Medical Proteomics Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, 6th Floor-SiMR Building, 2 Wanglang Road, Bangkoknoi, Bangkok, 10700, Thailand.
Cell Mol Life Sci. 2022 Jul 28;79(8):454. doi: 10.1007/s00018-022-04483-z.
Human heat-shock protein 90 (HSP90) has four functional domains, including NH-terminal (N), charged linker region (LR), middle (M) and COOH-terminal (C) domains. In kidney stone disease (or nephrolithiasis/urolithiasis), HSP90 serves as a receptor for calcium oxalate monohydrate (COM), which is the most common crystal to form kidney stones. Nevertheless, roles of HSP90 and its four domains in kidney stone formation remained unclear and under-investigated. We thus examined and compared their effects on COM crystals during physical (crystallization, growth and aggregation) and biological (crystal-cell adhesion and crystal invasion through extracellular matrix (ECM)) pathogenic processes of kidney stone formation. The analyses revealed that full-length (FL) HSP90 obviously increased COM crystal size and abundance during crystallization and markedly promoted crystal growth, aggregation, adhesion onto renal cells and ECM invasion. Comparing among four individual domains, N and C domains exhibited the strongest promoting effects, whereas LR domain had the weakest promoting effects on COM crystals. In summary, our findings indicate that FL-HSP90 and its four domains (N, LR, M and C) promote COM crystallization, crystal growth, aggregation, adhesion onto renal cells and invasion through the ECM, all of which are the important physical and biological pathogenic processes of kidney stone formation.
人热休克蛋白 90(HSP90)有四个功能域,包括 NH-末端(N)、荷电连接区(LR)、中间(M)和 COOH-末端(C)域。在肾结石病(或肾石病/尿石病)中,HSP90 作为草酸钙一水合物(COM)的受体,COM 是形成肾结石最常见的晶体。然而,HSP90 及其四个结构域在肾结石形成中的作用仍不清楚,研究也不充分。因此,我们在肾结石形成的物理(结晶、生长和聚集)和生物(晶体-细胞黏附以及晶体通过细胞外基质(ECM)侵袭)发病过程中,研究并比较了它们对 COM 晶体的影响。分析表明全长(FL)HSP90 明显增加了 COM 晶体在结晶过程中的大小和丰度,并显著促进了晶体的生长、聚集、黏附到肾细胞和 ECM 侵袭。在四个单独的结构域中比较,N 结构域和 C 结构域表现出最强的促进作用,而 LR 结构域对 COM 晶体的促进作用最弱。总之,我们的研究结果表明,FL-HSP90 及其四个结构域(N、LR、M 和 C)促进了 COM 的结晶、晶体生长、聚集、黏附到肾细胞和通过 ECM 的侵袭,这些都是肾结石形成的重要物理和生物发病过程。