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与面肩肱型肌营养不良相关的DNA重排涉及一种异染色质相关的重复元件:对染色质结构在该疾病发病机制中的作用的启示。

The DNA rearrangement associated with facioscapulohumeral muscular dystrophy involves a heterochromatin-associated repetitive element: implications for a role of chromatin structure in the pathogenesis of the disease.

作者信息

Winokur S T, Bengtsson U, Feddersen J, Mathews K D, Weiffenbach B, Bailey H, Markovich R P, Murray J C, Wasmuth J J, Altherr M R

机构信息

Department of Biological Chemistry, University of California, Irvine.

出版信息

Chromosome Res. 1994 May;2(3):225-34. doi: 10.1007/BF01553323.

DOI:10.1007/BF01553323
PMID:8069466
Abstract

Facioscapulohumeral muscular dystrophy (FSHD) is an autosomal dominant form of muscular dystrophy. The FSHD locus has been linked to the most distal genetic markers on the long arm of chromosome 4. Recently, a probe was identified that detects an EcoRI fragment length polymorphism which segregates with the disease in most FSHD families. Within the EcoRI fragment lies a tandem array of 3.2 kb repeats. In several familial cases and four independent sporadic FSHD mutations, the variation in size of the EcoRI fragment was due to a decrease in copy number of the 3.2 kb repeats. To gain further insight into the relationship between the tandem array and FSHD, a single 3.2 kb repeat unit was characterized. Fluorescence in situ hybridization (FISH) demonstrates that the 3.2 kb repeat cross-hybridizes to several regions of heterochromatin in the human genome. In addition, DNA sequence analysis of the repeat reveals a region which is highly homologous to a previously identified family of heterochromatic repeats, LSau. FISH on interphase chromosomes demonstrates that the tandem array of 3.2 kb repeats lies within 215 kb of the 4q telomere. Together, these results suggest that the tandem array of 3.2 kb repeats, tightly linked to the FSHD locus, is contained in heterochromatin adjacent to the telomere. In addition, they are consistent with the hypothesis that the gene responsible for FSHD may be subjected to position effect variegation because of its proximity to telomeric heterochromatin.

摘要

面肩肱型肌营养不良症(FSHD)是一种常染色体显性遗传的肌营养不良症。FSHD基因座与4号染色体长臂上最远端的遗传标记相关联。最近,发现了一种探针,它能检测到一种EcoRI片段长度多态性,在大多数FSHD家族中,这种多态性与疾病共分离。在EcoRI片段内有一个3.2 kb重复序列的串联阵列。在几个家族性病例和四个独立的散发性FSHD突变中,EcoRI片段大小的变化是由于3.2 kb重复序列拷贝数的减少。为了进一步深入了解串联阵列与FSHD之间的关系,对单个3.2 kb重复单元进行了特征分析。荧光原位杂交(FISH)表明,3.2 kb重复序列与人基因组中的几个异染色质区域交叉杂交。此外,对该重复序列的DNA序列分析揭示了一个与先前鉴定出的异染色质重复序列家族LSau高度同源的区域。对间期染色体进行FISH分析表明,3.2 kb重复序列的串联阵列位于4q端粒的215 kb范围内。这些结果共同表明,与FSHD基因座紧密连锁的3.2 kb重复序列串联阵列包含在端粒附近的异染色质中。此外,它们与以下假设一致,即导致FSHD的基因可能因其靠近端粒异染色质而受到位置效应斑驳的影响。

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The DNA rearrangement associated with facioscapulohumeral muscular dystrophy involves a heterochromatin-associated repetitive element: implications for a role of chromatin structure in the pathogenesis of the disease.与面肩肱型肌营养不良相关的DNA重排涉及一种异染色质相关的重复元件:对染色质结构在该疾病发病机制中的作用的启示。
Chromosome Res. 1994 May;2(3):225-34. doi: 10.1007/BF01553323.
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Deletion of Y chromosome sequences located outside the testis determining region can cause XY female sex reversal.
ZBTB24-CDCA7-HELLS轴通过维持Dux甲基化和抑制来抑制全能性2C样重编程。
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Challenges and Considerations of Preclinical Development for iPSC-Based Myogenic Cell Therapy.基于 iPSC 的肌源性细胞治疗的临床前开发的挑战与考量。
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Deciphering D4Z4 CpG methylation gradients in fascioscapulohumeral muscular dystrophy using nanopore sequencing.使用纳米孔测序技术解析面肩肱型肌营养不良症中D4Z4 CpG甲基化梯度
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Zygotic gene activation in mice: profile and regulation.小鼠的合子基因激活:特征与调控。
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