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X 连锁智力障碍相关突触素突变破坏突触融合素 II 的回收。

X-linked intellectual disability-associated mutations in synaptophysin disrupt synaptobrevin II retrieval.

机构信息

Centre for Integrative Physiology, George Square, University of Edinburgh, Edinburgh, UK.

出版信息

J Neurosci. 2013 Aug 21;33(34):13695-700. doi: 10.1523/JNEUROSCI.0636-13.2013.

Abstract

Synaptophysin is an integral synaptic vesicle (SV) protein that accounts for ∼10% of total SV protein cargo. Deletion of synaptophysin results in the defective retrieval of synaptobrevin II (sybII) from the plasma membrane during endocytosis, coupled with a slowing in the speed of endocytosis. Synaptophysin has been implicated in X-linked intellectual disability, with a recent study identifying four separate synaptophysin gene mutations in families affected by the disorder. To determine how these mutations may affect synaptophysin function, we expressed them in cultured neurons derived from synaptophysin knock-out mice. Two distinct truncating mutants were mislocalized throughout the axon and phenocopied the arrest of sybII retrieval in synaptophysin knock-out cultures. The remaining two mutants displayed a nerve terminal localization but did not support efficient sybII retrieval. Interestingly, one mutant fully rescued SV endocytosis kinetics, suggesting that sybII retrieval and endocytosis speed are independent from each other. These studies suggest that the efficient retrieval of sybII by synaptophysin may be key to maintaining synaptic health and perturbation of this event may contribute to the pathogenesis underlying neurodevelopmental disorders such as X-linked intellectual disability.

摘要

突触素是一种完整的突触小泡(SV)蛋白,占总 SV 蛋白货物的约 10%。突触素的缺失导致内吞作用过程中突触融合素 II(sybII)从质膜上的缺陷性回收,同时内吞作用的速度也会减慢。突触素与 X 连锁智力障碍有关,最近的一项研究在受该疾病影响的家族中发现了四个单独的突触素基因突变。为了确定这些突变如何影响突触素的功能,我们在来自突触素敲除小鼠的培养神经元中表达了它们。两种不同的截断突变体在整个轴突中错位,并且模拟了突触素敲除培养物中 sybII 回收的阻滞。其余两个突变体显示出神经末梢定位,但不支持 sybII 的有效回收。有趣的是,一个突变体完全挽救了 SV 内吞动力学,表明 sybII 的回收和内吞作用速度彼此独立。这些研究表明,突触素有效回收 sybII 可能是维持突触健康的关键,而这种事件的破坏可能导致神经发育障碍(如 X 连锁智力障碍)的发病机制。

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