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促肾上腺皮质激素诱导的高血压依赖于α2-钠钾-ATP酶亚基的哇巴因结合位点。

ACTH-induced hypertension is dependent on the ouabain-binding site of the alpha2-Na+-K+-ATPase subunit.

作者信息

Lorenz John N, Loreaux Elizabeth L, Dostanic-Larson Iva, Lasko Valerie, Schnetzer J Renee, Paul Richard J, Lingrel Jerry B

机构信息

Dept. of Molecular and Cellular Physiology, Univ. of Cincinnati College of Medicine, Cincinnati, OH 45267-0576, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2008 Jul;295(1):H273-80. doi: 10.1152/ajpheart.00183.2008. Epub 2008 May 16.

Abstract

ACTH-induced-hypertension is commonly employed as a model of stress-related hypertension, and despite extensive investigation, the mechanisms underlying elevated blood pressure (BP) are not well understood. We have reported that ACTH treatment increases tail-cuff systolic pressure in wild-type mice but not in mutant mice expressing ouabain-resistant alpha(2)-Na(+)-K(+)-ATPase subunits (alpha2(R/R) mice). Since tail-cuff measurements involve restraint stress, the present study used telemetry to distinguish between an effect of ACTH on resting BP vs. an ACTH-enhanced stress response. We also sought to explore the mechanisms underlying ACTH-induced BP changes in mutant alpha2(R/R) mice vs. wild-type mice (ouabain-sensitive alpha(2)-Na(+)-K(+)-ATPase, alpha2(S/S) mice). Baseline BP was not different between the two genotypes, but after 5 days of ACTH treatment, BP increased in alpha2(S/S) (104.0 +/- 2.6 to 117.7 +/- 3.0 mmHg) but not in alpha2(R/R) mice (108.2 +/- 3.2 to 111.5 +/- 4.0 mmHg). To test the hypothesis that ACTH hypertension is related to inhibition of alpha(2)-Na(+)-K(+)-ATPase on vascular smooth muscle by endogenous cardiotonic steroids, we measured BP and regional blood flow. Results suggest a differential sensitivity of renal, mesenteric, and cerebral circulations to ACTH and that the response depends on the ouabain sensitivity of the alpha(2)-Na(+)-K(+)-ATPase. Baseline cardiac performance was elevated in alpha2(S/S) but not alpha2(R/R) mice. Overall, the data establish that the alpha(2)-Na(+)-K(+)-ATPase ouabain-binding site is of central importance in the development of ACTH-induced hypertension. The mechanism appears to be related to alterations in cardiac performance, and perhaps vascular tone in specific circulations, presumably caused by elevated levels of circulating cardiotonic steroids.

摘要

促肾上腺皮质激素(ACTH)诱导的高血压通常被用作应激相关高血压的模型,尽管进行了广泛研究,但血压升高背后的机制仍未完全清楚。我们曾报道,ACTH处理可使野生型小鼠的尾套收缩压升高,但对表达哇巴因抗性α(2)-钠钾ATP酶亚基的突变小鼠(α2(R/R)小鼠)则无此作用。由于尾套测量涉及束缚应激,本研究使用遥测技术来区分ACTH对静息血压的影响与ACTH增强的应激反应。我们还试图探究突变型α2(R/R)小鼠与野生型小鼠(哇巴因敏感的α(2)-钠钾ATP酶,α2(S/S)小鼠)中ACTH诱导血压变化的潜在机制。两种基因型的基线血压无差异,但ACTH处理5天后,α2(S/S)小鼠的血压升高(从104.0±2.6 mmHg升至117.7±3.0 mmHg),而α2(R/R)小鼠的血压未升高(从108.2±3.2 mmHg升至111.5±4.0 mmHg)。为了验证ACTH高血压与内源性强心甾体对血管平滑肌上α(2)-钠钾ATP酶的抑制作用有关这一假说,我们测量了血压和局部血流。结果表明,肾、肠系膜和脑循环对ACTH的敏感性存在差异,且该反应取决于α(2)-钠钾ATP酶的哇巴因敏感性。α2(S/S)小鼠的基线心脏功能升高,但α2(R/R)小鼠未升高。总体而言,数据表明α(2)-钠钾ATP酶的哇巴因结合位点在ACTH诱导的高血压发展中至关重要。其机制似乎与心脏功能改变有关,或许还与特定循环中的血管张力改变有关,推测是由循环强心甾体水平升高所致。

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