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WDR5-HOTTIP 组蛋白修饰复合物通过 Reelin 信号调节锥体神经元的神经迁移和树突极性。

WDR5-HOTTIP Histone Modifying Complex Regulates Neural Migration and Dendrite Polarity of Pyramidal Neurons via Reelin Signaling.

机构信息

Department of Advanced Toxicology Research, Korea Institute of Toxicology, KRICT, Daejeon, 34114, Republic of Korea.

Neurological Disorders Research Center, Qatar Biomedical Research Institute, Hamid Bin Khalifa University, Doha, Qatar.

出版信息

Mol Neurobiol. 2022 Aug;59(8):5104-5120. doi: 10.1007/s12035-022-02905-4. Epub 2022 Jun 7.

Abstract

WD-repeat domain 5 (WDR5), a core component of histone methyltransferase complexes, is associated with Kabuki syndrome and Kleefstra syndrome that feature intellectual disability and neurodevelopmental delay. Despite its critical status in gene regulation and neurological disorders, the role of WDR5 in neural development is unknown. Here we show that WDR5 is required for normal neuronal placement and dendrite polarization in the developing cerebral cortex. WDR5 knockdown led to defects in both entry into the bipolar transition of pyramidal neurons within the intermediate zone and radial migration into cortical layers. Moreover, WDR5 deficiency disrupted apical and basal polarity of cortical dendrites. Aberrant dendritic spines and synapses accompanied the dendrite polarity phenotype. WDR5 deficiency reduced expression of reelin signaling receptors, ApoER and VdldR, which were associated with abnormal H3K4 methylation and H4 acetylation on their promoter regions. Finally, an lncRNA, HOTTIP, was found to be a partner of WDR5 to regulate dendritic polarity and reelin signaling via histone modification. Our results demonstrate a novel role for WDR5 in neuronal development and provide mechanistic insights into the neuropathology associated with histone methyltransferase dysfunction.

摘要

WD-重复结构域 5(WDR5)是组蛋白甲基转移酶复合物的核心组成部分,与具有智力残疾和神经发育迟缓的歌舞伎综合征和克莱夫斯特拉综合征相关。尽管它在基因调控和神经紊乱中具有关键地位,但 WDR5 在神经发育中的作用尚不清楚。在这里,我们表明 WDR5 对于大脑皮质发育过程中神经元的正常定位和树突极化是必需的。WDR5 敲低导致中间区内锥体神经元进入双极过渡和向皮质层的放射状迁移的缺陷。此外,WDR5 缺失破坏了皮质树突的顶端和基底极性。异常的树突棘和突触伴随着树突极性表型。WDR5 缺失减少了 reelin 信号受体 ApoER 和 VdldR 的表达,这与它们启动子区域上异常的 H3K4 甲基化和 H4 乙酰化有关。最后,发现 lncRNA HOTTIP 是 WDR5 的伴侣,通过组蛋白修饰来调节树突极性和 reelin 信号。我们的研究结果表明了 WDR5 在神经元发育中的新作用,并为组蛋白甲基转移酶功能障碍相关的神经病理学提供了机制见解。

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