Noonin Chadanat, Peerapen Paleerath, Yoodee Sunisa, Kapincharanon Chompunoot, Kanlaya Rattiyaporn, Thongboonkerd Visith
Medical Proteomics Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, 10700, Thailand.
Medical Proteomics Unit, Office for Research and Development, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok, 10700, Thailand.
Chem Biol Interact. 2022 Apr 25;357:109879. doi: 10.1016/j.cbi.2022.109879. Epub 2022 Mar 6.
Functions of Tamm-Horsfall protein (THP), the most abundant human urinary protein, have been studied for decades. However, its precise roles in kidney stone formation remain controversial. In this study, we aimed to clarify the roles of native human urinary THP in calcium oxalate monohydrate (COM) kidney stone formation. THP was purified from the human urine by adsorption method using diatomaceous earth (DE). Its effects on stone formation processes, including COM crystallization, crystal growth, aggregation, crystal-cell adhesion and invasion through extracellular matrix (ECM), were examined. SDS-PAGE and Western blotting confirmed that DE adsorption yielded 84.9% purity of the native THP isolated from the human urine. Systematic analyses revealed that THP (at 0.4-40 μg/ml) concentration-dependently reduced COM crystal size but did not affect the crystal mass during initial crystallization. At later steps, THP concentration-dependently inhibited COM crystal growth and aggregation, and prevented crystal-cell adhesion only at 40 μg/ml. However, THP did not affect crystal invasion through the ECM. Sequence analysis revealed two large calcium-binding domains (residues 65-107 and 108-149) and three small oxalate-binding domains (residues 199-207, 361-368 and 601-609) in human THP. Immunofluorescence study confirmed the binding of THP to COM crystals. Analyses for calcium-affinity and/or oxalate-affinity demonstrated that THP exerted a high affinity with only calcium, not oxalate. Functional validation revealed that saturation of THP with calcium, not with oxalate, could abolish the inhibitory effects of THP on COM crystal growth, aggregation and crystal-cell adhesion. These data highlight the inhibitory roles of the native human urinary THP in COM crystal growth, aggregation and crystal-cell adhesion, which are the important processes for kidney stone formation. Such inhibitory effects of THP are most likely mediated via its high affinity with calcium ions.
几十年来,人们一直在研究人类尿液中含量最丰富的蛋白质——Tamm-Horsfall蛋白(THP)的功能。然而,其在肾结石形成中的具体作用仍存在争议。在本研究中,我们旨在阐明天然人尿THP在一水草酸钙(COM)肾结石形成中的作用。采用硅藻土(DE)吸附法从人尿中纯化THP。检测了其对结石形成过程的影响,包括COM结晶、晶体生长、聚集、晶体-细胞粘附以及通过细胞外基质(ECM)的侵袭。SDS-PAGE和蛋白质免疫印迹证实,DE吸附法从人尿中分离得到的天然THP纯度为84.9%。系统分析表明,THP(浓度为0.4 - 40μg/ml)浓度依赖性地减小了COM晶体尺寸,但在初始结晶过程中不影响晶体质量。在后续步骤中,THP浓度依赖性地抑制COM晶体生长和聚集,仅在浓度为40μg/ml时阻止晶体-细胞粘附。然而,THP不影响晶体通过ECM的侵袭。序列分析显示人THP中有两个大的钙结合结构域(第65 - 107位和第108 - 149位氨基酸残基)和三个小的草酸结合结构域(第199 - 207位、第361 - 368位和第601 - 609位氨基酸残基)。免疫荧光研究证实了THP与COM晶体的结合。钙亲和力和/或草酸亲和力分析表明,THP仅与钙具有高亲和力,与草酸没有高亲和力。功能验证表明,THP用钙饱和而非草酸饱和可消除其对COM晶体生长、聚集和晶体-细胞粘附的抑制作用。这些数据突出了天然人尿THP在COM晶体生长、聚集和晶体-细胞粘附中的抑制作用,而这些是肾结石形成的重要过程。THP的这种抑制作用很可能是通过其与钙离子的高亲和力介导的。