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本文引用的文献

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Human Neuropsychiatric Disease Modeling using Conditional Deletion Reveals Synaptic Transmission Defects Caused by Heterozygous Mutations in NRXN1.利用条件性基因敲除进行人类神经精神疾病建模揭示了由NRXN1杂合突变引起的突触传递缺陷。
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Your brain under the microscope: the promise of stem cells.显微镜下的大脑:干细胞的前景。
Cerebrum. 2014 Jan 1;2014:1. eCollection 2014 Jan.
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Phenotypic differences in hiPSC NPCs derived from patients with schizophrenia.来自精神分裂症患者的人诱导多能干细胞神经前体细胞的表型差异。
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5
Munc18-1 haploinsufficiency results in enhanced anxiety-like behavior as determined by heart rate responses in mice.如通过小鼠心率反应所确定的,Munc18 - 1单倍剂量不足会导致类似焦虑的行为增强。
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Isogenic human iPSC Parkinson's model shows nitrosative stress-induced dysfunction in MEF2-PGC1α transcription.同基因人诱导多能干细胞帕金森病模型显示 MEF2-PGC1α 转录的硝化应激诱导功能障碍。
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SHANK3 and IGF1 restore synaptic deficits in neurons from 22q13 deletion syndrome patients.SHANK3 和 IGF1 可恢复 22q13 缺失综合征患者神经元中的突触缺陷。
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8
Lipid-anchored SNAREs lacking transmembrane regions fully support membrane fusion during neurotransmitter release.缺乏跨膜区域的脂质锚定 SNARE 完全支持神经递质释放过程中的膜融合。
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Parkinson's disease in a dish - Using stem cells as a molecular tool.在培养皿中研究帕金森病——以干细胞为分子工具。
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人类神经元中条件性杂合STXBP1突变的分析。

Analysis of conditional heterozygous STXBP1 mutations in human neurons.

作者信息

Patzke Christopher, Han Yan, Covy Jason, Yi Fei, Maxeiner Stephan, Wernig Marius, Südhof Thomas C

出版信息

J Clin Invest. 2015 Sep;125(9):3560-71. doi: 10.1172/JCI78612. Epub 2015 Aug 17.

DOI:10.1172/JCI78612
PMID:26280581
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4588304/
Abstract

Heterozygous mutations in the syntaxin-binding protein 1 (STXBP1) gene, which encodes Munc18-1, a core component of the presynaptic membrane-fusion machinery, cause infantile early epileptic encephalopathy (Ohtahara syndrome), but it is unclear how a partial loss of Munc18-1 produces this severe clinical presentation. Here, we generated human ES cells designed to conditionally express heterozygous and homozygous STXBP1 loss-of-function mutations and studied isogenic WT and STXBP1-mutant human neurons derived from these conditionally mutant ES cells. We demonstrated that heterozygous STXBP1 mutations lower the levels of Munc18-1 protein and its binding partner, the t-SNARE-protein Syntaxin-1, by approximately 30% and decrease spontaneous and evoked neurotransmitter release by nearly 50%. Thus, our results confirm that using engineered human embryonic stem (ES) cells is a viable approach to studying disease-associated mutations in human neurons on a controlled genetic background, demonstrate that partial STXBP1 loss of function robustly impairs neurotransmitter release in human neurons, and suggest that heterozygous STXBP1 mutations cause early epileptic encephalopathy specifically through a presynaptic impairment.

摘要

Syntaxin结合蛋白1(STXBP1)基因的杂合突变可导致婴儿早期癫痫性脑病(大田原综合征),该基因编码突触前膜融合机制的核心成分Munc18-1,但尚不清楚Munc18-1的部分缺失如何产生这种严重的临床表现。在此,我们构建了可条件性表达杂合和纯合STXBP1功能缺失突变的人胚胎干细胞,并研究了源自这些条件性突变胚胎干细胞的同基因野生型和STXBP1突变型人类神经元。我们证明,杂合STXBP1突变使Munc18-1蛋白及其结合伴侣t-SNARE蛋白Syntaxin-1的水平降低约30%,并使自发和诱发的神经递质释放减少近50%。因此,我们的结果证实,利用工程化人类胚胎干细胞是在可控遗传背景下研究人类神经元中疾病相关突变的可行方法,表明STXBP1功能的部分丧失会强烈损害人类神经元中的神经递质释放,并提示杂合STXBP1突变通过突触前损伤特异性地导致早期癫痫性脑病。