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From contraction to gene expression: nanojunctions of the sarco/endoplasmic reticulum deliver site- and function-specific calcium signals

机译:从收缩到基因表达:肌节/内质网的纳米结传递特定位置和功能的钙信号

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Calcium signals determine, for example, smooth muscle contraction and changes in gene expression. How calcium signals select for these processes is enigmatic. We build on the “panjunctional sarcoplasmic reticulum” hypothesis, describing our view that different calcium pumps and release channels, with different kinetics and affinities for calcium, are strategically positioned within nanojunctions of the SR and help demarcate their respective cytoplasmic nanodomains. SERCA2b and RyR1 are preferentially targeted to the sarcoplasmic reticulum (SR) proximal to the plasma membrane (PM), i.e., to the superficial buffer barrier formed by PM-SR nanojunctions, and support vasodilation. In marked contrast, SERCA2a may be entirely restricted to the deep, perinuclear SR and may supply calcium to this sub-compartment in support of vasoconstriction. RyR3 is also preferentially targeted to the perinuclear SR, where its clusters associate with lysosome-SR nanojunctions. The distribution of RyR2 is more widespread and extends from this region to the wider cell. Therefore, perinuclear RyR3s most likely support the initiation of global calcium waves at L-SR junctions, which subsequently propagate by calcium-induced calcium release via RyR2 in order to elicit contraction. Data also suggest that unique SERCA and RyR are preferentially targeted to invaginations of the nuclear membrane. Site- and function-specific calcium signals may thus arise to modulate stimulus-response coupling and transcriptional cascades.
机译:钙信号决定了例如平滑肌的收缩和基因表达的变化。钙信号如何选择这些过程是个谜。我们基于“泛结肌质网”假说,描述了我们的观点,即具有不同动力学和亲和力的钙的不同钙泵和释放通道被战略性地定位在SR的纳米结内,并有助于划定它们各自的胞质纳米域。 SERCA2b和RyR1优先靶向质膜(PM)附近的肌浆网(SR),即PM-SR纳米结形成的表面缓冲屏障,并支持血管舒张。与之形成鲜明对比的是,SERCA2a可能完全局限于深部核周SR,并可能向该小室供应钙以支持血管收缩。 RyR3还优先靶向核周SR,其中其簇与溶酶体SR纳米结缔合。 RyR2的分布更广泛,并从该区域延伸到更宽的细胞。因此,核周RyR3最有可能支持在L-SR交界处的整体钙波的引发,随后通过RyR2引起的钙诱导的钙释放而传播,从而引起收缩。数据还表明,独特的SERCA和RyR优先靶向核膜的内陷。因此,可能会出现位点和功能特定的钙信号,以调节刺激反应耦合和转录级联反应。

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