Raza Sayyid, Jokl Elliot, Pritchett James, Martin Katherine, Su Kim, Simpson Kara, Birchall Lindsay, Mullan Aoibheann F, Athwal Varinder S, Doherty Daniel T, Zeef Leo, Henderson Neil C, Kalra Philip A, Hanley Neil A, Piper Hanley Karen
Wellcome Centre for Cell-Matrix Research, Faculty of Biology, Medicine and Health and Manchester Academic Health Science Centre, University of Manchester, Oxford Road, Manchester M13 9PT, UK.
Division of Diabetes, Endocrinology and Gastroenterology, Faculty of Biology, Medicine and Health, University of Manchester, Manchester Academic Health Science Centre, Oxford Road, Manchester, UK.
Sci Signal. 2021 Mar 2;14(672):eabb4282. doi: 10.1126/scisignal.abb4282.
Renal fibrosis is a common end point for kidney injury and many chronic kidney diseases. Fibrogenesis depends on the sustained activation of myofibroblasts, which deposit the extracellular matrix that causes progressive scarring and organ failure. Here, we showed that the transcription factor SOX9 was associated with kidney fibrosis in humans and required for experimentally induced kidney fibrosis in mice. From genome-wide analysis, we identified Neuron navigator 3 (NAV3) as acting downstream of SOX9 in kidney fibrosis. NAV3 increased in abundance and colocalized with SOX9 after renal injury in mice, and both SOX9 and NAV3 were present in diseased human kidneys. In an in vitro model of renal pericyte transdifferentiation into myofibroblasts, we demonstrated that NAV3 was required for multiple aspects of fibrogenesis, including actin polymerization linked to cell migration and sustained activation of the mechanosensitive transcription factor YAP1. In summary, our work identifies a SOX9-NAV3-YAP1 axis involved in the progression of kidney fibrosis and points to NAV3 as a potential target for pharmacological intervention.
肾纤维化是肾损伤和许多慢性肾病的常见终点。纤维化形成依赖于肌成纤维细胞的持续激活,肌成纤维细胞会沉积细胞外基质,导致进行性瘢痕形成和器官衰竭。在此,我们表明转录因子SOX9与人类肾纤维化相关,并且是小鼠实验性诱导肾纤维化所必需的。通过全基因组分析,我们确定神经元导航蛋白3(NAV3)在肾纤维化中作用于SOX9的下游。在小鼠肾损伤后,NAV3丰度增加并与SOX9共定位,并且SOX9和NAV3都存在于患病的人类肾脏中。在肾周细胞向肌成纤维细胞转分化的体外模型中,我们证明NAV3是纤维化形成多个方面所必需的,包括与细胞迁移相关的肌动蛋白聚合以及机械敏感转录因子YAP1的持续激活。总之,我们的工作确定了一个参与肾纤维化进展的SOX9-NAV3-YAP1轴,并指出NAV3作为药物干预的潜在靶点。