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首页> 外文期刊>American Journal of Physiology >A naturally occurring human Nedd4-2 variant displays impaired ENaC regulation in Xenopus laevis oocytes.
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A naturally occurring human Nedd4-2 variant displays impaired ENaC regulation in Xenopus laevis oocytes.

机译:天然存在的人类Nedd4-2变体在非洲爪蟾卵母细胞中显示ENaC调节受损。

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摘要

The epithelial Na(+) channel (ENaC) is regulated by the ubiquitin-protein ligase Nedd4-2 via interaction with ENaC PY-motifs. These PY-motifs are mutated/deleted in Liddle's syndrome, resulting in elevated Na(+) reabsorption and hypertension explained partly by impaired ENaC-Nedd4-2 interaction. We hypothesized that Nedd4-2 is a susceptibility gene for hypertension and screened 856 renal patients and healthy controls for mutations in a subset of exons of the human Nedd4-2 gene that are relevant for ENaC regulation by PCR/single-strand conformational polymorphism. Several variants were identified, and one nonsynonymous mutation (Nedd4-2-P355L) was further characterized. This mutation next to the 3' donor site of exon 15 does not affect in vitro splicing of Nedd4-2 mRNA. However, in the Xenopus oocyte expression system, Nedd4-2-P355L-dependent ENaC inhibition was weaker compared with the wild type (Nedd4-2-WT), and this difference depended on the presence of intact PY-motifs on ENaC. This could not be explained by the amount of wild type or mutant Nedd4-2 coimmunoprecipitating with ENaC. When the phosphorylation level of human Nedd4-2 Ser(448) (known to be phosphorylated by the Sgk1 kinase) was determined with a specific anti-pSer(448) antibody, we observed stronger basal phosphorylation of Nedd4-2-P355L. Both the phosphorylation level and the accompanying amiloride-sensitive Na(+) currents could be further enhanced to approximately the same levels by coexpressing Sgk1. In addition, the role of the two other putative Sgk1 phosphorylation sites (S342 and T367) appears also to be affected by the P355L mutation. The differential phosphorylation status between wild-type and mutant Nedd4-2 provides an explanation for the different potential to inhibit ENaC activity.
机译:上皮Na(+)通道(ENaC)通过泛素蛋白连接酶Nedd4-2通过与ENaC PY基序的相互作用进行调节。这些PY-基序在Liddle综合征中被突变/删除,导致Na(+)重吸收和高血压升高,部分原因是ENaC-Nedd4-2相互作用减弱。我们假设Nedd4-2是高血压的易感基因,并筛选了856名肾病患者和健康对照者的人类Nedd4-2基因外显子亚型中的突变,这些突变与PCR /单链构象多态性对ENaC的调节有关。确定了几个变体,并进一步表征了一个非同义突变(Nedd4-2-P355L)。此外显子15 3'供体位点旁边的突变不影响Nedd4-2 mRNA的体外剪接。但是,在非洲爪蟾卵母细胞表达系统中,与野生型(Nedd4-2-WT)相比,Nedd4-2-P355L依赖性的ENaC抑制作用较弱,并且这种差异取决于ENaC上完整PY基序的存在。这不能用与ENaC共免疫沉淀的野生型或突变型Nedd4-2的量来解释。当使用特定的抗pSer(448)抗体确定人Nedd4-2 Ser(448)的磷酸化水平(已知被Sgk1激酶磷酸化)时,我们观察到Nedd4-2-P355L的基础磷酸化更强。通过共表达Sgk1,磷酸化水平和伴随的阿米洛利敏感的Na(+)电流都可以进一步提高到大约相同的水平。此外,其他两个推定的Sgk1磷酸化位点(S342和T367)的作用似乎也受到P355L突变的影响。野生型和突变型Nedd4-2之间的差异磷酸化状态为抑制ENaC活性的不同潜力提供了解释。

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