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肾血管性高血压大鼠心室中Kv4.2及新型Kv4.3钾通道亚基mRNA表达降低。

Decreased expression of Kv4.2 and novel Kv4.3 K+ channel subunit mRNAs in ventricles of renovascular hypertensive rats.

作者信息

Takimoto K, Li D, Hershman K M, Li P, Jackson E K, Levitan E S

机构信息

Department of Pharmacology, University of Pittsburgh (Pa), USA.

出版信息

Circ Res. 1997 Oct;81(4):533-9. doi: 10.1161/01.res.81.4.533.

DOI:10.1161/01.res.81.4.533
PMID:9314834
Abstract

Hypertension-induced cardiac hypertrophy is associated with alterations in ventricular action potentials. To understand molecular mechanisms underlying this electrical abnormality, expression of cardiac voltage-gated K+ channel subunit genes was examined in ventricles of renovascular hypertensive rats. While generating a rat Kv4.3 probe, we discovered a previously unreported 19-amino acid insertion in the C-terminal intracellular region of the channel subunit. RNase protection assays indicated that this novel isoform is predominant in rat lung and heart. Effects of renovascular hypertension were then determined by using renal artery clipping models: two-kidney, one clip (2K-1C) rats, a model of high-renin hypertension with a normal plasma volume, and one-kidney, one clip (1K-1C) rats, a model of normal renin with a raised plasma volume. Expression of Kv4.2 and Kv4.3 mRNAs was diminished by > 50% in ventricles of 2K-1C rats; however, no changes in the expression of Kv1.2, Kv1.4, Kv1.5, Kv2.1, or KvLQT1 mRNAs were detected. Similar downregulation of Kv4.2 and Kv4.3 mRNAs was detected in 1K-1C rats. Chronic administration of captopril, an angiotensin-converting enzyme inhibitor, blocked the development of hypertension and the suppression of Kv4 subfamily channel mRNA expression in 2K-1C rats. Furthermore, captopril administration to sham-operated rats significantly increased Kv4.2 mRNA. These results indicate that renovascular hypertension causes specific reductions in Kv4 subfamily channel mRNA expression and that this effect is likely to be mediated primarily by an increase in cardiac afterload.

摘要

高血压所致的心脏肥大与心室动作电位的改变有关。为了解这种电异常背后的分子机制,我们检测了肾血管性高血压大鼠心室中心脏电压门控钾通道亚基基因的表达。在制备大鼠Kv4.3探针时,我们在该通道亚基的C末端胞内区域发现了一个此前未报道的19个氨基酸的插入片段。核糖核酸酶保护试验表明,这种新的亚型在大鼠肺和心脏中占主导地位。然后,我们利用肾动脉夹闭模型来确定肾血管性高血压的影响:双肾单夹(2K-1C)大鼠,一种血浆容量正常的高肾素性高血压模型;单肾单夹(1K-1C)大鼠,一种血浆容量升高的正常肾素模型。在2K-1C大鼠的心室中,Kv4.2和Kv4.3 mRNA的表达减少了50%以上;然而,未检测到Kv1.2、Kv1.4、Kv1.5、Kv2.1或KvLQT1 mRNA的表达有变化。在1K-1C大鼠中也检测到了Kv4.2和Kv4.3 mRNA的类似下调。长期给予血管紧张素转换酶抑制剂卡托普利可阻止2K-1C大鼠高血压的发展以及Kv4亚家族通道mRNA表达的抑制。此外,对假手术大鼠给予卡托普利可显著增加Kv4.2 mRNA。这些结果表明,肾血管性高血压导致Kv4亚家族通道mRNA表达特异性降低,且这种效应可能主要由心脏后负荷增加介导。

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