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球囊毛细胞中的空间钙缓冲

Spatial calcium buffering in saccular hair cells.

作者信息

Roberts W M

机构信息

Institute of Neuroscience, University of Oregon, Eugene 97403.

出版信息

Nature. 1993 May 6;363(6424):74-6. doi: 10.1038/363074a0.

Abstract

The potential importance of intracellular calcium-binding proteins in rapid and highly localized Ca2+ signalling is poorly understood. During fast synaptic transmission, which occurs at specialized active zones where Ca2+ diffuses only a few tens of nanometers from channels to neurotransmitter release sites, a cytoplasmic Ca2+ buffer would have to be extremely fast or present in millimolar concentrations to intercept a significant fraction of the calcium ions en route to their targets. Therefore, Ca2+ buffers have been presumed to be unimportant in fast exocytosis and another fast calcium-mediated process, electrical resonance in hair cells. Here I present evidence to the contrary by showing that hair cells in the frog sacculus contain millimolar concentrations of a mobile cytoplasmic calcium buffer that captures Ca2+ within a few microseconds after it enters through presynaptic Ca2+ channels and carries it away from the point of entry. This spatial buffering reduces the presynaptic free Ca2+ by up to 60 per cent and probably restricts the region in which the internal calcium ion concentration exceeds 1 microM to within < 250 nm of each synaptic site. The buffer can thus influence both electrical resonance and synaptic transmission. Calbindin-D28K or a related protein may serve as the mobile calcium buffer, an action similar to its function in transporting Ca2+ across intestinal epithelial cells.

摘要

细胞内钙结合蛋白在快速且高度局部化的Ca2+信号传导中的潜在重要性目前还知之甚少。在快速突触传递过程中,这一过程发生在特定的活性区域,Ca2+从通道扩散到神经递质释放位点的距离仅为几十纳米,一种细胞质Ca2+缓冲剂必须极其快速,或者以毫摩尔浓度存在,才能在钙离子到达其靶点的途中拦截相当一部分钙离子。因此,Ca2+缓冲剂被认为在快速胞吐作用以及另一种快速钙介导的过程——毛细胞中的电共振中并不重要。在这里,我提出了相反的证据,表明青蛙球囊中的毛细胞含有毫摩尔浓度的可移动细胞质钙缓冲剂,它在Ca2+通过突触前Ca2+通道进入后几微秒内捕获Ca2+,并将其带离进入点。这种空间缓冲可使突触前游离Ca2+减少多达60%,并可能将内部钙离子浓度超过1 microM的区域限制在每个突触位点<250 nm的范围内。因此,这种缓冲剂可以影响电共振和突触传递。钙结合蛋白-D28K或一种相关蛋白可能作为可移动钙缓冲剂,其作用类似于它在将Ca2+转运穿过肠上皮细胞中的功能。

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