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A model for molecular mechanisms of synaptic competition for a finite resource

机译:有限资源的突触竞争分子机制模型

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摘要

Ca2 + /calmodulin-dependent protein kinase II (CaMKII) undergoes Ca2 + /calmodulin-dependent autophosphorylation of threonine-286/287 (Thr(286/287)). Extremely high concentration of CaMKII in the postsynaptic spine indicates that increase in the Ca2 + concentration in the spine induced by synaptic activation results in Thr(286/287) autophosphorylation of this enzyme. It has recently been shown that the K-d value of CaMKII for Ca2 + /calmodulin (Ca2 + /CaM) drastically decreases after Thr(286/287) autophosphorylation. Therefore, Ca2 + /CaM associated with CaMKII becomes tightly bound to this kinase after Thr(286/287) autophospholylation. This has been called 'Ca2 + /CaM trapping'. We discussed the functional significance of Ca2 + /CaM trapping in the neuronal system by a mathematical-modelling approach. We considered neighbouring synapses formed on the same dendrite and different increase in the Ca-2 (+) concentration in each spine. CaMKII undergoing Thr(286/287) autophosphorylation in each spine is eager to recruit nearby calmodulin in the dendrite for Ca2 + /CaM trapping. Since the amount of calmodulin is limited. recruiting calmodulin to each spine causes competition among synapses for this finite resource. The results of our computer simulation show that this competition leads to 'winner-take-all': almost all calmodulin is taken by a few synapses to which relatively large increases in the Ca2 + concentration are assigned. These results suggest a novel form of synaptic encoding of information. (C) 2000 Elsevier Science Ireland Ltd. All rights reserved. [References: 16]
机译:Ca2 + /钙调蛋白依赖性蛋白激酶II(CaMKII)经历苏氨酸286/287(Thr(286/287))的Ca2 + /钙调蛋白依赖性自磷酸化。突触后脊柱中CaMKII的极高浓度表明,由突触激活引起的脊柱中Ca2 +浓度增加导致该酶的Thr(286/287)自磷酸化。最近显示,Thr(286/287)自磷酸化后,CaMKII对Ca2 + /钙调蛋白(Ca2 + / CaM)的K-d值急剧下降。因此,与CaMKII相关的Ca2 + / CaM在Thr(286/287)自磷酸化后与该激酶紧密结合。这被称为“ Ca2 + / CaM捕获”。我们讨论了通过数学建模方法在神经系统中捕获Ca2 + / CaM的功能意义。我们认为相邻突触形成在相同的树突上,并且每根脊柱中的Ca-2(+)浓度增加不同。 CaMKII在每条脊柱中经历Thr(286/287)自磷酸化反应,渴望在树突中募集附近的钙调蛋白,以捕获Ca2 + / CaM。由于钙调蛋白的量是有限的。向每根脊柱募集钙调蛋白会导致这种有限资源的突触之间竞争。我们计算机模拟的结果表明,这种竞争导致“赢家通吃”:几乎所有的钙调蛋白都是由一些突触摄取的,这些突触分配了相对较大的Ca2 +浓度。这些结果表明信息的突触编码的一种新型形式。 (C)2000 Elsevier Science Ireland Ltd.保留所有权利。 [参考:16]

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