Li Miaoxin, Cheng Tat-Sun, Ho Philip W-L, Chan Koon-Ho, Mak Windsor, Cheung Raymond T-F, Ramsden David B, Sham Pak-Chung, Song Youqiang, Ho Shu-Leong
Department of Biochemistry, University of Hong Kong, Hong Kong, China.
J Peripher Nerv Syst. 2009 Mar;14(1):14-21. doi: 10.1111/j.1529-8027.2009.00201.x.
Charcot-Marie-Tooth (CMT) neuropathy is inherited with genetic and clinical heterogeneity. The X-linked form (CMTX) is linked to mutations in the GJB1 gene. However, the genotype-phenotype correlation between variants in the non-coding region of GJB1 gene and CMTX is unclear. We found two structural variants (-459C>T and -713G>A) in the 5' non-coding region of a transcript (Ref seq ID: NM_000166) of the GJB1 gene and explored its association with CMTX in two Chinese families. All family members who carried the -459C>T variant either were symptomatic or had abnormal electrophysiological studies compatible with CMTX, whereas all the non-symptomatic family members who had normal electrophysiological studies and 10 healthy unrelated controls did not have this variant. The other variant in the 5'-flanking region of the gene was found to be a benign polymorphism, although it had been earlier reported to be associated with CMTX in a Taiwanese family. Secondary structure prediction analysis of mutant mRNA using M fold and RNA structure softwares indicates that the -459C>T mutation may reduce translation efficiency of the GJB1 gene by changing its 5'-untranslated region secondary structure and abolishing the internal ribosome entry site at the initialization of its translation in Schwann cells. Our study can help clarify the causal mutations of CMTX in the non-protein coding region of GJB1.
夏科-马里-图思(CMT)神经病变具有遗传和临床异质性。X连锁型(CMTX)与GJB1基因突变相关。然而,GJB1基因非编码区变异与CMTX之间的基因型-表型相关性尚不清楚。我们在GJB1基因一个转录本(参考序列ID:NM_000166)的5'非编码区发现了两个结构变异(-459C>T和-713G>A),并在两个中国家系中探讨了其与CMTX的关联。所有携带-459C>T变异的家庭成员均有症状或电生理研究异常,符合CMTX表现,而所有电生理研究正常的无症状家庭成员以及10名健康无关对照均无此变异。该基因5'侧翼区的另一个变异被发现是一种良性多态性,尽管此前有报道称其在一个台湾家系中与CMTX相关。使用M fold和RNA structure软件对突变mRNA进行二级结构预测分析表明,-459C>T突变可能通过改变其5'非翻译区二级结构并在施万细胞翻译起始时消除内部核糖体进入位点,从而降低GJB1基因的翻译效率。我们的研究有助于阐明GJB1非蛋白质编码区CMTX的致病突变。