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Molecular determinants for cardiovascular TRPC6 channel regulation by Ca2+/calmodulin-dependent kinase II

机译:Ca2 + /钙调蛋白依赖性激酶II调控心血管TRPC6通道的分子决定因素

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The molecular mechanism underlying Ca2+/calmodulin (CaM)-dependent kinase II (CaMKII)-mediated regulation of the mouse transient receptor potential channel TRPC6 was explored by chimera, deletion and site-directed mutagenesis approaches. Induction of currents (ICCh) in TRPC6-expressing HEK293 cells by a muscarinic agonist carbachol (CCh; 100 μm) was strongly attenuated by a CaMKII-specific peptide, autocamtide-2-related inhibitory peptide (AIP; 10 μm). TRPC6/C7 chimera experiments showed that the TRPC6 C-terminal sequence is indispensable for ICCh to be sensitive to AIP-induced CaMKII inhibition. Further, deletion of a distal region (Gln855-Glu877) of the C-terminal CaM/inositol-1,4,5-trisphosphate receptor binding domain (CIRB) of TRPC6 was sufficient to abolish ICCh. Systematic alanine scanning for potential CaMKII phosphorylation sites revealed that Thr487 was solely responsible for the activation of the TRPC6 channel by receptor stimulation. The abrogating effect of the alanine mutation of Thr487 (T487A) was reproduced with other non-polar amino acids, namely glutamine or asparagine, while being partially rescued by phosphomimetic mutations with glutamate or aspartate. The cellular expression and distribution of TRPC6 channels did not significantly change with these mutations. Electrophysiological and immunocytochemical data with the Myc-tagged TRPC6 channel indicated that Thr487 is most likely located at the intracellular side of the cell membrane. Overexpression of T487A caused significant reduction of endogenous TRPC6-like current induced by Arg8-vasopressin in A7r5 aortic myocytes. Based on these results, we propose that the optimal spatial arrangement of a C-terminal domain (presumably the distal CIRB region) around a single CaMKII phosphorylation site Thr487 may be essential for CaMKII-mediated regulation of TRPC6 channels. This mechanism may be of physiological significance in a native environment such as in vascular smooth muscle cells.
机译:通过嵌合,缺失和定点诱变方法探索了Ca2 + /钙调蛋白(CaM)依赖性激酶II(CaMKII)介导的小鼠瞬时受体电位通道TRPC6调控的分子机制。毒蕈碱激动剂卡巴胆碱(CCh; 100μm)在表达TRPC6的HEK293细胞中的电流(ICCh)诱导被CaMKII特异性肽,与自身胶体2相关的抑制性肽(AIP; 10μm)大大减弱。 TRPC6 / C7嵌合体实验显示,对于PCCh对AIP诱导的CaMKII抑制敏感,TRPC6 C端序列是必不可少的。此外,TRPC6的C末端CaM /肌醇-1,4,5-三磷酸受体结合域(CIRB)的远端区域(Gln855-Glu877)的缺失足以消除ICCh。对潜在的CaMKII磷酸化位点的系统丙氨酸扫描显示,Thr487完全负责通过受体刺激激活TRPC6通道。 Thr487(T487A)的丙氨酸突变的消除作用在其他非极性氨基酸(即谷氨酰胺或天冬酰胺)中得以再现,同时通过谷氨酸或天冬氨酸的拟磷酸酶突变得以部分挽救。随着这些突变,TRPC6通道的细胞表达和分布没有明显改变。具有Myc标签的TRPC6通道的电生理和免疫细胞化学数据表明Thr487最有可能位于细胞膜的细胞内侧。 T487A的过表达导致由Arg8-加压素诱导的A7r5主动脉肌细胞内源性TRPC6样电流的显着降低。基于这些结果,我们建议围绕单个CaMKII磷酸化位点Thr487的C端结构域(大概是远端CIRB区域)的最佳空间排列对于CaMKII介导的TRPC6通道调控可能是必不可少的。该机制在天然环境例如血管平滑肌细胞中可能具有生理学意义。

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