Neurexin-Neuroligin Synaptic Complex Regulates Schizophrenia-Related DISC1/Kal-7/Rac1 "Signalosome".

IF 3 4区 医学 Q2 NEUROSCIENCES
Neural Plasticity Pub Date : 2015-01-01 Epub Date: 2015-05-20 DOI:10.1155/2015/167308
Sylwia Owczarek, Marie Louise Bang, Vladimir Berezin
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引用次数: 17

Abstract

Neurexins (NXs) and neuroligins (NLs) are cell adhesion molecules that are localized at opposite sites of synaptic membranes. They interact with each other to promote the assembly, maintenance, and function of synapses in the central nervous system. Both NX and NL are cleaved from a membrane-attached intracellular domain in an activity-dependent manner, generating the soluble ectodomain of NX or NL. Expression of the NX1 and NX3 genes in the brain appears to be regulated by a schizophrenia-related protein, DISC1. Here, we show that soluble ecto-NX1β can regulate the expression of DISC1 and induce signaling downstream of DISC1. We also show that NL1 binds to a well-characterized DISC1 interaction partner, Kal-7, and this interaction can be compromised by DISC1. Our results indicate that the NX/NL synaptic complex is intrinsically involved in the regulation of DISC1 function, thus contributing to a better understanding of the pathology of schizophrenia.

Abstract Image

Abstract Image

Abstract Image

神经素-神经素突触复合物调控精神分裂症相关DISC1/Kal-7/Rac1“信号体”
神经素(Neurexins, NXs)和神经素(neuroligins, NLs)是位于突触膜相反位置的细胞粘附分子。它们相互作用,促进中枢神经系统突触的组装、维护和功能。NX和NL都以活性依赖的方式从膜附着的细胞内结构域裂解,产生NX或NL的可溶性外结构域。大脑中NX1和NX3基因的表达似乎受到精神分裂症相关蛋白DISC1的调节。本研究表明,可溶性ecto-NX1β可以调节DISC1的表达并诱导DISC1的下游信号传导。研究人员还发现,NL1与一个具有良好特征的DISC1相互作用伙伴Kal-7结合,并且这种相互作用可以被DISC1破坏。我们的研究结果表明,NX/NL突触复合体本质上参与了DISC1功能的调节,从而有助于更好地理解精神分裂症的病理。
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来源期刊
Neural Plasticity
Neural Plasticity NEUROSCIENCES-
CiteScore
6.80
自引率
0.00%
发文量
77
审稿时长
16 weeks
期刊介绍: Neural Plasticity is an international, interdisciplinary journal dedicated to the publication of articles related to all aspects of neural plasticity, with special emphasis on its functional significance as reflected in behavior and in psychopathology. Neural Plasticity publishes research and review articles from the entire range of relevant disciplines, including basic neuroscience, behavioral neuroscience, cognitive neuroscience, biological psychology, and biological psychiatry.
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