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Local positive feedback by calcium in the propagation of intracellular calcium waves.

机译:钙在细胞内钙波传播中的局部正反馈。

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摘要

In many types of eukaryotic cells, the activation of surface receptors leads to the production of inositol 1,4,5-trisphosphate and calcium release from intracellular stores. Calcium release can occur in complex spatial patterns, including waves of release that traverse the cytoplasm. Fluorescence video microscopy was used to view calcium waves in single mouse neuroblastoma cells. The propagation of calcium waves was slowed by buffers that bind calcium quickly, such as BAPTA, but not by a buffer with slower on-rate, EGTA. This shows that a key feedback event in wave propagation is rapid diffusion of calcium occurring locally on a scale of < 1 micron. The length-speed product of wavefronts was used to determine that calcium acting in feedback diffuses at nearly the rate expected for free diffusion in aqueous solution. In cytoplasm, which contains immobile Ca2+ buffers, this rate of diffusion occurs only in the first 0.2 ms after release, within 0.4 micron of a Ca2+ release channel mouth. Calcium diffusion from an open channel to neighboring release sites is, therefore, a rate-determining regenerative step in calcium wave propagation. The theoretical limitations of the wave front analysis are discussed.
机译:在许多类型的真核细胞中,表面受体的活化导致肌醇1,4,5-三磷酸酯的产生和钙从细胞内储存中释放。钙的释放可以以复杂的空间模式发生,包括穿过细胞质的释放波。使用荧光显微镜观察单个小鼠神经母细胞瘤细胞中的钙波。快速结合钙的缓冲液(如BAPTA)可减缓钙波的传播,但开通速率较慢的缓冲液EGTA不会减慢钙波的传播。这表明,波传播中的关键反馈事件是钙的局部快速扩散,其发生范围小于1微米。波前的长度-速度乘积用于确定作用在反馈中的钙的扩散速度接近水溶液中自由扩散的预期速度。在含有不可移动的Ca2 +缓冲液的细胞质中,此扩散速率仅在释放后的前0.2毫秒内发生,在Ca2 +释放通道口的0.4微米之内。因此,钙从明渠扩散到邻近的释放位点是钙波传播中决定速率的再生步骤。讨论了波前分析的理论局限性。

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