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通过半合子细胞中天然基因的鸟枪法失活进行基因组注释:应用于BRCA2及亚效等位基因变异的意义

Genome annotation by shotgun inactivation of a native gene in hemizygous cells: application to BRCA2 with implication of hypomorphic variants.

作者信息

Ghosh Soma, Bhunia Anil K, Paun Bogdan C, Gilbert Samuel F, Dhru Urmil, Patel Kalpesh, Kern Scott E

机构信息

Department of Oncology, The Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University, Baltimore, Maryland, 21287.

出版信息

Hum Mutat. 2015 Feb;36(2):260-9. doi: 10.1002/humu.22736.

Abstract

The greatest interpretive challenge of modern medicine may be to functionally annotate the vast variation of human genomes. Demonstrating a proposed approach, we created a library of BRCA2 exon 27 shotgun-mutant plasmids including solitary and multiplex mutations to generate human knockin clones using homologous recombination. This 55-mutation, 13-clone syngeneic variance library (SyVaL) comprised severely affected clones having early-stop nonsense mutations, functionally hypomorphic clones having multiple missense mutations emphasizing the potential to identify and assess hypomorphic mutations in novel proteomic and epidemiologic studies, and neutral clones having multiple missense mutations. Efficient coverage of nonessential amino acids was provided by mutation multiplexing. Severe mutations were distinguished from hypomorphic or neutral changes by chemosensitivity assays (hypersensitivity to mitomycin C and acetaldehyde), by analysis of RAD51 focus formation, and by mitotic multipolarity. A multiplex unbiased approach of generating all-human SyVaLs in medically important genes, with random mutations in native genes, would provide databases of variants that could be functionally annotated without concerns arising from exogenous cDNA constructs or interspecies interactions, as a basis for subsequent proteomic domain mapping or clinical calibration if desired. Such gene-irrelevant approaches could be scaled up for multiple genes of clinical interest, providing distributable cellular libraries linked to public-shared functional databases.

摘要

现代医学最大的解释性挑战可能是对人类基因组的巨大变异进行功能注释。为了展示一种提议的方法,我们创建了一个BRCA2第27外显子鸟枪法突变体质粒文库,其中包括单突变和多重突变,以利用同源重组生成人类敲入克隆。这个包含55个突变、13个克隆的同基因变异文库(SyVaL)包括具有早期终止无义突变的严重受影响克隆、具有多个错义突变的功能亚效克隆(强调在新的蛋白质组学和流行病学研究中识别和评估亚效突变的潜力)以及具有多个错义突变的中性克隆。通过突变多重化实现了对非必需氨基酸的有效覆盖。通过化学敏感性测定(对丝裂霉素C和乙醛的超敏感性)、RAD51焦点形成分析以及有丝分裂多极性分析,将严重突变与亚效或中性变化区分开来。一种在医学重要基因中生成全人类SyVaL的多重无偏方法,在天然基因中产生随机突变,将提供可进行功能注释的变异数据库,而无需担心外源cDNA构建体或种间相互作用产生的问题,如有需要,可作为后续蛋白质组学结构域映射或临床校准的基础。这种与基因无关的方法可以扩大到多个具有临床意义的基因,提供与公共共享功能数据库相关联的可分发细胞文库。

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