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抽动秽语综合征风险基因调节线粒体动力学、结构和功能。

Tourette Syndrome Risk Genes Regulate Mitochondrial Dynamics, Structure, and Function.

作者信息

Clarke Raymond A, Furlong Teri M, Eapen Valsamma

机构信息

School of Psychiatry, University of New South Wales, Sydney, NSW, Australia.

Ingham Institute for Applied Medical Research, Liverpool, NSW, Australia.

出版信息

Front Psychiatry. 2021 Mar 10;11:556803. doi: 10.3389/fpsyt.2020.556803. eCollection 2020.

Abstract

Gilles de la Tourette syndrome (GTS) is a neurodevelopmental disorder characterized by motor and vocal tics with an estimated prevalence of 1% in children and adolescents. GTS has high rates of inheritance with many rare mutations identified. Apart from the role of the neurexin trans-synaptic connexus (NTSC) little has been confirmed regarding the molecular basis of GTS. The NTSC pathway regulates neuronal circuitry development, synaptic connectivity and neurotransmission. In this study we integrate GTS mutations into mitochondrial pathways that also regulate neuronal circuitry development, synaptic connectivity and neurotransmission. Many deleterious mutations in GTS occur in genes with complementary and consecutive roles in mitochondrial dynamics, structure and function (MDSF) pathways. These genes include those involved in mitochondrial transport (), mitochondrial fusion (), fission (), mitochondrial metabolic and bio-energetic optimization (). This study is the first to develop and describe an integrated mitochondrial pathway in the pathogenesis of GTS. The evidence from this study and our earlier modeling of GTS molecular pathways provides compounding support for a GTS deficit in mitochondrial supply affecting neurotransmission.

摘要

抽动秽语综合征(GTS)是一种神经发育障碍,其特征为运动和发声抽动,在儿童和青少年中的估计患病率为1%。GTS具有较高的遗传率,已发现许多罕见突变。除了神经连接蛋白跨突触连接(NTSC)的作用外,关于GTS的分子基础几乎没有得到证实。NTSC途径调节神经元回路发育、突触连接和神经传递。在本研究中,我们将GTS突变整合到同样调节神经元回路发育、突触连接和神经传递的线粒体途径中。GTS中的许多有害突变发生在在线粒体动力学、结构和功能(MDSF)途径中具有互补和连续作用的基因中。这些基因包括参与线粒体运输()、线粒体融合()、裂变()、线粒体代谢和生物能量优化()的基因。本研究首次在GTS的发病机制中开发并描述了一条整合的线粒体途径。本研究的证据以及我们早期对GTS分子途径的建模为影响神经传递的线粒体供应不足导致GTS提供了综合支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e25/7987655/275290137039/fpsyt-11-556803-g0001.jpg

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