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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Renal expression of arachidonic acid metabolizing enzymes and RhoA/Rho kinases in fructose insulin resistant hypertensive rats.
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Renal expression of arachidonic acid metabolizing enzymes and RhoA/Rho kinases in fructose insulin resistant hypertensive rats.

机译:果糖胰岛素耐高血压大鼠rhOA / rhO激酶的花生素代谢酶和RhoA / Rho激酶的肾表达。

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摘要

Fructose feeding has been shown to induce insulin resistance and hypertension. Renal protein expression for the cytochrome P (CYP) 450 arachidonic acid metabolizing enzymes has been shown to be altered in other models of diet-induced hypertension. Of special interest is CYP4A, which produces the potent vasoconstrictor, 20-hydroxyeicosatetraenoic acid and CYP2C, which catalyzes the formation of the potent dilators epoxyeicosatrienoic acids as well as soluble epoxide hydrolase (sEH) which metabolizes the latter to dihydroxyeicosatrienoic acids. The RhoA/Rho kinase (ROCK) signaling pathway is downstream of arachidonic acid and is reported to mediate metabolic-cardio-renal dysfunctions in some experimental models of insulin resistance and diabetes. The aim of the present study was to determine the expression of CYP4A, CYP2C23, CYP2C11, sEH, RhoA, ROCK-1, ROCK-2, and phospho-Lin-11/Isl-1/Mec-3 kinase (LIMK) in kidneys of fructose-fed (F) rats. Male Wistar rats were fed a high fructose diet for 8 weeks. Body weight, systolic blood pressure, insulin sensitivity, and renal expression of the aforementioned proteins were assessed. No change was observed in the body weight of F rats; however, euglycemia and hyperinsulinemia implicating impaired glucose tolerance and significant elevation in systolic blood pressure were observed. Renal expression of CYP4A and CYP2C23 was significantly increased while that of CYP2C11 and sEH was not changed in F rats. Equal expression for RhoA in both control and F rats and an enhanced level of ROCK-1 and ROCK-2 constitutively activate 130 kDa cleavage fragments as well as phospho-LIMK. These data suggest that the kidneys could be actively participating in the pathogenesis of insulin resistance-induced hypertension through the arachidonic acid CYP 450-RhoA/Rho kinase pathway(s).
机译:已经显示果糖喂养以诱导胰岛素抵抗和高血压。已经显示出在其他模型的饮食诱导的高血压模型中改变了细胞色素p(CYP)450的肾蛋白表达。特别兴趣的是CYP4A,其产生有效的血管收缩剂,20-羟基辛辛醚四烯酸和CYP2C,其催化了效力扩张器环氧二碳酸二酸的形成,以及可溶的环氧化物水解酶(SEH),其代谢到二羟基己二烯酸中。 RhOA / Rho激酶(岩)信号传导途径位于花生素酸的下游,并据报道,在胰岛素抵抗和糖尿病的一些实验模型中介导代谢 - 心肾功能困难。本研究的目的是确定CYP4A,CYP2C23,CYP2C11,SEH,RHOA,ROCK-1,ROCK-2和磷酸林-11 / ISL-1 / MEC-3激酶(LIMK)的表达果糖喂养(F)大鼠。雄性Wistar大鼠饲喂高果糖饮食8周。评估体重,收缩压,胰岛素敏感性和上述蛋白质的肾表达。在F大鼠的体重中没有观察到任何变化;然而,观察到抑制葡萄糖耐受性和中高胰岛素血症,并且在收缩压中显着升高。 CYP4A和CYP2C23的肾表达显着增加,而CYP2C11和SEH的CYP2C11和SEH的表达没有改变。对照和F大鼠中的RhOA等于表达和岩石-1和岩石2的增强水平组成思来地激活130kDa裂解片段以及磷酸锂。这些数据表明,肾脏可以通过植物酸CYP 450-RHOA / RHO激酶途径积极参与胰岛素抗性诱导的高血压的发病机制。

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