首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Hyperkalemic hypertension-associated cullin 3 promotes WNK signaling by degrading KLHL3
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Hyperkalemic hypertension-associated cullin 3 promotes WNK signaling by degrading KLHL3

机译:高钾血症性高血压相关 cullin 3 通过降解 KLHL3 促进 WNK 信号传导

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摘要

Familial hyperkalemic hypertension (FHHt) is a monogenic disease resulting from mutations in genes encoding WNK kinases, the ubiquitin scaffold protein cullin 3 (CUL3), or the substrate adaptor kelch-like 3 (KLHL3). Disease-associated CUL3 mutations abrogate WNK kinase degradation in cells, but it is not clear how mutant forms of CUL3 promote WNK stability. Here, we demonstrated that an FHHt-causing CUL3 mutant (CUL3 Δ403-459) not only retains the ability to bind and ubiquitylate WNK kinases and KLHL3 in cells, but is also more heavily neddylated and activated than WT CUL3. In cells, activated CUL3 Δ403-459 depleted KLHL3, preventing WNK degradation, despite increased CUL3-mediated WNK ubiquitylation; therefore, CUL3 loss in kidney should phenocopy FHHt in murine models. As predicted, nephron-specific deletion of Cul3 in mice did increase WNK kinase levels and the abundance of phosphorylated Na-Cl cotransporter (NCC). Over time, however, Cul3 deletion caused renal dysfunction, including hypochloremic alkalosis, diabetes insipidus, and salt-sensitive hypotension, with depletion of sodium potassium chloride cotransporter 2 and aquaporin 2. Moreover, these animals exhibited renal inflammation, fibrosis, and increased cyclin E. These results indicate that FHHt-associated CUL3 Δ403-459 targets KLHL3 for degradation, thereby preventing WNK degradation, whereas general loss of CUL3 activity - while also impairing WNK degradation - has widespread toxic effects in the kidney.
机译:家族性高钾血症性高血压 (FHHt) 是一种单基因疾病,由编码 WNK 激酶、泛素支架蛋白库林 3 (CUL3) 或底物接头菌样 3 (KLHL3) 的基因突变引起。疾病相关的 CUL3 突变会消除细胞中的 WNK 激酶降解,但尚不清楚 CUL3 的突变形式如何促进 WNK 稳定性。在这里,我们证明了引起FHHt的CUL3突变体(CUL3 Δ403-459)不仅保留了在细胞中结合和泛素化WNK激酶和KLHL3的能力,而且比WT CUL3更严重地被neddyl化和激活。在细胞中,尽管 CUL3 介导的 WNK 泛素化增加,但激活的 CUL3 Δ403-459 耗尽了 KLHL3,阻止了 WNK 降解;因此,肾脏中 CUL3 的缺失应在小鼠模型中表型化 FHHt。正如预测的那样,小鼠中 Cul3 的肾单位特异性缺失确实增加了 WNK 激酶水平和磷酸化 Na-Cl 协同转运蛋白 (NCC) 的丰度。然而,随着时间的推移,Cul3 缺失导致肾功能不全,包括低氯性碱中毒、尿崩症和盐敏感性低血压,并伴有氯化钾钠协同转运蛋白 2 和水通道蛋白 2 的耗竭。此外,这些动物表现出肾脏炎症、纤维化和细胞周期蛋白 E 增加。这些结果表明,FHHt 相关的 CUL3 Δ403-459 靶向 KLHL3 进行降解,从而阻止 WNK 降解,而 CUL3 活性的普遍丧失 - 同时也损害 WNK 降解 - 在肾脏中具有广泛的毒性作用。

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