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自发性高血压大鼠中钠氢交换体1亚型活性增加:钠氢交换体1编码区域内无突变

Increased Na(+)/H(+) exchanger isoform 1 activity in spontaneously hypertensive rats: lack of mutations within the coding region of NHE1.

作者信息

Orlov S N, Adarichev V A, Devlin A M, Maximova N V, Sun Y L, Tremblay J, Dominiczak A F, Postnov Y V, Hamet P

机构信息

Centre de Recherche, CHUM, University of Montreal, Montreal, Canada.

出版信息

Biochim Biophys Acta. 2000 Feb 21;1500(2):169-80. doi: 10.1016/s0925-4439(99)00101-5.

Abstract

Enhanced Na(+)/H(+) exchange, measured as amiloride derivative-sensitive Na(+) and H(+) fluxes in cells with a preliminary acidified cytoplasm (Deltamu(H+)-induced Na(+)/H(+) exchange), is one of the most prominent intermediate phenotypes of altered vascular smooth muscle cell (VSMC) function in spontaneously hypertensive rats (SHR). Analysis of Na(+)/H(+) exchange in F(2) hybrids of SHR and normotensive rats seems to be the most appropriate approach in the search for the genetic determinants of abnormal activity of this carrier. However, the measurement of Deltamu(H+)-induced Na(+)/H(+) exchange is hardly appropriate for precise analysis of the carrier's activity in VSMC derived from several hundred F(2) hybrids. To overcome this problem, we compared the rate of (22)Na influx under baseline conditions and in Na(+)-loaded (ouabain-treated) VSMC. The dose-dependency of the rate of Deltamu(H+)-induced H(+) efflux as well as of (22)Na influx in control and ouabain-treated cells on ethylisopropylamiloride (EIPA) concentration were not different (K(0.5) approximately 0.3 microM), suggesting that these ion transport pathways are mediated by the same carrier. EIPA-sensitive (22)Na influx in Na(+)-loaded cells was approximately 6-fold higher than in ouabain-untreated VSMC and was increased by 50-70% in two different substrains of SHR. About the same increment of EIPA-sensitive (22)Na influx in Na(+)-loaded VSMC was observed in 5- to 6-week-old SHR (an age at which hypertension has not yet developed) as well as in stroke-prone SHR (SHRSP) with severe hypertension, indicating that the heightened activity of Na(+)/H(+) exchange is not a consequence of long-term blood pressure elevation. To examine whether or not the augmented activity of Na(+)/H(+) exchange in SHR is caused by mutation of NHE1, i.e. the only isoform of this carrier expressed in VSMC, we undertook single-stranded conformational polymorphism analysis of 23 NHE1 cDNA fragments from SHR and SHRSP and sequencing of the 456-2421 NHE1 cDNA fragment. This study did not reveal any mutation in the entire coding region of NHE1. The lack of mutation in the coding region of NHE1 indicates that the augmented activity of the ubiquitous Na(+)/H(+) exchanger in primary hypertension is caused by altered regulation of carrier turnover number or/and its plasma membrane content.

摘要

在细胞质预先酸化的细胞中,通过阿米洛利衍生物敏感的Na⁺和H⁺通量来测量的增强型Na⁺/H⁺交换(Δμ(H⁺)诱导的Na⁺/H⁺交换),是自发性高血压大鼠(SHR)血管平滑肌细胞(VSMC)功能改变的最显著中间表型之一。对SHR和正常血压大鼠的F₂代杂种中的Na⁺/H⁺交换进行分析,似乎是寻找该载体异常活性的遗传决定因素的最合适方法。然而,测量Δμ(H⁺)诱导的Na⁺/H⁺交换对于精确分析来自数百个F₂代杂种的VSMC中载体的活性并不合适。为了克服这个问题,我们比较了基线条件下以及Na⁺负载(哇巴因处理)的VSMC中²²Na流入的速率。在对照细胞和哇巴因处理的细胞中,Δμ(H⁺)诱导的H⁺外流速率以及²²Na流入速率对乙基异丙基阿米洛利(EIPA)浓度的剂量依赖性没有差异(K(0.5)约为0.3 μM),这表明这些离子转运途径是由同一载体介导的。在Na⁺负载的细胞中,EIPA敏感的²²Na流入比未用哇巴因处理的VSMC高约6倍,并且在SHR的两个不同亚系中增加了50 - 70%。在5至6周龄的SHR(尚未发生高血压的年龄)以及患有严重高血压的易中风SHR(SHRSP)中,观察到Na⁺负载的VSMC中EIPA敏感的²²Na流入有大致相同的增加,这表明Na⁺/H⁺交换活性的增强不是长期血压升高的结果。为了检查SHR中Na⁺/H⁺交换活性增强是否由NHE1突变引起,即该载体在VSMC中表达的唯一同工型,我们对来自SHR和SHRSP的23个NHE1 cDNA片段进行了单链构象多态性分析,并对456 - 2421 NHE1 cDNA片段进行了测序。这项研究在NHE1的整个编码区域未发现任何突变。NHE1编码区域缺乏突变表明原发性高血压中普遍存在的Na⁺/H⁺交换体活性增强是由载体周转数或/及其质膜含量的调节改变引起的。

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