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KIAA1797/FOCAD 编码一种新型的局灶性黏附蛋白,具有神经胶质瘤中的肿瘤抑制功能。

KIAA1797/FOCAD encodes a novel focal adhesion protein with tumour suppressor function in gliomas.

机构信息

Institute of Human Genetics, Biomedical Center (BMZ), University of Bonn, 53105 Bonn, Germany.

出版信息

Brain. 2012 Apr;135(Pt 4):1027-41. doi: 10.1093/brain/aws045. Epub 2012 Mar 16.

Abstract

In a strategy to identify novel genes involved in glioma pathogenesis by molecular characterization of chromosomal translocation breakpoints, we identified the KIAA1797 gene, encoding a protein with an as yet undefined function, to be disrupted by a 7;9 translocation in a primary glioblastoma culture. Array-based comparative genomic hybridization detected deletions involving KIAA1797 in around half of glioblastoma cell lines and glioblastomas investigated. Quantification of messenger RNA levels in human tissues demonstrated highest KIAA1797 expression in brain, reduced levels in all glioblastoma cell lines and most glioblastomas and similar levels in glial and neuronal cells by analysis of different hippocampal regions from murine brain. Antibodies against KIAA1797 were generated and showed similar protein levels in cortex and subcortical white matter of human brain, while levels were significantly reduced in glioblastomas with KIAA1797 deletion. By immunofluorescence of astrocytoma cells, KIAA1797 co-localized with vinculin in focal adhesions. Physical interaction between KIAA1797 and vinculin was demonstrated via co-immunoprecipitation. Functional in vitro assays demonstrated a significant decrease in colony formation, migration and invasion capacity of LN18 and U87MG glioma cells carrying a homozygous KIAA1797 deletion ectopically expressing KIAA1797 compared with mock-transduced cells. In an in vivo orthotopic xenograft mouse model, U87MG tumour lesions expressing KIAA1797 had a significantly reduced volume compared to tumours not expressing KIAA1797. In summary, the frequently deleted KIAA1797 gene encodes a novel focal adhesion complex protein with tumour suppressor function in gliomas, which we name 'focadhesin'. Since KIAA1797 genetic variation has been implicated in Alzheimer's disease, our data are also relevant for neurodegeneration.

摘要

在一项通过对染色体易位断点进行分子特征分析以确定新的与胶质母细胞瘤发病机制相关基因的策略中,我们发现编码一种未知功能的蛋白的 KIAA1797 基因在原发性胶质母细胞瘤培养物中因 7;9 易位而被破坏。基于阵列的比较基因组杂交检测到约一半的胶质母细胞瘤细胞系和胶质母细胞瘤中存在 KIAA1797 的缺失。在人类组织中信使 RNA 水平的定量分析表明,在大脑中 KIAA1797 的表达最高,在所有胶质母细胞瘤细胞系和大多数胶质母细胞瘤中表达水平降低,而在来自鼠脑的不同海马区的神经胶质细胞和神经元细胞中的表达水平相似。生成了针对 KIAA1797 的抗体,并显示在人脑的皮质和皮质下白质中具有相似的蛋白水平,而在具有 KIAA1797 缺失的胶质母细胞瘤中水平显著降低。通过星形细胞瘤细胞的免疫荧光,KIAA1797 与粘着斑中的 vinculin 共定位。通过共免疫沉淀证明了 KIAA1797 和 vinculin 之间的物理相互作用。体外功能测定表明,携带 KIAA1797 纯合缺失并异位表达 KIAA1797 的 LN18 和 U87MG 神经胶质瘤细胞的集落形成、迁移和侵袭能力显著降低,与 mock 转导细胞相比。在体内原位异种移植小鼠模型中,与不表达 KIAA1797 的肿瘤相比,表达 KIAA1797 的 U87MG 肿瘤病变的体积显著减小。总之,频繁缺失的 KIAA1797 基因编码一种新的粘着斑复合物蛋白,在胶质母细胞瘤中具有肿瘤抑制功能,我们将其命名为 'focadhesin'。由于 KIAA1797 的遗传变异与阿尔茨海默病有关,我们的数据也与神经退行性变有关。

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