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突变影响保守酸性 WNK1 基序导致遗传性高钾性高氯性酸中毒。

Mutation affecting the conserved acidic WNK1 motif causes inherited hyperkalemic hyperchloremic acidosis.

机构信息

Université de Paris, INSERM, PARCC, F-75006, Paris, France.

INSERM UMR_S1155, Tenon Hospital, Paris, France.

出版信息

J Clin Invest. 2020 Dec 1;130(12):6379-6394. doi: 10.1172/JCI94171.

Abstract

Gain-of-function mutations in with no lysine (K) 1 (WNK1) and WNK4 genes are responsible for familial hyperkalemic hypertension (FHHt), a rare, inherited disorder characterized by arterial hypertension and hyperkalemia with metabolic acidosis. More recently, FHHt-causing mutations in the Kelch-like 3-Cullin 3 (KLHL3-CUL3) E3 ubiquitin ligase complex have shed light on the importance of WNK's cellular degradation on renal ion transport. Using full exome sequencing for a 4-generation family and then targeted sequencing in other suspected cases, we have identified new missense variants in the WNK1 gene clustering in the short conserved acidic motif known to interact with the KLHL3-CUL3 ubiquitin complex. Affected subjects had an early onset of a hyperkalemic hyperchloremic phenotype, but normal blood pressure values"Functional experiments in Xenopus laevis oocytes and HEK293T cells demonstrated that these mutations strongly decrease the ubiquitination of the kidney-specific isoform KS-WNK1 by the KLHL3-CUL3 complex rather than the long ubiquitous catalytically active L-WNK1 isoform. A corresponding CRISPR/Cas9 engineered mouse model recapitulated both the clinical and biological phenotypes. Renal investigations showed increased activation of the Ste20 proline alanine-rich kinase-Na+-Cl- cotransporter (SPAK-NCC) phosphorylation cascade, associated with impaired ROMK apical expression in the distal part of the renal tubule. Together, these new WNK1 genetic variants highlight the importance of the KS-WNK1 isoform abundance on potassium homeostasis.

摘要

WNK1 和 WNK4 基因中的无赖氨酸(K)1(WNK1)获得性功能突变是家族性高钾血症高血压(FHHt)的原因,这是一种罕见的遗传性疾病,其特征是动脉高血压和高钾血症伴代谢性酸中毒。最近,Kelch-like 3-Cullin 3(KLHL3-CUL3)E3 泛素连接酶复合物中的 FHHt 致病突变阐明了 WNK 对肾脏离子转运的细胞降解的重要性。我们使用全外显子组测序对一个 4 代家族进行测序,然后在其他疑似病例中进行靶向测序,鉴定了 WNK1 基因中的新错义变体,这些变体聚集在短保守酸性基序中,已知该基序与 KLHL3-CUL3 泛素复合物相互作用。受影响的受试者表现出高钾高氯血症表型的早期发病,但血压值正常“在非洲爪蟾卵母细胞和 HEK293T 细胞中的功能实验表明,这些突变强烈降低了 KLHL3-CUL3 复合物对肾脏特异性同工型 KS-WNK1 的泛素化,而不是长的普遍存在的催化活性 L-WNK1 同工型。相应的 CRISPR/Cas9 工程小鼠模型重现了临床和生物学表型。肾脏研究表明,Ste20 脯氨酸丙氨酸丰富激酶-Na+-Cl-共转运蛋白(SPAK-NCC)磷酸化级联的激活增加,与远端肾小管中 ROMK 顶端表达受损有关。总之,这些新的 WNK1 遗传变异强调了 KS-WNK1 同工型丰度对钾稳态的重要性。

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Kidney-specific WNK1 isoform (KS-WNK1) is a potent activator of WNK4 and NCC.肾脏特异性 WNK1 异构体(KS-WNK1)是 WNK4 和 NCC 的有效激活剂。
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