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SorCS2介导的NR2A转运调节亨廷顿舞蹈病中的运动功能障碍。

SorCS2-mediated NR2A trafficking regulates motor deficits in Huntington's disease.

作者信息

Ma Qian, Yang Jianmin, Milner Teresa A, Vonsattel Jean-Paul G, Palko Mary Ellen, Tessarollo Lino, Hempstead Barbara L

机构信息

Graduate Program of Neuroscience.

Department of Medicine, Weill Cornell Medicine, New York, New York, USA.

出版信息

JCI Insight. 2017 May 4;2(9). doi: 10.1172/jci.insight.88995.

Abstract

Motor dysfunction is a prominent and disabling feature of Huntington's disease (HD), but the molecular mechanisms that dictate its onset and progression are unknown. The N-methyl-D-aspartate receptor 2A (NR2A) subunit regulates motor skill development and synaptic plasticity in medium spiny neurons (MSNs) of the striatum, cells that are most severely impacted by HD. Here, we document reduced NR2A receptor subunits on the dendritic membranes and at the synapses of MSNs in zQ175 mice that model HD. We identify that SorCS2, a vacuolar protein sorting 10 protein-domain (VPS10P-domain) receptor, interacts with VPS35, a core component of retromer, thereby regulating surface trafficking of NR2A in MSNs. In the zQ175 striatum, SorCS2 is markedly decreased in an age- and allele-dependent manner. Notably, SorCS2 selectively interacts with mutant huntingtin (mtHTT), but not WT huntingtin (wtHTT), and is mislocalized to perinuclear clusters in striatal neurons of human HD patients and zQ175 mice. Genetic deficiency of SorCS2 accelerates the onset and exacerbates the motor coordination deficit of zQ175 mice. Together, our results identify SorCS2 as an interacting protein of mtHTT and demonstrate that impaired SorCS2-mediated NR2A subunit trafficking to dendritic surface of MSNs is, to our knowledge, a novel mechanism contributing to motor coordination deficits of HD.

摘要

运动功能障碍是亨廷顿舞蹈病(HD)的一个突出且致残的特征,但其发病和进展的分子机制尚不清楚。N-甲基-D-天冬氨酸受体2A(NR2A)亚基调节纹状体中等棘状神经元(MSN)的运动技能发育和突触可塑性,而MSN是受HD影响最严重的细胞。在此,我们记录了模拟HD的zQ175小鼠MSN树突膜和突触处NR2A受体亚基的减少。我们发现,液泡蛋白分选10蛋白结构域(VPS10P结构域)受体SorCS2与逆向转运蛋白核心成分VPS35相互作用,从而调节MSN中NR2A的表面运输。在zQ175纹状体中,SorCS2以年龄和等位基因依赖的方式显著减少。值得注意的是,SorCS2选择性地与突变型亨廷顿蛋白(mtHTT)相互作用,而不与野生型亨廷顿蛋白(wtHTT)相互作用,并且在人类HD患者和zQ175小鼠的纹状体神经元中定位错误至核周簇。SorCS2的基因缺陷加速了zQ175小鼠的发病并加剧了其运动协调缺陷。总之,我们的结果确定SorCS2为mtHTT的相互作用蛋白,并证明据我们所知,SorCS2介导的NR2A亚基向MSN树突表面的运输受损是导致HD运动协调缺陷的一种新机制。

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