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CRISPR 介导的大鼠单核苷酸多态性建模揭示了与地中海变体相关的心血管疾病风险降低的机制。

CRISPR-Mediated Single Nucleotide Polymorphism Modeling in Rats Reveals Insight Into Reduced Cardiovascular Risk Associated With Mediterranean Variant.

机构信息

From the Department of Pharmacology, New York Medical College, Valhalla (A.K., I.K., C.J., K.M., P.R., S.A.G.).

Department of Biochemistry and Molecular Genetics, University of Colorado, Anschutz Medical Campus, Aurora (A.D., J.A.R.).

出版信息

Hypertension. 2020 Aug;76(2):523-532. doi: 10.1161/HYPERTENSIONAHA.120.14772. Epub 2020 Jun 8.

Abstract

Epidemiological studies suggest that individuals in the Mediterranean region with a loss-of-function, nonsynonymous single nucleotide polymorphism (S188F), in glucose-6-phosphate dehydrogenase () are less susceptible to vascular diseases. However, this association has not yet been experimentally proven. Here, we set out to determine whether the Mediterranean mutation confers protection from vascular diseases and to discover the underlying protective mechanism. We generated a rat model with the Mediterranean single nucleotide polymorphism (G6PD) using CRISPR-Cas9 genome editing. In rats carrying the mutation, G6PD activity, but not expression, was reduced to 20% of wild-type (WT) littermates. Additionally, unbiased metabolomics analysis revealed that the pentose phosphate pathway and other ancillary metabolic pathways connected to the pentose phosphate pathway were reduced (<0.05) in the arteries of G6PD versus WT rats. Intriguingly, G6PD mutants, as compared with WT rats, developed less large arterial stiffness and hypertension evoked by high-fat diet and nitric oxide synthase inhibition with L-N-nitroarginine methyl ester. Intravenous injection of a voltage-gated L-type Ca channel agonist (methyl 2,6-dimethyl-5-nitro-4-[2-(trifluoromethyl)phenyl]-1,4-dihydropyridine-3-carboxylate; Bay K8644) acutely increased blood pressure in WT but not in G6PD rats. Finally, our results suggested that (1) lower resting membrane potential of smooth muscle caused by increased expression of K channel proteins and (2) decreased voltage-gated Ca channel activity in smooth muscle contributed to reduced hypertension and arterial stiffness evoked by L-N-nitroarginine methyl ester and high-fat diet to G6PD mutants as compared with WT rats. In summary, a mutation resulting in the replacement of a single amino acid (S188F) in G6PD, the rate-limiting enzyme in the pentose phosphate pathway, ascribed properties to the vascular smooth muscle that shields the organism from risk factors associated with vascular diseases.

摘要

流行病学研究表明,葡萄糖-6-磷酸脱氢酶(G6PD)中存在无义单核苷酸多态性(S188F)的功能丧失的个体,对血管疾病的易感性较低。然而,这种关联尚未得到实验证实。在这里,我们着手确定地中海突变是否赋予了对血管疾病的保护作用,并发现潜在的保护机制。我们使用 CRISPR-Cas9 基因组编辑技术在大鼠中产生了具有地中海单核苷酸多态性(G6PD)的模型。在携带突变的大鼠中,G6PD 活性而非表达降低至野生型(WT)同窝仔鼠的 20%。此外,无偏代谢组学分析表明,戊糖磷酸途径和其他与戊糖磷酸途径相关的辅助代谢途径在 G6PD 与 WT 大鼠的动脉中减少(<0.05)。有趣的是,与 WT 大鼠相比,G6PD 突变体在高脂肪饮食和一氧化氮合酶抑制引起的大动脉僵硬和高血压方面的发展程度较低,L-N-硝基精氨酸甲酯抑制。静脉注射电压门控 L 型钙通道激动剂(甲基 2,6-二甲基-5-硝基-4-[2-(三氟甲基)苯基]-1,4-二氢吡啶-3-羧酸酯;Bay K8644)可急性增加 WT 大鼠的血压,但不能增加 G6PD 大鼠的血压。最后,我们的结果表明,(1)平滑肌中 K 通道蛋白表达增加导致静息膜电位降低,(2)平滑肌中电压门控 Ca 通道活性降低,导致 L-N-硝基精氨酸甲酯和高脂肪饮食引起的高血压和动脉僵硬减少,与 WT 大鼠相比,G6PD 突变体。总之,戊糖磷酸途径限速酶 G6PD 中的单个氨基酸(S188F)取代导致的突变赋予了血管平滑肌特性,使机体免受与血管疾病相关的危险因素的影响。

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