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OPA1 GTP酶结构域的结构模型可能解释了一个常染色体显性遗传性视神经萎缩家族中一种新突变的分子后果。

Structural model of the OPA1 GTPase domain may explain the molecular consequences of a novel mutation in a family with autosomal dominant optic atrophy.

作者信息

Dadgar Sharareh, Hagens Olivier, Dadgar Seyed Razi, Haghighi Ehsan Nobakht, Schimpf Simone, Wissinger Bernd, Garshasbi Masoud

出版信息

Exp Eye Res. 2006 Sep;83(3):702-6. doi: 10.1016/j.exer.2006.03.004. Epub 2006 May 12.

DOI:10.1016/j.exer.2006.03.004
PMID:16698014
Abstract

Autosomal dominant optic atrophy (ADOA) is the most frequent hereditary optic neuropathy. Three loci have been reported for ADOA: a major locus, harboring all identified mutations to date, maps to 3q28 (OPA1), a second locus is linked to 18q12.2-q12.3 (OPA4) and a third locus on 22q12.1-q13.1 (OPA5) has been reported recently. We describe a six-generation Iranian family in which optic atrophy runs as an autosomal dominant trait with an age of onset at 14-15years. We performed linkage analysis with markers mapping to 3q28 and 18q12.2-q12.3 and found linkage to 3q28. Subsequent sequencing of OPA1 identified a novel heterozygous missense mutation (c.1313A>G) replacing aspartic acid by glycine (p.D438G) in the GTPase domain of OPA1. Interestingly, another missense mutation at the same position (c.1313A>T, D438V) has been reported before in two unrelated German families, indicating a possible mutation hot spot. Further evidence supporting the importance of D438 is its conservation from human to acoelomata. OPA1 is believed to be the human orthologue of yeast MGM1, a dynamin-related protein required for the integrity of mitochondrial DNA. Homology modeling of the OPA1 GTPase domain revealed extensive structural similarity to the Dictyostelium dynamin A GTPase domain and showed that D438 may interact with residues of the G1 and the G4 motifs, which are crucial in coordinating GTP. Based on this analysis, we propose a mechanism which explains the gradual decline of vision in ADOA patients with OPA1 mutations at position 438.

摘要

常染色体显性遗传性视神经萎缩(ADOA)是最常见的遗传性视神经病变。已报道ADOA的三个基因座:一个主要基因座,包含迄今为止所有已鉴定的突变,定位于3q28(OPA1),第二个基因座与18q12.2 - q12.3(OPA4)连锁,最近报道了位于22q12.1 - q13.1的第三个基因座(OPA5)。我们描述了一个伊朗的六代家族,其中视神经萎缩作为常染色体显性性状遗传,发病年龄在14 - 15岁。我们使用定位于3q28和18q12.2 - q12.3的标记进行连锁分析,发现与3q28连锁。随后对OPA1进行测序,在OPA1的GTPase结构域中鉴定出一个新的杂合错义突变(c.1313A>G),该突变使天冬氨酸被甘氨酸取代(p.D438G)。有趣的是,之前在两个不相关的德国家族中报道过同一位置的另一个错义突变(c.1313A>T,D438V),表明这可能是一个突变热点。支持D438重要性的进一步证据是其从人类到无体腔动物的保守性。OPA1被认为是酵母MGM1的人类同源物,MGM1是一种与发动蛋白相关的蛋白质,对线粒体DNA的完整性至关重要。OPA1 GTPase结构域的同源建模显示与盘基网柄菌发动蛋白A GTPase结构域有广泛的结构相似性,并表明D438可能与G1和G4基序的残基相互作用,这对协调GTP至关重要。基于此分析,我们提出了一种机制,解释了OPA1第438位突变的ADOA患者视力逐渐下降的原因。

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