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超过 600 名 Zellweger 综合征谱系障碍患者的遗传分类和突变谱。

Genetic classification and mutational spectrum of more than 600 patients with a Zellweger syndrome spectrum disorder.

机构信息

Academic Medical Centre at the University of Amsterdam, The Netherlands.

出版信息

Hum Mutat. 2011 Jan;32(1):59-69. doi: 10.1002/humu.21388.

Abstract

The autosomal recessive Zellweger syndrome spectrum (ZSS) disorders comprise a main subgroup of the peroxisome biogenesis disorders and can be caused by mutations in any of 12 different currently identified PEX genes resulting in severe multisystemic disorders. To get insight into the spectrum of PEX gene defects among ZSS disorders and to investigate if additional human PEX genes are required for functional peroxisome biogenesis, we assigned over 600 ZSS fibroblast cell lines to different genetic complementation groups. These fibroblast cell lines were subjected to a complementation assay involving fusion by means of polyethylene glycol or a PEX cDNA transfection assay specifically developed for this purpose. In a majority of the cell lines we subsequently determined the underlying mutations by sequence analysis of the implicated PEX genes. The PEX cDNA transfection assay allows for the rapid identification of PEX genes defective in ZSS patients. The assignment of over 600 fibroblast cell lines to different genetic complementation groups provides the most comprehensive and representative overview of the frequency distribution of the different PEX gene defects. We did not identify any novel genetic complementation group, suggesting that all PEX gene defects resulting in peroxisome deficiency are currently known.

摘要

常染色体隐性 Zellweger 综合征谱(ZSS)疾病构成了过氧化物酶体生物发生障碍的主要亚群,可由 12 种不同的 PEX 基因突变引起,导致严重的多系统疾病。为了深入了解 ZSS 疾病中 PEX 基因突变谱,并研究是否需要其他人类 PEX 基因来进行功能性过氧化物酶体生物发生,我们将 600 多个 ZSS 成纤维细胞系分配到不同的遗传互补群中。这些成纤维细胞系通过聚乙二醇融合或专门为此目的开发的 PEX cDNA 转染测定进行互补测定。在大多数细胞系中,我们随后通过对涉及的 PEX 基因进行序列分析来确定潜在的突变。PEX cDNA 转染测定可快速鉴定 ZSS 患者中存在缺陷的 PEX 基因。将 600 多个成纤维细胞系分配到不同的遗传互补群中,提供了不同 PEX 基因突变的最全面和代表性的频率分布概述。我们没有发现任何新的遗传互补群,表明导致过氧化物酶体缺乏的所有 PEX 基因突变目前均已被发现。

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