首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Palmitoylation regulates glutamate receptor distributions in postsynaptic densities through control of PSD95 conformation and orientation
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PNAS Plus: Palmitoylation regulates glutamate receptor distributions in postsynaptic densities through control of PSD95 conformation and orientation

机译:PNAS Plus:棕榈酰化通过控制PSD95的构象和方向来调节突触后密度中的谷氨酸受体分布

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摘要

Postsynaptic density protein 95 (PSD95) and synapse-associated protein 97 (SAP97) are homologous scaffold proteins with different N-terminal domains, possessing either a palmitoylation site (PSD95) or an L27 domain (SAP97). Here, we measured PSD95 and SAP97 conformation in vitro and in postsynaptic densities (PSDs) using FRET and EM, and examined how conformation regulated interactions with AMPA-type and NMDA-type glutamate receptors (AMPARs/NMDARs). Palmitoylation of PSD95 changed its conformation from a compact to an extended configuration. PSD95 associated with AMPARs (via transmembrane AMPAR regulatory protein subunits) or NMDARs [via glutamate ionotropic receptor NMDA-type subunit 2B (GluN2B) subunits] only in its palmitoylated and extended conformation. In contrast, in its extended conformation, SAP97 associates with NMDARs, but not with AMPARs. Within PSDs, PSD95 and SAP97 were largely in the extended conformation, but had different orientations. PSD95 oriented perpendicular to the PSD membrane, with its palmitoylated, N-terminal domain at the membrane. SAP97 oriented parallel to the PSD membrane, likely as a dimer through interactions of its N-terminal L27 domain. Changing PSD95 palmitoylation in PSDs altered PSD95 and AMPAR levels but did not affect NMDAR levels. These results indicate that in PSDs, PSD95 palmitoylation, conformation, and its interactions are dynamic when associated with AMPARs and more stable when associated with NMDARs. Altogether, our results are consistent with differential regulation of PSD95 palmitoylation in PSDs resulting from the clustering of palmitoylating and depalmitoylating enzymes into AMPAR nanodomains segregated away from NMDAR nanodomains.
机译:突触后密度蛋白95(PSD95)和突触相关蛋白97(SAP97)是具有不同N末端结构域的同源支架蛋白,具有棕榈酰化位点(PSD95)或L27结构域(SAP97)。在这里,我们使用FRET和EM在体外和突触后密度(PSDs)中测量PSD95和SAP97构象,并检查构象如何调节与AMPA型和NMDA型谷氨酸受体(AMPAR / NMDARs)的相互作用。 PSD95的棕榈酰化将其构象从紧凑型变为扩展型。 PSD95仅通过其棕榈酰化和延伸构象与AMPAR(通过跨膜AMPAR调节蛋白亚基)或NMDAR(通过谷氨酸离子受体NMDA型亚基2B(GluN2B)亚基)相关。相反,SAP97在其扩展的构造中与NMDAR关联,但与AMPAR不关联。在PSD中,PSD95和SAP97大多处于扩展构象,但方向不同。 PSD95垂直于PSD膜取向,其棕榈酰化的N端结构域在膜上。 SAP97定向平行于PSD膜,可能通过其N末端L27结构域的相互作用作为二聚体。改变PSDs中的PSD95棕榈酰化可以改变PSD95和AMPAR的水平,但不影响NMDAR的水平。这些结果表明,在PSD中,PSD95的棕榈酰化,构象及其相互作用在与AMPAR相关时是动态的,而与NMDAR相关时更稳定。总体而言,我们的结果与PSDs中PSD95棕榈酰化的差异调节相一致,这是由于棕榈酰化和去棕榈酰化酶聚集到与NMDAR纳米域分离开的AMPAR纳米域中。

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