Brenner R, Peréz G J, Bonev A D, Eckman D M, Kosek J C, Wiler S W, Patterson A J, Nelson M T, Aldrich R W
Department of Molecular and Cellular Physiology and Howard Hughes Medical Institute, Stanford University, California 94305, USA.
Nature. 2000 Oct 19;407(6806):870-6. doi: 10.1038/35038011.
Small arteries exhibit tone, a partially contracted state that is an important determinant of blood pressure. In arterial smooth muscle cells, intracellular calcium paradoxically controls both contraction and relaxation. The mechanisms by which calcium can differentially regulate diverse physiological responses within a single cell remain unresolved. Calcium-dependent relaxation is mediated by local calcium release from the sarcoplasmic reticulum. These 'calcium sparks' activate calcium-dependent potassium (BK) channels comprised of alpha and beta1 subunits. Here we show that targeted deletion of the gene for the beta1 subunit leads to a decrease in the calcium sensitivity of BK channels, a reduction in functional coupling of calcium sparks to BK channel activation, and increases in arterial tone and blood pressure. The beta1 subunit of the BK channel, by tuning the channel's calcium sensitivity, is a key molecular component in translating calcium signals to the central physiological function of vasoregulation.
小动脉具有张力,即一种部分收缩状态,它是血压的一个重要决定因素。在动脉平滑肌细胞中,细胞内钙反常地控制着收缩和舒张。钙在单个细胞内如何差异性调节多种生理反应的机制仍未得到解决。钙依赖性舒张由肌浆网的局部钙释放介导。这些“钙火花”激活由α和β1亚基组成的钙依赖性钾(BK)通道。在这里,我们表明β1亚基基因的靶向缺失导致BK通道的钙敏感性降低、钙火花与BK通道激活的功能偶联减少,以及动脉张力和血压升高。BK通道的β1亚基通过调节通道的钙敏感性,是将钙信号转化为血管调节中心生理功能的关键分子成分。