García Kelly D, Shah Tanvi, García Jesús
Research Services, Edward Hines Jr. Department of Veterans Affairs Hospital, Hines 60141, Chicago, IL 60612, USA.
Am J Physiol Cell Physiol. 2004 Oct;287(4):C1048-57. doi: 10.1152/ajpcell.00004.2004. Epub 2004 Jun 16.
The precise localization and role of inositol 1,4,5-trisphosphate (InsP(3)) receptors (InsP(3)Rs) in cardiac muscle cells are largely unknown. It is believed that waves and oscillations in cytosolic free calcium triggered by activation of InsP(3)Rs underlie modifications of cellular responses that lead to changes in gene expression in other cells. However, how changes in cytosolic calcium alter gene expression in cardiac cells is unknown. Moreover, it is unclear how changes in cytosolic calcium that alter gene expression do so independently of effects of calcium on other cellular functions, such as contraction. Here we show that InsP(3)R type 2 is the only isoform present in cardiac myocytes isolated from neonatal mouse ventricles. We also show that type 2 InsP(3)Rs are associated with the nucleus and that activation of type 2 InsP(3)Rs with endothelin-1 or phenylephrine selectively increases transcription of atrial natriuretic factor and skeletal alpha-actin. Type 2 InsP(3)Rs are also in striations. Activation of InsP(3)Rs with adenophostin A in permeabilized cells induced calcium release in the nuclear domain and other regions of the cell away from the nucleus. Agonist-induced increase in gene expression and calcium release were blocked by the InsP(3)R inhibitors 2-aminoethoxydiphenyl borate and xestospongin C. The spatial separation of type 2 InsP(3)Rs provides support for the concept that microdomains of calcium discretely alter various cell processes. Our experiments suggest that calcium released by InsP(3)Rs in the nuclear domain provides a direct mechanism for the control of gene expression, whereas release of calcium in the cytoplasm may modulate other processes, such as contraction.
1,4,5-三磷酸肌醇(InsP(3))受体(InsP(3)Rs)在心肌细胞中的精确定位和作用在很大程度上尚不清楚。据信,InsP(3)Rs激活引发的胞质游离钙的波动和振荡是细胞反应修饰的基础,这些修饰会导致其他细胞中基因表达的变化。然而,胞质钙的变化如何改变心脏细胞中的基因表达尚不清楚。此外,尚不清楚改变基因表达的胞质钙变化是如何独立于钙对其他细胞功能(如收缩)的影响而发生的。在这里,我们表明2型InsP(3)R是从小鼠新生心室分离的心肌细胞中存在的唯一亚型。我们还表明,2型InsP(3)Rs与细胞核相关,并且用内皮素-1或去氧肾上腺素激活2型InsP(3)Rs会选择性增加心房钠尿肽和骨骼肌α-肌动蛋白的转录。2型InsP(3)Rs也存在于横纹中。在通透细胞中用阿糖苷A激活InsP(3)Rs会诱导钙在核区域和细胞中远离细胞核的其他区域释放。InsP(3)R抑制剂2-氨基乙氧基二苯硼酸和海绵诱钙素C可阻断激动剂诱导的基因表达增加和钙释放。2型InsP(3)Rs的空间分离为钙微区离散地改变各种细胞过程这一概念提供了支持。我们的实验表明,核区域中InsP(3)Rs释放的钙为基因表达的控制提供了直接机制,而细胞质中钙的释放可能调节其他过程,如收缩。