破坏整合子复合体亚基INTS6导致神经发育障碍并损害神经发生和突触发育。

Xiaoxia Peng,Xiangbin Jia,Hanying Wang,Jingjing Chen,Xiaolei Zhang,Senwei Tan,Xinyu Duan,Can Qiu,Mengyuan Hu,Haiyan Hou,Ilaria Parenti,Alma Kuechler,Frank J Kaiser,Alicia Renck,Raymond Caylor,Cindy Skinner,Joseph Peeden,Benjamin Cogne,Bertrand Isidor,Sandra Mercier,Gael Nicolas,Anne-Marie Guerrot,Flavio Faletra,Luciana Musante,Lior Cohen,Gaber Bergant,Goran Čuturilo,Borut Peterlin,Andrea Seeley,Kristine Bachman,Julian A Martinez-Agosto,Conny van Ravenswaaij-Arts,Dennis Bos,Katherine H Kim,Tobias Bartolomaeus,Zelia Schmederer,Rami Abou Jamra,Erfan Aref-Eshghi,Wenjing Zhao,Yongyi Zou,Zhengmao Hu,Qian Pan,Faxiang Li,Guodong Chen,Jiada Li,Zhangxue Hu,Kun Xia,Jieqiong Tan,Hui Guo
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引用次数: 0

摘要

整合子复合物在RNA聚合酶II转录终止和RNA加工中起重要作用。在这里,我们确定INTS6,整合子复合体的一个亚基,作为一个新的基因与神经发育障碍(ndd)相关。通过对大型NDD队列和国际合作的分析,我们确定了23个家族在INTS6中含有可能的单等位基因破坏性或新生错义变异。表型表征揭示了共同的特征,包括语言和运动迟缓、自闭症、智力残疾和睡眠障碍。通过神经系统条件敲除(cKO)小鼠模型,我们发现Ints6缺乏会破坏早期神经发生、皮层层压和突触发育。Ints6 cKO小鼠表现为脑室区/脑室下区增厚,皮质板变薄,神经元分化减少,皮质层凋亡增加。对杂合小鼠的行为评估显示,在社会新颖性偏好、空间记忆和多动症方面存在缺陷,这反映了在INTS6变异个体中观察到的表型。分子分析进一步表明,INTS6缺陷改变RNA聚合酶II动力学,破坏转录调控,损害突触基因表达。用CDK9抑制剂(CDK9i)治疗可以减少RNAPII的磷酸化,从而限制其与靶基因的结合。值得注意的是,CDK9i逆转了神经球过度增殖,挽救了由Ints6缺乏引起的异常树突棘表型。这项工作促进了对ints相关的NDD发病机制的理解,并强调了干预的潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Disrupting Integrator complex subunit INTS6 causes neurodevelopmental disorders and impairs neurogenesis and synapse development.
The Integrator complex plays essential roles in RNA polymerase II transcription termination and RNA processing. Here, we identify INTS6, a subunit of the Integrator complex, as a novel gene associated with neurodevelopmental disorders (NDDs). Through analysis of large NDD cohorts and international collaborations, we identified 23 families harboring monoallelic likely gene-disruptive or de novo missense variants in INTS6. Phenotypic characterization revealed shared features, including language and motor delays, autism, intellectual disability, and sleep disturbances. Using a nervous-system conditional knockout (cKO) mouse model, we show that Ints6 deficiency disrupts early neurogenesis, cortical lamination, and synaptic development. Ints6 cKO mice displayed a thickened ventricular zone/subventricular zone, thinning of the cortical plate, reduced neuronal differentiation, and increased apoptosis in cortical layer 6. Behavioral assessments of heterozygous mice revealed deficits in social novelty preference, spatial memory, and hyperactivity, mirroring phenotypes observed in individuals with INTS6 variants. Molecular analyses further revealed that INTS6 deficiency alters RNA polymerase II dynamics, disrupts transcriptional regulation, and impairs synaptic gene expression. Treatment with a CDK9 inhibitor (CDK9i) reduced RNAPII phosphorylation, thereby limiting its binding to target genes. Notably, CDK9i reversed neurosphere over-proliferation and rescued the abnormal dendritic spine phenotype caused by Ints6 deficiency. This work advances understanding of INTS-related NDD pathogenesis and highlights potential therapeutic targets for intervention.
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