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PLP1基因重复导致佩利措伊斯-梅茨巴赫病患者成纤维细胞中PLP/DM20剪接平衡的过表达和改变。

PLP1 gene duplication causes overexpression and alteration of the PLP/DM20 splicing balance in fibroblasts from Pelizaeus-Merzbacher disease patients.

作者信息

Regis Stefano, Grossi Serena, Corsolini Fabio, Biancheri Roberta, Filocamo Mirella

机构信息

Laboratorio Diagnosi Pre-Postnatale Malattie Metaboliche, Istituto G. Gaslini, Largo G. Gaslini 5, 16147 Genova, Italy.

出版信息

Biochim Biophys Acta. 2009 Jun;1792(6):548-54. doi: 10.1016/j.bbadis.2009.04.002. Epub 2009 Apr 17.

Abstract

The PLP1 gene encodes two protein isoforms (PLP and DM20) which represent the predominant protein portion in myelin of the central nervous system. The two products are generated from the same primary transcript by alternative splicing. Defects of the PLP1 gene cause Pelizaeus-Merzbacher disease (PMD) or X-linked spastic paraplegia type 2 (SPG2). Duplication of the PLP1 gene is the most frequent gene defect, usually responsible for the classic form of PMD. To investigate the effects of PLP1 gene over dosage on gene expression, we analysed the PLP/DM20 expression profile in fibroblasts from three PMD patients with a PLP1 gene duplication. Gene expression was evaluated by real-time PCR using two different PLP1 amplicons and two different reference genes (GAPDH and GUSB). Fibroblasts from the three patients showed a 4-5 fold increase of PLP1 gene expression compared to fibroblasts from three normal controls. The contribution of the two alternatively spliced transcript isoforms (PLP and DM20) to the whole PLP1 gene expression was investigated using a DM20-specific amplicon. The three patients showed a decrease of the DM20/(DM20+PLP) ratio in comparison to the three normal controls, suggesting a prominent contribution of the PLP transcript to the PLP1 gene overexpression detected in the patients. Therefore, PLP1 gene duplication seems to result both in overexpression and in a shift of the PLP/DM20 splicing balance in direction of the PLP isoform.

摘要

PLP1基因编码两种蛋白质异构体(PLP和DM20),它们是中枢神经系统髓鞘中主要的蛋白质部分。这两种产物由同一初级转录本通过可变剪接产生。PLP1基因缺陷会导致佩利措伊斯-梅茨巴赫病(PMD)或X连锁痉挛性截瘫2型(SPG2)。PLP1基因重复是最常见的基因缺陷,通常导致经典型PMD。为了研究PLP1基因剂量增加对基因表达的影响,我们分析了三名PLP1基因重复的PMD患者成纤维细胞中的PLP/DM20表达谱。使用两种不同的PLP1扩增子和两种不同的参考基因(GAPDH和GUSB)通过实时PCR评估基因表达。与三名正常对照的成纤维细胞相比,三名患者的成纤维细胞中PLP1基因表达增加了4至5倍。使用DM20特异性扩增子研究了两种可变剪接转录本异构体(PLP和DM20)对整个PLP1基因表达的贡献。与三名正常对照相比,三名患者的DM20/(DM20 + PLP)比值降低,这表明PLP转录本对患者中检测到的PLP1基因过表达有显著贡献。因此,PLP1基因重复似乎既导致过表达,又导致PLP/DM20剪接平衡向PLP异构体方向转变。

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