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首页> 外文期刊>PLoS Computational Biology >An Exclusion Zone for Ca2+ Channels around Docked Vesicles Explains Release Control by Multiple Channels at a CNS Synapse
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An Exclusion Zone for Ca2+ Channels around Docked Vesicles Explains Release Control by Multiple Channels at a CNS Synapse

机译:停泊小泡周围Ca2 +通道的禁区解释了CNS突触处多个通道的释放控制。

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The spatial arrangement of Ca2+ channels and vesicles remains unknown for most CNS synapses, despite of the crucial importance of this geometrical parameter for the Ca2+ control of transmitter release. At a large model synapse, the calyx of Held, transmitter release is controlled by several Ca2+ channels in a "domain overlap" mode, at least in young animals. To study the geometrical constraints of Ca2+ channel placement in domain overlap control of release, we used stochastic MCell modelling, at active zones for which the position of docked vesicles was derived from electron microscopy (EM). We found that random placement of Ca2+ channels was unable to produce high slope values between release and presynaptic Ca2+ entry, a hallmark of domain overlap, and yielded excessively large release probabilities. The simple assumption that Ca2+ channels can be located anywhere at active zones, except below a critical distance of ~ 30 nm away from docked vesicles ("exclusion zone"), rescued high slope values and low release probabilities. Alternatively, high slope values can also be obtained by placing all Ca2+ channels into a single supercluster, which however results in significantly higher heterogeneity of release probabilities. We also show experimentally that high slope values, and the sensitivity to the slow Ca2+ chelator EGTA-AM, are maintained with developmental maturation of the calyx synapse. Taken together, domain overlap control of release represents a highly organized active zone architecture in which Ca2+ channels must obey a certain distance to docked vesicles. Furthermore, domain overlap can be employed by near-mature, fast-releasing synapses.
机译:对于大多数中枢神经系统突触,Ca2 +通道和囊泡的空间排列仍然未知,尽管此几何参数对于Ca2 +调节释放的释放至关重要。在大型模型突触中,至少在年幼动物中,以“域重叠”模式通过多个Ca2 +通道控制Held递质释放的花萼。为了研究Ca 2+通道在释放的域重叠控制中的几何约束,我们使用了随机MCell建模,在活动区域​​中,对接囊泡的位置是从电子显微镜(EM)得出的。我们发现,Ca2 +通道的随机放置无法在释放和突触前Ca2 +进入之间产生高斜率值,这是域重叠的标志,并且产生过大的释放概率。一个简单的假设,即Ca2 +通道可以位于活动区域的任何位置,但距停靠的小泡(“排除区域”)约30 nm的临界距离以下,可以挽救高斜率值和低释放概率。或者,也可以通过将所有Ca2 +通道放入单个超簇来获得高斜率值,但是这会导致释放概率的异质性大大提高。我们还通过实验表明,随着花萼突触的发育成熟,可以保持较高的斜率值以及对慢速Ca2 +螯合剂EGTA-AM的敏感性。总之,释放的域重叠控制代表了高度组织的活性区体系结构,其中Ca2 +通道必须遵守与对接囊泡的一定距离。此外,接近成熟的快速释放突触可采用域重叠。

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