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诺南综合征相关 SHP2 通过去磷酸化 GluN2B 调节 NMDA 受体功能。

Noonan Syndrome-Associated SHP2 Dephosphorylates GluN2B to Regulate NMDA Receptor Function.

机构信息

Interdepartmental Neuroscience Program, Yale University, New Haven, CT 06520, USA.

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520, USA.

出版信息

Cell Rep. 2018 Aug 7;24(6):1523-1535. doi: 10.1016/j.celrep.2018.07.006.

Abstract

Hyperactivating mutations in the non-receptor tyrosine phosphatase SHP2 cause Noonan syndrome (NS). NS is associated with cognitive deficits, but how hyperactivation of SHP2 in NS changes neuron function is not well understood. We find that mice bearing an NS-associated SHP2 allele (NS mice) have selectively impaired Schaffer collateral-CA1 NMDA (N-methyl-D-aspartate) receptor (NMDAR)-mediated neurotransmission and that residual NMDAR-mediated currents decay faster in NS mice because of reduced contribution of GluN1:GluN2B diheteromers. Consistent with altered GluN2B function, we identify GluN2B Y1252 as an NS-associated SHP2 substrate both in vitro and in vivo. Mutation of Y1252 does not alter recombinant GluN1:GluN2B receptor kinetics. Instead, phospho-Y1252 binds the actin-regulatory adaptor protein Nck2, and this interaction is required for proper NMDAR function. These results establish SHP2 and Nck2 as NMDAR regulatory proteins and strongly suggest that NMDAR dysfunction contributes to NS cognitive deficits.

摘要

非受体酪氨酸磷酸酶 SHP2 的超激活突变导致努南综合征 (NS)。NS 与认知缺陷有关,但 NS 中 SHP2 的过度激活如何改变神经元功能尚不清楚。我们发现,携带 NS 相关 SHP2 等位基因 (NS 小鼠) 的小鼠表现出沙尔夫侧枝-CA1 NMDA (N-甲基-D-天冬氨酸) 受体 (NMDAR) 介导的神经传递选择性受损,并且由于 GluN1:GluN2B 二聚体的贡献减少,NS 小鼠中残留的 NMDAR 介导的电流衰减更快。与改变的 GluN2B 功能一致,我们在体外和体内都确定了 GluN2B Y1252 是与 NS 相关的 SHP2 底物。Y1252 的突变不会改变重组 GluN1:GluN2B 受体动力学。相反,磷酸化的 Y1252 与肌动蛋白调节衔接蛋白 Nck2 结合,这种相互作用是 NMDAR 功能所必需的。这些结果确立了 SHP2 和 Nck2 作为 NMDAR 调节蛋白,并强烈表明 NMDAR 功能障碍导致 NS 认知缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48ba/6234505/e08fff76dffa/nihms-992173-f0002.jpg

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