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Emerging roles of ARHGAP33 in intracellular trafficking of TrkB and pathophysiology of neuropsychiatric disorders

机译:ARHGAP33在细胞内TrkB转运和神经精神疾病的病理生理中的新兴作用

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Intracellular trafficking of receptor proteins is essential for neurons to detect various extracellular factors during the formation and refinement of neural circuits. However, the precise mechanisms underlying the trafficking of neurotrophin receptors to synapses remain elusive. Here, we demonstrate that a brain-enriched sorting nexin, ARHGAP33, is a new type of regulator for the intracellular trafficking of TrkB, a high-affinity receptor for brain-derived neurotrophic factor. ARHGAP33 knockout (KO) mice exhibit reduced expression of synaptic TrkB, impaired spine development and neuropsychiatric disorder-related behavioural abnormalities. These deficits are rescued by specific pharmacological enhancement of TrkB signalling in ARHGAP33 KO mice. Mechanistically, ARHGAP33 interacts with SORT1 to cooperatively regulate TrkB trafficking. Human ARHGAP33 is associated with brain phenotypes and reduced SORT1 expression is found in patients with schizophrenia. We propose that ARHGAP33/SORT1-mediated TrkB trafficking is essential for synapse development and that the dysfunction of this mechanism may be a new molecular pathology of neuropsychiatric disorders.
机译:受体蛋白的细胞内运输对于神经元在神经回路的形成和完善过程中检测各种细胞外因子至关重要。但是,神经营养蛋白受体向突触转运的确切机制仍然难以捉摸。在这里,我们证明大脑富集的分选蛋白ARHGAP33是TrkB(一种脑源性神经营养因子的高亲和力受体)的细胞内运输的新型调节剂。 ARHGAP33基因敲除(KO)小鼠表现出突触TrkB的表达减少,脊柱发育受损和神经精神疾病相关的行为异常。这些缺陷可通过ARHGAP33 KO小鼠中TrkB信号传导的特定药理增强来挽救。从机制上讲,ARHGAP33与SORT1相互作用以共同调节TrkB的交易。人ARHGAP33与脑表型有关,并且在精神分裂症患者中发现SORT1表达降低。我们提出ARHGAP33 / SORT1介导的TrkB贩运对于突触的发展至关重要,并且该机制的功能障碍可能是神经精神疾病的一种新的分子病理学。

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