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NRBP1和TSC22D蛋白通过调节WNK信号通路影响远曲小管生理功能。

NRBP1 and TSC22D proteins impact distal convoluted tubule physiology through modulation of the WNK pathway.

作者信息

Magaña-Ávila Germán, Carbajal-Contreras Héctor, Amnekar Ramchandra, Dite Toby, Téllez-Sutterlin Michelle, García-Ávila Kevin, Marquina-Castillo Brenda, Lopez-Saavedra Alejandro, Vazquez Norma, Rojas-Ortega Eréndira, Delpire Eric, Ellison David H, Alessi Dario R, Gamba Gerardo, Castañeda-Bueno María

机构信息

Department of Nephrology and Mineral Metabolism, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, Tlalpan, Mexico City, Mexico.

Facultad de Medicina, Universidad Nacional Autónoma de México, Coyoacan, Mexico City.

出版信息

bioRxiv. 2024 Dec 19:2024.12.12.628222. doi: 10.1101/2024.12.12.628222.

Abstract

The With No lysine (WNK) kinases regulate processes such as cell volume and epithelial ion transport through the modulation of Cation Chloride Cotransporters such as the NaCl cotransporter, NCC, present in the distal convoluted tubule (DCT) of the kidney. Recently, the interaction of WNKs with Nuclear Receptor Binding Protein 1 (NRBP1) and Transforming Growth Factor β-Stimulated Clone 22 Domain (TSC22D) proteins was reported. Here we explored the effect of NRBP1 and TSC22Ds on WNK signaling in vitro and in the DCT. TSC22D1.1, TSC22D2, and NRBP1 are localized in DCT WNK bodies, which are cytoplasmic biomolecular condensates associated with WNK activation. In HEK293 cells, long TSC22D isoforms and NRBP1 increase WNK4 activity. DCT-specific NRBP1 knockout mice have reduced NCC phosphorylation and activate a compensatory response. Thus, NRBP1 and long TSC22D proteins are positive modulators of WNK signaling and modulate Na reabsorption in the kidney. NRBP1 and TSC22Ds likely influence WNK signaling in other tissues, impacting various physiological processes.

摘要

无赖氨酸(WNK)激酶通过调节阳离子氯共转运蛋白来调控细胞体积和上皮离子转运等过程,这些阳离子氯共转运蛋白如存在于肾脏远曲小管(DCT)中的氯化钠共转运蛋白NCC。最近,有报道称WNK与核受体结合蛋白1(NRBP1)和转化生长因子β刺激克隆22结构域(TSC22D)蛋白之间存在相互作用。在此,我们在体外和DCT中探究了NRBP1和TSC22D对WNK信号传导的影响。TSC22D1.1、TSC22D2和NRBP1定位于DCT WNK小体,这些小体是与WNK激活相关的细胞质生物分子凝聚物。在HEK293细胞中,长链TSC22D异构体和NRBP1可增加WNK4活性。DCT特异性NRBP1基因敲除小鼠的NCC磷酸化减少,并激活了一种代偿反应。因此,NRBP1和长链TSC22D蛋白是WNK信号传导的正调节剂,并调节肾脏中的钠重吸收。NRBP1和TSC22D可能会影响其他组织中的WNK信号传导,从而影响各种生理过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/092b/11727455/953c20f73dd6/nihpp-2024.12.12.628222v2-f0001.jpg

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