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FOXC1基因中一种新型L130F错义突变的分析。

Analyses of a novel L130F missense mutation in FOXC1.

作者信息

Ito Yoko A, Footz Tim K, Murphy Tara C, Courtens Winnie, Walter Michael A

机构信息

Department of Ophthalmology and Medical Genetics, University of Alberta, Edmonton, Alberta, USA.

出版信息

Arch Ophthalmol. 2007 Jan;125(1):128-35. doi: 10.1001/archopht.125.1.128.

DOI:10.1001/archopht.125.1.128
PMID:17210863
Abstract

OBJECTIVE

To understand how the novel L130F mutation, found in 2 patients with Axenfeld-Rieger syndrome, disrupts function of the forkhead box C1 protein (FOXC1).

METHODS

Sequencing DNA from patients with Axenfeld-Rieger syndrome identified a novel missense mutation that results in an L130F substitution in the FOXC1 gene. Site-directed mutagenesis was used to introduce the L130F mutation into the FOXC1 complementary DNA. The level of L130F protein expression was determined by means of immunoblotting. We determined the mutant protein's ability to localize to the nucleus, bind DNA, and transactivate a reporter construct.

RESULTS

The FOXC1 L130F mutant protein is expressed at levels similar to those of wild-type FOXC1. The L130F protein, however, migrated at an apparent reduced molecular weight compared with the wild-type protein, suggesting that the mutant and wild-type proteins may be differentially phosphorylated. The L130F protein also had a significantly impaired capacity to localize to the nucleus, bind DNA, and transactivate reporter genes.

CONCLUSIONS

The disease-causing L130F mutation further demonstrates that helix 3 of the forkhead domain is important for the FOXC1 protein to properly localize to the nucleus, bind DNA, and activate gene expression.

CLINICAL RELEVANCE

The inability of FOXC1 to function owing to the L130F mutation provides further insight into how disruptions in the FOXC1 gene lead to human Axenfeld-Rieger syndrome.

摘要

目的

了解在2例Axenfeld-Rieger综合征患者中发现的新型L130F突变如何破坏叉头框C1蛋白(FOXC1)的功能。

方法

对Axenfeld-Rieger综合征患者的DNA进行测序,鉴定出一种新型错义突变,该突变导致FOXC1基因发生L130F替换。采用定点诱变将L130F突变引入FOXC1互补DNA。通过免疫印迹法测定L130F蛋白的表达水平。我们确定了突变蛋白定位于细胞核、结合DNA和反式激活报告基因构建体的能力。

结果

FOXC1 L130F突变蛋白的表达水平与野生型FOXC1相似。然而,与野生型蛋白相比,L130F蛋白的迁移分子量明显降低,这表明突变蛋白和野生型蛋白可能存在不同的磷酸化状态。L130F蛋白定位于细胞核、结合DNA和反式激活报告基因的能力也显著受损。

结论

致病的L130F突变进一步证明,叉头结构域的螺旋3对于FOXC1蛋白正确定位于细胞核、结合DNA和激活基因表达很重要。

临床意义

由于L130F突变导致FOXC1无法发挥功能,这为深入了解FOXC1基因的破坏如何导致人类Axenfeld-Rieger综合征提供了进一步的线索。

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