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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Regulation of GAP43/calmodulin complex formation via calcineurin-dependent mechanism in differentiated PC12 cells with altered PMCA isoforms composition
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Regulation of GAP43/calmodulin complex formation via calcineurin-dependent mechanism in differentiated PC12 cells with altered PMCA isoforms composition

机译:通过钙调神经磷酸酶依赖性机制调节具有改变的PMCA亚型组成的PC12细胞中GAP43 /钙调蛋白复合物的形成

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Several lines of evidence suggest the contribution of age-related decline in plasma membrane calcium pump (PMCA) to the onset of neurodegenerative diseases. From four PMCA isoforms, PMCA2, and PMCA3 respond to a rapid removal of Ca2+ and are expressed predominantly in excitable cells. We have previously shown that suppression of neuron-specific PMCAs in differentiated PC12 cells accelerated cell differentiation, but increased apoptosis in PMCA2-deficient line. We also demonstrated that altered expression of voltage-dependent calcium channels correlated with their higher contribution to Ca2+ influx, which varied between PMCA-reduced lines. Here, we propose a mechanism unique for differentiated PC12 cells by which PMCA2 and PMCA3 regulate pGAP43/GAP43 ratio and the interaction between GAP43 and calmodulin (CaM). Although down-regulation of PMCA2 or PMCA3 altered the content of GAP43/pGAP43, of paramount importance for the regulatory mechanism is a disruption of isoform-specific inhibitory PMCA/calcineurin interaction. In result, higher endogenous calcineurin (CaN) activity leads to hypophosphorylation of GAP43 in PMCA2- or PMCA3-deficient lines and intensification of GAP43/CaM complex formation, thus potentially limiting the availability of free CaM. In overall, our results indicate that both "fast" PMCA isoforms could actively regulate the local CaN function and CaN-downstream processes. In connection with our previous observations, we also suggest a negative feedback of cooperative action of CaM, GAP43, and CaN on P/Q and L-type channels activity. PMCAs- and CaN-dependent mechanism presented here, may signify a protective action against calcium overload in neuronal cells during aging, as well a potential way for decreasing neuronal cells vulnerability to neurodegenerative insults.
机译:有几条证据表明,与年龄相关的质膜钙泵(PMCA)下降对神经退行性疾病的发作有贡献。从四个PMCA亚型中,PMCA2和PMCA3响应Ca2 +的快速去除,并主要在可兴奋细胞中表达。我们以前已经表明,在分化的PC12细胞中抑制神经元特异性PMCA可以加速细胞分化,但是在PMCA2缺陷型细胞中会增加细胞凋亡。我们还证明,电压依赖性钙通道的表达改变与它们对Ca2 +内流的更高贡献相关,在PMCA还原系之间有所不同。在这里,我们提出了一种针对分化的PC12细胞的独特机制,通过该机制,PMCA2和PMCA3调节pGAP43 / GAP43比率以及GAP43和钙调蛋白(CaM)之间的相互作用。尽管PMCA2或PMCA3的下调改变了GAP43 / pGAP43的含量,但对于调节机制而言,最重要的是破坏同工型特异性抑制PMCA /钙调神经磷酸酶的相互作用。结果,较高的内源性钙调神经磷酸酶(CaN)活性导致PMCA2或PMCA3缺陷株系中GAP43的磷酸化不足和GAP43 / CaM复合物形成的增强,从而潜在地限制了游离CaM的可用性。总体而言,我们的结果表明,两种“快速” PMCA亚型都可以积极调节局部CaN功能和CaN下游过程。结合我们之前的观察,我们还建议CaM,GAP43和CaN对P / Q和L型通道活性的协同作用产生负反馈。此处介绍的PMCAs和CaN依赖性机制可能表示针对衰老过程中神经元细胞中钙超载的保护作用,以及降低神经元细胞对神经退行性损伤的脆弱性的潜在途径。

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