首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The scaffolding protein PSD-95 interacts with the glycine transporter GLYT1 and impairs its internalization.
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The scaffolding protein PSD-95 interacts with the glycine transporter GLYT1 and impairs its internalization.

机译:支架蛋白PSD-95与甘氨酸转运蛋白GLYT1相互作用并损害其内在化。

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摘要

Recent evidence indicates that the glycine transporter-1 (GLYT1) plays a role in regulation of NMDA receptor function through tight control of glycine concentration in its surrounding medium. Immunohistochemical studies have demonstrated that, as well as being found in glial cells, GLYT1 is also associated with the pre- and postsynaptic aspects of glutamatergic synapses. In this article, we describe the interaction between GLYT1 and PSD-95 in the rat brain, PSD-95 being a scaffolding protein that participates in the organization of glutamatergic synapses. Mutational analysis reveals that the C-terminal sequence of GLYT1 (-SRI) is necessary for the transporter to interact with the PDZ domains I and II of PSD-95. This C-terminal tripeptide motif also seems to be involved in the trafficking of GLYT1 to the membrane, although this process does not involve PDZ proteins. GLYT1 is able to recruit PSD-95 to the plasma membrane, but it does not affect its clustering. However, the interaction stabilizes this transporter at the plasma membrane, blocking its internalization and producing a significant increase in the V(max) of glycine uptake. We hypothesize that PSD-95 might act as a scaffold for GLYT1 and NMDA receptors, allowing GLYT1 to regulate the concentrations of glycine in the micro-environment of NMDA receptors.
机译:最近的证据表明,通过严格控制周围介质中甘氨酸的浓度,甘氨酸转运蛋白1(GLYT1)在NMDA受体功能的调节中起作用。免疫组织化学研究表明,除了在神经胶质细胞中发现的那样,GLYT1还与谷氨酸能突触的突触前和突触后方面有关。在本文中,我们描述了大鼠大脑中GLYT1和PSD-95之间的相互作用,PSD-95是一种参与谷氨酸能突触组织的支架蛋白。突变分析表明,GLYT1(-SRI)的C端序列对于转运蛋白与PSD-95的PDZ域I和II相互作用是必需的。尽管该过程不涉及PDZ蛋白,但该C端三肽基序似乎也参与了GLYT1向膜的运输。 GLYT1能够将PSD-95募集到质膜,但不影响其聚类。但是,相互作用稳定了该转运蛋白在质膜上,阻止了其内在化并大大增加了甘氨酸吸收的V(max)。我们假设PSD-95可能充当GLYT1和NMDA受体的支架,从而允许GLYT1在NMDA受体的微环境中调节甘氨酸的浓度。

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