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KMT2D deficiency leads to cellular developmental disorders and enhancer dysregulation in neural-crest-containing brain organoids
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作者 Ziyun Shan Yingying Zhao +22 位作者 Xiuyu Chen Guodong Zhan Junju Huang Xuejie Yang Chongshen Xu Ning Guo Zhi Xiong Fang Wu Yujian Liu He Liu Biyuan Chen Bingqiu Chen Jiaoyang Sun Jiangping He Yiping Guo Shangtao Cao Kaixin Wu Rui Mao Guangming Wu Lihui Lin Xiaobing Zou Jie Wang Jiekai Chen 《Science Bulletin》 SCIE EI CAS CSCD 2024年第22期3533-3546,共14页
KMT2D,a H3K4me1 methyltransferase primarily regulating enhancers,is a leading cause of KABUKI syndrome.This multisystem disorder leads to craniofacial and cognitive abnormalities,possibly through neural crest and neur... KMT2D,a H3K4me1 methyltransferase primarily regulating enhancers,is a leading cause of KABUKI syndrome.This multisystem disorder leads to craniofacial and cognitive abnormalities,possibly through neural crest and neuronal lineages.However,the impacted cell-of-origin and molecular mechanism of KMT2D during the development of KABUKI disease remains unknown.Here we have optimized a brain organoid model to investigate neural crest and neuronal differentiation.To pinpoint KMT2D's enhancer target,we developed a genome-wide cis-regulatory element explorer(GREE)based on single-cell multiomic integration.Single cell RNA-seq revealed that KMT2D-knockout(KO)and patient-derived organoids exhibited neural crest deformities and GABAergic overproduction.Mechanistically,GREE identified that KMT2D targets a roof-plate-like niche cell and activates the niche cell-specific WNT3A enhancer,providing the microenvironment for neural crest and neuronal development.Interestingly,KMT2D-mutated mice displayed decreased WNT3A expression in the diencephalon roof plate,indicating impaired niche cell function.Deleting the WNT3A enhancer in the organoids presented phenotypic similarities to KMT2D-depletion,emphasizing the WNT3A enhancer as the predominant target of KMT2D.Conversely,reactivating WNT signaling in KMT2D-KO rescued the lineage defects by restoring the microenvironment.Overall,our discovery of KMT2D's primary target provides insights for reconciling complex phenotypes of KABUKI syndrome and establishes a new paradigm for dissecting the mechanisms of genetic disorders from genotype to phenotype. 展开更多
关键词 KMT2D ENHANCER NICHE Cerebral organoids Single-cell multiome
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空间多组学测序为组织原位的转录调控研究提供新的机遇
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作者 林立 蔡佺佑 陈捷凯 《Science Bulletin》 SCIE EI CAS CSCD 2023年第10期969-971,M0003,共4页
Spatial techniques can profile omics information while preserving the spatial coordinates of tissues.Compared with single-cell sequencing,the additional spatial information is vital in studying the intercellular commu... Spatial techniques can profile omics information while preserving the spatial coordinates of tissues.Compared with single-cell sequencing,the additional spatial information is vital in studying the intercellular communication underlying development and disease[1].In the past,spatial techniques can only capture one layer of omics at a time,such as transcriptome[2],epigenome[3–5]。 展开更多
关键词 PRESERVING INTERCELLULAR COORDINATES
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X-DRAW笔式绘图仪
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作者 陈松辉 陈梓华 +4 位作者 李安国 林立 张曈 刘建群 于兆勤 《物联网技术》 2018年第11期8-10,共3页
文中针对现有绘图仪存在的不足,设计了一款X-DRAW笔式绘图仪。该绘图仪主要由滑轨机构与抬笔机构组成,在inkscape平台进行艺术创作后,将图画转化为G代码经发送器通过串口发送给Arduino,解析G代码后进行路径规划,从而实现精准的定位,完... 文中针对现有绘图仪存在的不足,设计了一款X-DRAW笔式绘图仪。该绘图仪主要由滑轨机构与抬笔机构组成,在inkscape平台进行艺术创作后,将图画转化为G代码经发送器通过串口发送给Arduino,解析G代码后进行路径规划,从而实现精准的定位,完成繁杂的工作。X-DRAW是一个可以任何平面上进行艺术创作的机器人,充分体现了艺术与科技的完美融合。 展开更多
关键词 绘图仪 仿人 激光雕刻 CNC COREXY
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