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本文引用的文献

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γ-Protocadherins Interact with Neuroligin-1 and Negatively Regulate Dendritic Spine Morphogenesis.γ-原钙黏蛋白与神经连接蛋白-1相互作用并负向调节树突棘形态发生。
Cell Rep. 2017 Mar 14;18(11):2702-2714. doi: 10.1016/j.celrep.2017.02.060.
2
Differential gene expression profiles in neurons generated from lymphoblastoid B-cell line-derived iPS cells from monozygotic twin cases with treatment-resistant schizophrenia and discordant responses to clozapine.来自同卵双胞胎病例的淋巴母细胞样B细胞系衍生的诱导多能干细胞所产生的神经元中的差异基因表达谱,这些双胞胎患有难治性精神分裂症且对氯氮平反应不一致。
Schizophr Res. 2017 Mar;181:75-82. doi: 10.1016/j.schres.2016.10.012. Epub 2016 Oct 27.
3
The protocadherin 17 gene affects cognition, personality, amygdala structure and function, synapse development and risk of major mood disorders.原钙黏蛋白 17 基因影响认知、个性、杏仁核结构和功能、突触发育以及主要心境障碍的发病风险。
Mol Psychiatry. 2018 Feb;23(2):400-412. doi: 10.1038/mp.2016.231. Epub 2017 Jan 10.
4
Distinct and Cooperative Functions for the -α, -β and -γ Clusters in Neuronal Survival and Axon Targeting.α、β和γ簇在神经元存活和轴突靶向中的独特协同功能
Front Mol Neurosci. 2016 Dec 23;9:155. doi: 10.3389/fnmol.2016.00155. eCollection 2016.
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Establishment of high reciprocal connectivity between clonal cortical neurons is regulated by the Dnmt3b DNA methyltransferase and clustered protocadherins.克隆皮质神经元之间高相互连接性的建立受Dnmt3b DNA甲基转移酶和成簇原钙黏蛋白调控。
BMC Biol. 2016 Dec 2;14(1):103. doi: 10.1186/s12915-016-0326-6.
6
Structural determinants of adhesion by Protocadherin-19 and implications for its role in epilepsy.原钙黏蛋白 19 黏附的结构决定因素及其在癫痫中的作用。
Elife. 2016 Oct 26;5:e18529. doi: 10.7554/eLife.18529.
7
γ-Protocadherin structural diversity and functional implications.γ-原钙黏蛋白结构多样性及其功能意义。
Elife. 2016 Oct 26;5:e20930. doi: 10.7554/eLife.20930.
8
Sociability Deficits and Altered Amygdala Circuits in Mice Lacking Pcdh10, an Autism Associated Gene.缺乏自闭症相关基因Pcdh10的小鼠的社交缺陷与杏仁核回路改变
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The γ-Protocadherin-C3 isoform inhibits canonical Wnt signalling by binding to and stabilizing Axin1 at the membrane.γ-原钙黏蛋白-C3 异构体通过与膜上的 Axin1 结合并稳定其来抑制经典 Wnt 信号通路。
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The clinical spectrum of female epilepsy patients with PCDH19 mutations in a Chinese population.中国人群中携带 PCDH19 突变的女性癫痫患者的临床谱。
Clin Genet. 2017 Jan;91(1):54-62. doi: 10.1111/cge.12846. Epub 2016 Nov 7.

原钙黏蛋白对神经回路形成的调控

Regulation of neural circuit formation by protocadherins.

作者信息

Peek Stacey L, Mah Kar Men, Weiner Joshua A

机构信息

Interdisciplinary Graduate Program in Neuroscience, The University of Iowa, Iowa City, IA, USA.

Department of Biology, The University of Iowa, Iowa City, IA, USA.

出版信息

Cell Mol Life Sci. 2017 Nov;74(22):4133-4157. doi: 10.1007/s00018-017-2572-3. Epub 2017 Jun 19.

DOI:10.1007/s00018-017-2572-3
PMID:28631008
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5643215/
Abstract

The protocadherins (Pcdhs), which make up the most diverse group within the cadherin superfamily, were first discovered in the early 1990s. Data implicating the Pcdhs, including ~60 proteins encoded by the tandem Pcdha, Pcdhb, and Pcdhg gene clusters and another ~10 non-clustered Pcdhs, in the regulation of neural development have continually accumulated, with a significant expansion of the field over the past decade. Here, we review the many roles played by clustered and non-clustered Pcdhs in multiple steps important for the formation and function of neural circuits, including dendrite arborization, axon outgrowth and targeting, synaptogenesis, and synapse elimination. We further discuss studies implicating mutation or epigenetic dysregulation of Pcdh genes in a variety of human neurodevelopmental and neurological disorders. With recent structural modeling of Pcdh proteins, the prospects for uncovering molecular mechanisms of Pcdh extracellular and intracellular interactions, and their role in normal and disrupted neural circuit formation, are bright.

摘要

原钙黏蛋白(Pcdhs)是钙黏蛋白超家族中最多样化的一组,于20世纪90年代初首次被发现。涉及Pcdhs的相关数据不断积累,其中包括由串联的Pcdha、Pcdhb和Pcdhg基因簇编码的约60种蛋白质以及另外约10种非簇状Pcdhs,在过去十年中该领域有了显著扩展,这些数据表明Pcdhs参与神经发育的调控。在这里,我们综述了簇状和非簇状Pcdhs在神经回路形成和功能的多个重要步骤中所起的多种作用,包括树突分支、轴突生长和靶向、突触形成以及突触消除。我们还进一步讨论了涉及Pcdh基因突变或表观遗传失调与多种人类神经发育和神经疾病相关的研究。随着近期对Pcdh蛋白的结构建模,揭示Pcdh细胞外和细胞内相互作用的分子机制及其在正常和受损神经回路形成中的作用的前景十分光明。