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一个少突胶质细胞沉默元件是核纤层蛋白B1结构变异致病影响的基础。

An oligodendrocyte silencer element underlies the pathogenic impact of lamin B1 structural variants.

作者信息

Nmezi Bruce, Bey Guillermo Rodriguez, Oranburg Talia DeFrancesco, Dudnyk Kseniia, Lardo Santana M, Herdman Nathan, Jacko Anastasia, Rubio Sandy, Alcocer Emanuel Loeza, Kofler Julia, Kim Dongkyeong, Rankin Julia, Kivuva Emma, Gutowski Nicholas, Schon Katherine, van den Ameele Jelle, Chinnery Patrick F, Sousa Sérgio B, Palavra Filipe, Toro Camilo, Pinto E Vairo Filippo, Saute Jonas, Pan Lisa, Alturkustani Murad, Hammond Robert, Gros-Louis Francois, Gold Michael, Park Yungki, Bernard Geneviève, Raininko Raili, Zhou Jian, Hainer Sarah J, Padiath Quasar S

出版信息

bioRxiv. 2023 Aug 9:2023.08.03.551473. doi: 10.1101/2023.08.03.551473.

Abstract

The role of non-coding regulatory elements and how they might contribute to tissue type specificity of disease phenotypes is poorly understood. Autosomal Dominant Leukodystrophy (ADLD) is a fatal, adult-onset, neurological disorder that is characterized by extensive CNS demyelination. Most cases of ADLD are caused by tandem genomic duplications involving the lamin B1 gene ( ) while a small subset are caused by genomic deletions upstream of the gene. Utilizing data from recently identified families that carry gene duplications but do not exhibit demyelination, ADLD patient tissues, CRISPR modified cell lines and mouse models, we have identified a novel silencer element that is lost in ADLD patients and that specifically targets overexpression to oligodendrocytes. This element consists of CTCF binding sites that mediate three-dimensional chromatin looping involving the and the recruitment of the PRC2 repressor complex. Loss of the silencer element in ADLD identifies a previously unknown role for silencer elements in tissue specificity and disease causation.

摘要

非编码调控元件的作用以及它们如何导致疾病表型的组织类型特异性,目前还知之甚少。常染色体显性遗传性脑白质营养不良(ADLD)是一种致命的成人发病的神经系统疾病,其特征是中枢神经系统广泛脱髓鞘。大多数ADLD病例是由涉及核纤层蛋白B1基因( )的串联基因组重复引起的,而一小部分是由该基因上游的基因组缺失引起的。利用最近鉴定出的携带 基因重复但未表现出脱髓鞘的家族、ADLD患者组织、CRISPR修饰的细胞系和小鼠模型的数据,我们鉴定出一种新的沉默元件,该元件在ADLD患者中缺失,并且特异性地将过表达靶向少突胶质细胞。该元件由CTCF结合位点组成,这些位点介导涉及 的三维染色质环化以及PRC2阻遏复合物的募集。ADLD中沉默元件的缺失揭示了沉默元件在组织特异性和疾病病因中的一个先前未知的作用。

相似文献

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Autosomal Dominant Leukodystrophy: A Disease of the Nuclear Lamina.常染色体显性白质营养不良:一种核纤层疾病。
Front Cell Dev Biol. 2019 Mar 20;7:41. doi: 10.3389/fcell.2019.00041. eCollection 2019.

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