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生精相关蛋白 7(SPATA7)基因概述。

The spermatogenesis-associated protein-7 (SPATA7) gene - an overview.

机构信息

Kallam Anji Reddy Molecular Genetics Laboratory, Prof Brien Holden Eye Research Centre, L.V. Prasad Eye Institute , Hyderabad, India.

出版信息

Ophthalmic Genet. 2020 Dec;41(6):513-517. doi: 10.1080/13816810.2020.1807025. Epub 2020 Aug 17.

Abstract

BACKGROUND

The spermatogenesis-associated protein-7 () gene encodes a ciliary protein that is expressed in the photoreceptors and in spermatocytes. Mutations in the SPATA7 gene are associated with congenital and early-onset forms of retinal dystrophy.

METHODS

Papers and review articles on SPATA7 were retrieved from the PubMed database using the search terms "SPATA7" and "spermatogenesis-associated protein 7". Those that were relevant to retinal disease or to the function of the gene were selected for review.

RESULTS

The locus was mapped as to chromosome 14, and the gene identified by screening of all genes in the refined genomic interval. Mutations in SPATA7 are associated with Leber congenital amaurosis (LCA) and early-onset retinitis pigmentosa. There are no clear-cut correlations between the genotypes and phenotypes in -associated disease, and phenotypic heterogeneity occurs among patients with the same mutation. The SPATA7 protein is expressed in the photoreceptor connecting cilia. Murine models of knockout have been useful in understanding the role of this gene in the retina at the cellular and molecular levels.

CONCLUSION

Most of the mutations in the are nonsense or frameshifts and are predicted to lead to loss of function. Clinical heterogeneity is often seen in patients with mutations. Animal models of knockout indicate that the protein has a key role in organizing the ciliary protein complexes.

摘要

背景

生精相关蛋白 7()基因编码一种纤毛蛋白,在光感受器和精母细胞中表达。SPATA7 基因突变与先天性和早发性视网膜营养不良有关。

方法

使用“SPATA7”和“生精相关蛋白 7”作为检索词,从 PubMed 数据库中检索有关 SPATA7 的论文和综述文章,选择与视网膜疾病或基因功能相关的文章进行综述。

结果

定位到 14 号染色体上的 基因座,通过筛选精细基因组区间内的所有基因来鉴定该基因。SPATA7 突变与莱伯先天性黑矇(LCA)和早发性视网膜色素变性有关。与 - 相关疾病的基因型和表型之间没有明确的相关性,并且具有相同突变的患者表现出表型异质性。SPATA7 蛋白在光感受器连接纤毛中表达。鼠模型的 基因敲除有助于理解该基因在视网膜细胞和分子水平上的作用。

结论

大多数 基因突变是无义或移码突变,预计会导致功能丧失。具有 基因突变的患者通常表现出临床异质性。 基因敲除的动物模型表明该蛋白在组织纤毛蛋白复合物中起关键作用。

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