首页> 美国卫生研究院文献>American Journal of Physiology - Renal Physiology >Rare mutations in the human Na-K-Cl cotransporter (NKCC2) associated with lower blood pressure exhibit impaired processing and transport function
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Rare mutations in the human Na-K-Cl cotransporter (NKCC2) associated with lower blood pressure exhibit impaired processing and transport function

机译:与血压降低相关的人类Na-K-Cl共转运蛋白(NKCC2)的罕见突变表现出加工和转运功能受损

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摘要

The Na-K-Cl cotransporter (NKCC2) is the major salt transport pathway in the thick ascending limb of Henle's loop and is part of the molecular mechanism for blood pressure regulation. Recent screening of ∼3,000 members of the Framingham Heart Study identified nine rare independent mutations in the gene encoding NKCC2 (SLC12A1) associated with clinically reduced blood pressure and protection from hypertension (Ji WZ, Foo JN, O'Roak BJ, Zhao H, Larson MG, Simon DB, Newton-Cheh C, State M, Levy D, Lifton RP. Nat Genet 40: 592–599, 2008). To investigate their functional consequences, we introduced the nine mutations in human NKCC2A and examined protein function, expression, localization, regulation, and ion transport kinetics using heterologous expression in Xenopus laevis oocytes and HEK-293 cells. When expressed in oocytes, four of the mutants (T235M, R302W, L505V, and P569H) exhibited reduced transport function compared with wild-type. In HEK-293 cells, the same four mutants exhibited reduced function, and in addition N399S and P1083A had significantly lower activity than wild-type. The two most functionally impaired mutants (R302W and L505V) exhibited dramatically diminished production of complex-glycosylated protein and a decrease in or absence of plasma membrane localization, indicative of a processing defect. All of the functional human (h) NKCC2A variants were regulated by changes in oocyte volume and intracellular chloride in HEK cells, but P254A and N399S exhibited a lower constitutive activity in HEK cells. The P569H mutant exhibited a 50% reduction in sodium affinity compared with wild-type, predicting lower transport activity at lower intratubular salt concentrations, while the P254A mutant exhibited a 35% increase in rubidium affinity. We conclude that defects in NKCC2 processing, transport turnover rate, regulation, and ion affinity contribute to impaired transport function in six of the nine identified mutants, providing support for the predictive approach of Ji et al. to identify functionally important residues by sequence conservation. Such mutations in hNKCC2A are likely to reduce renal salt reabsorption, providing a mechanism for lower blood pressure.
机译:Na-K-Cl协同转运蛋白(NKCC2)是Henle环上较厚的上升肢体中主要的盐转运途径,并且是调节血压的分子机制的一部分。对Framingham心脏研究的3,000名成员进行的近期筛查发现,编码NKCC2(SLC12A1)的基因中有9个罕见的独立突变,这些突变与临床上血压降低和免受高血压的影响有关(Ji WZ,Foo JN,O'Roak BJ,Zhao H,Larson MG,西蒙DB,Newton-Cheh C,M州,Levy D,Lifton RP。Nat Genet 40:592-599,2008)。为了研究它们的功能后果,我们在人NKCC2A中引入了9个突变,并使用非洲爪蟾卵母细胞和HEK-293细胞中的异源表达检查了蛋白质功能,表达,定位,调节和离子转运动力学。当在卵母细胞中表达时,与野生型相比,四个突变体(T235M,R302W,L505V和P569H)显示出降低的转运功能。在HEK-293细胞中,相同的四个突变体表现出降低的功能,此外,N399S和P1083A的活性明显低于野生型。两种功能最弱的突变体(R302W和L505V)表现出复合糖基化蛋白的产生显着减少,质膜定位的有无减少,表明存在加工缺陷。 HEK细胞中所有功能性人(h)NKCC2A变异体均受卵母细胞体积和细胞内氯化物变化的调节,但P254A和N399S在HEK细胞中显示出较低的组成活性。与野生型相比,P569H突变体的钠亲和力降低了50%,预示着在较低的管内盐浓度下运输活性降低,而P254A突变体的rub亲和力提高了35%。我们得出的结论是,在NKCC2加工,运输周转率,调节和离子亲和力中的缺陷会导致9个已鉴定突变体中的6个突变体的运输功能受损,从而为Ji等人的预测方法提供了支持。通过序列保守鉴定功能上重要的残基。 hNKCC2A中的此类突变可能会降低肾盐的重吸收,从而提供降低血压的机制。

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