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FOXL2叉头结构域中的错义突变会导致亚细胞定位错误、蛋白质聚集及转录激活受损。

Missense mutations in the forkhead domain of FOXL2 lead to subcellular mislocalization, protein aggregation and impaired transactivation.

作者信息

Beysen Diane, Moumné Lara, Veitia Reiner, Peters Hartmut, Leroy Bart P, De Paepe Anne, De Baere Elfride

机构信息

Center for Medical Genetics, Ghent University Hospital, 9000 Ghent, Belgium.

出版信息

Hum Mol Genet. 2008 Jul 1;17(13):2030-8. doi: 10.1093/hmg/ddn100. Epub 2008 Mar 27.

Abstract

Mutations of the FOXL2 gene have been shown to cause blepharophimosis syndrome (BPES), characterized by an eyelid malformation associated with premature ovarian failure or not. Recently, polyalanine expansions and truncating FOXL2 mutations have been shown to lead to protein mislocalization, aggregation and altered transactivation. Here, we study the molecular consequences of 17 naturally occurring FOXL2 missense mutations. Most of them map to the conserved DNA-binding forkhead domain (FHD). The subcellular localization and aggregation pattern of the mutant FOXL2 proteins in COS-7 cells was variable and ranged from a diffuse nuclear distribution like the wild-type to extensive nuclear aggregation often in combination with cytoplasmic mislocalization and aggregation. We also studied the transactivation capacity of the mutants in FOXL2 expressing granulosa-like cells (KGN). Several mutants led to a loss-of-function, while others are suspected to induce a dominant negative effect. Interestingly, one mutant that is located outside the FHD (S217F), appeared to be hypermorphic and had no effect on intracellular protein distribution. This mutation gives rise to a mild BPES phenotype. In general, missense mutations located in the FHD lead to classical BPES and cannot be correlated with expression of the ovarian phenotype. However, a potential predictive value of localization and transactivation assays in the making of genotype-phenotype correlations is proposed. This is the first study to demonstrate that a significant number of missense mutations in the FHD of FOXL2 lead to mislocalization, protein aggregation and altered transactivation, and to provide insights into the pathogenesis associated with missense mutations of FOXL2 in human disease.

摘要

FOXL2基因突变已被证明可导致睑裂狭小综合征(BPES),其特征为伴有或不伴有卵巢早衰的眼睑畸形。最近,多聚丙氨酸扩展和截短型FOXL2突变已被证明会导致蛋白质定位错误、聚集及转录激活改变。在此,我们研究了17种天然存在的FOXL2错义突变的分子后果。其中大多数定位于保守的DNA结合叉头结构域(FHD)。突变型FOXL2蛋白在COS-7细胞中的亚细胞定位和聚集模式各不相同,范围从野生型的弥散性核分布到广泛的核聚集,常伴有细胞质定位错误和聚集。我们还研究了这些突变体在表达FOXL2的颗粒样细胞(KGN)中的转录激活能力。几种突变体导致功能丧失,而其他一些则被怀疑诱导显性负效应。有趣的是,位于FHD之外的一个突变体(S217F)似乎具有超形态性,且对细胞内蛋白质分布没有影响。这种突变导致轻度BPES表型。一般来说,位于FHD中的错义突变会导致典型的BPES,且与卵巢表型的表达无关。然而,我们提出了定位和转录激活分析在建立基因型-表型相关性方面的潜在预测价值。这是第一项证明FOXL2的FHD中大量错义突变导致定位错误、蛋白质聚集和转录激活改变,并为人类疾病中FOXL2错义突变相关发病机制提供见解的研究。

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