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内收蛋白基因中的两个点突变与血压变化有关。

Two point mutations within the adducin genes are involved in blood pressure variation.

作者信息

Bianchi G, Tripodi G, Casari G, Salardi S, Barber B R, Garcia R, Leoni P, Torielli L, Cusi D, Ferrandi M

机构信息

Nephrology Clinic, University of Milan, San Raffaele Hospital, Italy.

出版信息

Proc Natl Acad Sci U S A. 1994 Apr 26;91(9):3999-4003. doi: 10.1073/pnas.91.9.3999.

Abstract

The Milan hypertensive strain of rats (MHS) develops a genetic form of renal hypertension that, when compared to its normotensive control (MNS), shows renal dysfunction similar to that of a subset of human patients with primary hypertension. MHS and MNS were shown to be homozygous by multilocus minisatellite analysis and monolocus microsatellite markers. We show here that one point mutation in each of two genes coding for the membrane skeleton protein adducin is associated with blood pressure in the Milan strain of rats. Adducin is a heterodimer formed by alpha and beta subunits that promotes the assembly of actin with spectrin. MHS and MNS differ, respectively, by the amino acids Y and F at position 316 of the alpha subunit. In the beta-adducin locus, MHS is always homozygous for R at position 529 while in MNS either R or Q occurs in that position. The R/Q heterozygotes showed lower blood pressure than any of the homozygotes. In vitro phosphorylation studies suggest that both of these amino acid substitutions occur within protein kinase recognition sites. Analysis of an F2 generation demonstrated that Y alleles segregated with a significant increment in blood pressure. This effect is modulated by the presence of the R allele of the beta subunit. Taken together, these findings strongly support a role for adducin polymorphisms in causing variation of blood pressure in the Milan strain of rats.

摘要

米兰高血压大鼠品系(MHS)会发展出一种遗传性肾性高血压,与正常血压对照品系(MNS)相比,其肾功能障碍与一部分原发性高血压人类患者相似。通过多位点微卫星分析和单位点微卫星标记显示,MHS和MNS是纯合子。我们在此表明,编码膜骨架蛋白内收蛋白的两个基因中的每一个都存在一个点突变,这与大鼠米兰品系的血压有关。内收蛋白是由α和β亚基形成的异二聚体,可促进肌动蛋白与血影蛋白的组装。MHS和MNS在α亚基第316位氨基酸分别为Y和F。在β-内收蛋白基因座中,MHS在第529位总是R纯合子,而在MNS中该位置出现R或Q。R/Q杂合子的血压低于任何纯合子。体外磷酸化研究表明,这两个氨基酸取代都发生在蛋白激酶识别位点内。对F2代的分析表明,Y等位基因与血压的显著升高相关。这种效应受β亚基R等位基因的存在调节。综上所述,这些发现有力地支持了内收蛋白多态性在导致大鼠米兰品系血压变化中所起的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c13/43710/4161eaddad38/pnas01131-0533-a.jpg

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