drives client folding and F disassembly. The V72I mutation in hereditary spastic paraplegia form SPG13 impairs Hsp60 function despite being distant from the active site. We here investigate this impairment with atomistic molecular dynamics (MD) simulations of M, S, D, and F for both WT and mutant Hsp60, considering catalytic aspartates in D and F in different protonation states (even simulating one such state of D post-hydrolysis). Our findings show that-as observed experimentally-V72I rigidifies Hsp60 assemblies, significantly impacting internal dynamics. In monomers, V72I introduces a new allosteric route that bypasses the ATP binding site and affects mechanisms driving reactivity. These insights highlight a multiscale complexity of Hsp60 that could inspire the design of experiments to better understand both its WT and V72I variants.
线粒体伴侣蛋白60千道尔顿热休克蛋白(Hsp60)与Hsp10协同作用,监督客户蛋白的正确折叠。Hsp60单体M首先形成七聚体单环(S),然后配对形成容纳客户蛋白的十四聚体双环(D)。每个极点招募7个Hsp10分子产生一个密封的二十八聚体足球形复合物(F)。每个Hsp60单元中的ATP水解驱动客户蛋白折叠和F复合物解体。遗传性痉挛性截瘫SPG13型中的V72I突变尽管远离活性位点,但仍损害Hsp60功能。我们在此通过对野生型和突变型Hsp60的M、S、D和F进行原子分子动力学(MD)模拟来研究这种损害,考虑D和F中处于不同质子化状态的催化天冬氨酸(甚至模拟D水解后的一种这样的状态)。我们的研究结果表明,正如实验观察到的那样,V72I使Hsp60组装体僵化,显著影响内部动力学。在单体中,V72I引入了一条绕过ATP结合位点的新的变构途径,并影响驱动反应性的机制。这些见解突出了Hsp60的多尺度复杂性,这可能会激发实验设计,以更好地理解其野生型和V72I变体。