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A DNA replication mechanism for generating nonrecurrent rearrangements associated with genomic disorders.一种用于产生与基因组疾病相关的非重复性重排的DNA复制机制。
Cell. 2007 Dec 28;131(7):1235-47. doi: 10.1016/j.cell.2007.11.037.
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Psoriasis is associated with increased beta-defensin genomic copy number.银屑病与β-防御素基因组拷贝数增加有关。
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Contribution of SHANK3 mutations to autism spectrum disorder.SHANK3突变对自闭症谱系障碍的影响。
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Duplication of FGF3, FGF4, FGF19 and ORAOV1 causes hair ridge and predisposition to dermoid sinus in Ridgeback dogs.成纤维细胞生长因子3(FGF3)、成纤维细胞生长因子4(FGF4)、成纤维细胞生长因子19(FGF19)和口腔肿瘤过表达蛋白1(ORAOV1)的复制会导致脊背犬出现毛嵴并易患皮样窦。
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Diet and the evolution of human amylase gene copy number variation.饮食与人类淀粉酶基因拷贝数变异的进化
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Gene copy-number variation and associated polymorphisms of complement component C4 in human systemic lupus erythematosus (SLE): low copy number is a risk factor for and high copy number is a protective factor against SLE susceptibility in European Americans.人类系统性红斑狼疮(SLE)中补体成分C4的基因拷贝数变异及相关多态性:在欧裔美国人中,低拷贝数是SLE易感性的危险因素,而高拷贝数是SLE易感性的保护因素。
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GDF6, a novel locus for a spectrum of ocular developmental anomalies.生长分化因子6(GDF6),一种与一系列眼部发育异常相关的新基因座。
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一种新的机制谱是青光眼相关的6号染色体p25拷贝数变异的基础。

A novel mechanistic spectrum underlies glaucoma-associated chromosome 6p25 copy number variation.

作者信息

Chanda Bhaskar, Asai-Coakwell Mika, Ye Ming, Mungall Andrew J, Barrow Margaret, Dobyns William B, Behesti Hourinaz, Sowden Jane C, Carter Nigel P, Walter Michael A, Lehmann Ordan J

机构信息

Departments of Ophthalmology, University of Alberta, Edmonton, Alberta, Canada.

出版信息

Hum Mol Genet. 2008 Nov 15;17(22):3446-58. doi: 10.1093/hmg/ddn238. Epub 2008 Aug 11.

DOI:10.1093/hmg/ddn238
PMID:18694899
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2572693/
Abstract

The factors that mediate chromosomal rearrangement remain incompletely defined. Among regions prone to structural variant formation, chromosome 6p25 is one of the few in which disease-associated segmental duplications and segmental deletions have been identified, primarily through gene dosage attributable ocular phenotypes. Using array comparative genome hybridization, we studied ten 6p25 duplication and deletion pedigrees and amplified junction fragments from each. Analysis of the breakpoint architecture revealed that all the rearrangements were non-recurrent, and in contrast to most previous examples the majority of the segmental duplications and deletions utilized coupled homologous and non-homologous recombination mechanisms. One junction fragment exhibited an unprecedented 367 bp insert derived from tandemly arranged breakpoint elements. While this accorded with a recently described replication-based mechanism, it differed from the previous example in being unassociated with template switching, and occurring in a segmental deletion. These results extend the mechanisms involved in structural variant formation, provide strong evidence that a spectrum of recombination, DNA repair and replication underlie 6p25 rearrangements, and have implications for genesis of copy number variations in other genomic regions. These findings highlight the benefits of undertaking the extensive studies necessary to characterize structural variants at the base pair level.

摘要

介导染色体重排的因素尚未完全明确。在易于形成结构变异的区域中,6号染色体短臂25区(6p25)是少数几个已鉴定出与疾病相关的节段性重复和节段性缺失的区域之一,主要是通过基因剂量相关的眼部表型来确定的。我们使用阵列比较基因组杂交技术研究了10个6p25重复和缺失的家系,并对每个家系的连接片段进行了扩增。对断点结构的分析表明,所有重排都是非重复性的,与大多数先前的例子不同,大多数节段性重复和缺失利用了同源和非同源重组的耦合机制。一个连接片段显示出一个前所未有的367 bp插入片段,该片段源自串联排列的断点元件。虽然这与最近描述的基于复制的机制一致,但它与先前的例子不同,它与模板转换无关,且发生在节段性缺失中。这些结果扩展了结构变异形成所涉及的机制,有力地证明了一系列重组、DNA修复和复制是6p25重排的基础,并对其他基因组区域拷贝数变异的起源具有启示意义。这些发现凸显了在碱基对水平上进行广泛研究以表征结构变异的益处。