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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The phosphoinositide 3-phosphatase MTMR2 interacts with PSD-95 and maintains excitatory synapses by modulating endosomal traffic.
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The phosphoinositide 3-phosphatase MTMR2 interacts with PSD-95 and maintains excitatory synapses by modulating endosomal traffic.

机译:磷酸肌醇3-磷酸酶MTMR2与PSD-95相互作用,并通过调节内体运输来维持兴奋性突触。

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摘要

MTMR2 is a 3-phosphatase specific for the phosphoinositides PI(3)P and PI(3,5)P(2), which are mainly present on endosomes. Mutations in the MTMR2 gene in Schwann cells lead to a severe demyelinating peripheral neuropathy known as Charcot-Marie-Tooth disease type 4B1. MTMR2 expression is also detected in peripheral and central neurons, but neural functions of MTMR2 remain unclear. Here, we report that MTMR2 is localized to excitatory synapses of central neurons via direct interaction with PSD-95, a postsynaptic scaffolding protein abundant at excitatory synapses. Knockdown of MTMR2 in cultured neurons markedly reduces excitatory synapse density and function. This effect is rescued by wild-type MTMR2 but not by a mutant MTMR2 lacking PSD-95 binding or 3-phosphatase activity. MTMR2 knockdown leads to a decrease in the intensity of EEA1-positive early endosomes in dendrites but increases the intensity in the cell body region. Moreover, MTMR2 suppression promotes endocytosis, but not recycling, of the GluR2 subunit of AMPA receptors, which is an endosomal cargo. In addition, colocalization of internalized GluR2 with Lamp1-positive late endosomes/lysosomes is enhanced in the cell body area but not in dendrites. These results suggest that PSD-95-interacting MTMR2 contributes to the maintenance of excitatory synapses by inhibiting excessive endosome formation and destructive endosomal traffic to lysosomes.
机译:MTMR2是特异于磷酸肌醇PI(3)P和PI(3,5)P(2)的3-磷酸酶,它们主要存在于内体上。雪旺氏细胞中MTMR2基因的突变会导致严重的脱髓鞘性周围神经病,称为Charcot-Marie-Tooth疾病4B1型。在外周和中枢神经元中也检测到MTMR2表达,但仍不清楚MTMR2的神经功能。在这里,我们报告说MTMR2通过与PSD-95(在兴奋性突触处丰富的突触后支架蛋白)的直接相互作用而定位于中枢神经元的兴奋性突触。敲除培养的神经元中的MTMR2明显降低了兴奋性突触的密度和功能。野生型MTMR2可以挽救这种效应,而缺乏PSD-95结合或3-磷酸酶活性的突变MTMR2不能挽救这种效应。 MTMR2组合式导致树突状细胞中EEA1阳性早期内体的强度降低,但增加了细胞体区域的强度。此外,MTMR2抑制促进内吞货物AMPA受体的GluR2亚基的内吞作用,而不是回收作用。此外,内部化的GluR2与Lamp1阳性晚期内体/溶酶体的共定位在细胞体区域中增强,但在树突中却不增强。这些结果表明,与PSD-95相互作用的MTMR2通过抑制过量的内体形成和破坏性的内体向溶酶体的运输而有助于维持兴奋性突触。

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