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首页> 外文期刊>American Journal of Physiology >Differential expression of K(V) channel alpha- and beta-subunits in the bovine pulmonary arterial circulation.
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Differential expression of K(V) channel alpha- and beta-subunits in the bovine pulmonary arterial circulation.

机译:牛肺动脉循环中的K(V)通道α和β亚基的差异表达。

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Resistance pulmonary arteries constrict in response to hypoxia, whereas conduit pulmonary arteries typically do not respond or dilate slightly. One proposed mechanism for this differential response is the variable expression of pulmonary arterial smooth muscle cell voltage-gated K(+) (K(V)) channel subunits (Kv1.2, Kv2.1, Kv1.5, and Kv3.1b) shown to be O(2) sensitive in heterologous expression systems. In this study, immunoblotting and immunohistochemistry were used to examine the expression of K(V) channel alpha- and beta-subunits in the bovine pulmonary arterial circulation to determine whether differential K(V) channel subunit distribution is responsible for the distinct sensitivities of pulmonary arteries to hypoxia. Surprisingly, there was little difference in the expression levels of Kv1.2, Kv1.5, and Kv2.1 between conduit and resistance pulmonary arteries. In contrast, expression of the Kv3.1b alpha-subunit and Kv beta.1, Kv beta 1.2, and Kv beta 1.3 accessory subunits dramatically increased along the pulmonary arterial tree. The differential expression of all the beta-subunits but of only one of the putative O(2)-sensitive alpha-subunits suggests that the alpha-subunits alone are not the O(2) sensors but further implicates the auxiliary beta-subunits in pulmonary arterial O(2) sensing.
机译:抵抗性肺动脉在缺氧时会收缩,而导管肺动脉通常不会轻微反应或扩张。一种提出的针对这种差异反应的机制是肺动脉平滑肌细胞电压门控的K(+)(K(V))通道亚单位(Kv1.2,Kv2.1,Kv1.5和Kv3.1b)的可变表达在异源表达系统中显示为O(2)敏感。在这项研究中,免疫印迹和免疫组化被用来检查牛肺动脉循环中K(V)通道的α和β亚基的表达,以确定差异性K(V)通道亚基的分布是否对肺部的不同敏感性负责。动脉缺氧。令人惊讶的是,导管和阻力肺动脉之间Kv1.2,Kv1.5和Kv2.1的表达水平几乎没有差异。相比之下,Kv3.1bα亚基和Kv beta.1,Kv beta 1.2和Kv beta 1.3辅助亚基的表达沿肺动脉树急剧增加。所有β-亚基,但仅一个假定的O(2)敏感的α-亚基的差异表达表明,单独的α-亚基不是O(2)传感器,但进一步暗示了肺部的辅助β-亚基动脉O(2)感测。

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