突触中的 FMRP 和 CYFIP1 及其在精神病易感性中的作用

Complex psychiatry Pub Date : 2020-10-01 Epub Date: 2020-03-03 DOI:10.1159/000506858
Nicholas E Clifton, Kerrie L Thomas, Lawrence S Wilkinson, Jeremy Hall, Simon Trent
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引用次数: 0

摘要

越来越多的人认识到,遗传风险变体在精神分裂症和自闭症等精神疾病的易感性中起着中介作用。这些风险变异中有许多编码突触蛋白,影响突触后密度的生物通路,并最终影响突触的可塑性。脆性-X 精神发育迟滞 1(FMR1)和细胞质脆性-X 精神发育迟滞蛋白(FMRP)-互作蛋白 1(CYFIP1)就是这样两个高渗透性风险变异的例子,它们编码的突触蛋白具有共同的功能意义。在这篇综述中,我们将讨论 FMRP 和 CYFIP1 的生物学作用,包括它们对以下方面的调控:(i) 蛋白质合成和特定的 FMRP 靶标;(ii) 树突和脊柱形态;以及 (iii) 突触可塑性的形式,如长期抑制。我们借鉴了一系列临床前研究,这些研究利用 FMR1 和 CYFIP1 的遗传剂量模型来确定它们的生物功能。同时,我们还讨论了对脆性 X 综合征或 15q11.2 缺失患者的临床研究如何帮助我们了解 FMRP 和 CYFIP1,并重点介绍了继续与 FMRP 和 CYFIP1 有关的最新精神基因组研究结果。最后,我们评估了目前我们对 FMRP 和 CYFIP1 生物学认识的局限性,以及在针对精神疾病开发以机制为导向的治疗策略之前必须如何解决这些局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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FMRP and CYFIP1 at the Synapse and Their Role in Psychiatric Vulnerability.

There is increasing awareness of the role genetic risk variants have in mediating vulnerability to psychiatric disorders such as schizophrenia and autism. Many of these risk variants encode synaptic proteins, influencing biological pathways of the postsynaptic density and, ultimately, synaptic plasticity. Fragile-X mental retardation 1 (FMR1) and cytoplasmic fragile-X mental retardation protein (FMRP)-interacting protein 1 (CYFIP1) contain 2 such examples of highly penetrant risk variants and encode synaptic proteins with shared functional significance. In this review, we discuss the biological actions of FMRP and CYFIP1, including their regulation of (i) protein synthesis and specifically FMRP targets, (ii) dendritic and spine morphology, and (iii) forms of synaptic plasticity such as long-term depression. We draw upon a range of preclinical studies that have used genetic dosage models of FMR1 and CYFIP1 to determine their biological function. In parallel, we discuss how clinical studies of fragile X syndrome or 15q11.2 deletion patients have informed our understanding of FMRP and CYFIP1, and highlight the latest psychiatric genomic findings that continue to implicate FMRP and CYFIP1. Lastly, we assess the current limitations in our understanding of FMRP and CYFIP1 biology and how they must be addressed before mechanism-led therapeutic strategies can be developed for psychiatric disorders.

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