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野生型和导致青光眼的肌纤蛋白突变体形成的异源寡聚体在细胞内的隔离。

Intracellular sequestration of hetero-oligomers formed by wild-type and glaucoma-causing myocilin mutants.

作者信息

Gobeil Stéphane, Rodrigue Marc-André, Moisan Steve, Nguyen Thai D, Polansky Jon R, Morissette Jean, Raymond Vincent

机构信息

Molecular Endocrinology and Oncology Research Center, Laval University Hospital (CHUL) Research Center, Québec City, Québec, Canada.

出版信息

Invest Ophthalmol Vis Sci. 2004 Oct;45(10):3560-7. doi: 10.1167/iovs.04-0300.

Abstract

PURPOSE

To investigate mechanism(s) by which mutations in the olfactomedin domain of myocilin (MYOC), also known as the trabecular meshwork-induced glucocorticoid response (TIGR) gene, cause autosomal dominant open-angle glaucoma, the structure and properties of wild-type (WT) MYOC protein were examined, when expressed alone or simultaneously with the Q368X or K423E disease-associated polypeptides.

METHODS

Myocilin was analyzed in human aqueous humor and human trabecular meshwork (HTM) tissues. COS-7 and immortalized human trabecular meshwork (iHTM) cell lines were transfected with expression vectors encoding WT MYOC, mutated, and/or epitope-tagged cDNAs. MYOC proteins were characterized by double-epitope tagging procedures and/or Western blot analysis.

RESULTS

MYOC polypeptides formed highly similar oligomers in aqueous humor, HTM tissues, transfected COS-7, and iHTM cell lines. These complexes ranged in size from 116 kDa to more than 200 kDa. The smallest complex, approximately 116 kDa, resulted from dimerization between two MYOC monomers. Expression of a 150-kDa complex was strongest in aqueous humor. Cotransfections of the WT construct with either the Q368X or K423E cDNA produced MYOC(WT)/MYOC(mutant) heterodimers and higher molecular weight hetero-oligomeric complexes. WT homo-oligomeric complexes were secreted in the extracellular media of both cell lines whereas the Q368X and K423E mutant/mutant homomultimers and heteromeric WT/mutant oligomers remained sequestered intracellularly.

CONCLUSIONS

Formation of heteromeric WT/mutant complexes may provide a critical mechanism by which mutant myocilin polypeptides produce autosomal dominant open-angle glaucoma. The intracellular sequestration of abnormal WT/mutant complexes could lead to the malfunction of MYOC-expressing cells and to POAG potentially involving a dominant negative effect.

摘要

目的

肌纤蛋白(MYOC),也称为小梁网诱导糖皮质激素反应(TIGR)基因,其嗅觉介质结构域中的突变会导致常染色体显性开角型青光眼,为研究其致病机制,我们检测了野生型(WT)MYOC蛋白单独表达或与Q368X或K423E疾病相关多肽同时表达时的结构和特性。

方法

在人房水和人小梁网(HTM)组织中分析肌纤蛋白。用编码WT MYOC、突变的和/或表位标记的cDNA的表达载体转染COS-7和永生化人小梁网(iHTM)细胞系。通过双表位标记程序和/或蛋白质免疫印迹分析对MYOC蛋白进行表征。

结果

MYOC多肽在房水、HTM组织、转染的COS-7和iHTM细胞系中形成高度相似的寡聚体。这些复合物的大小范围从116 kDa到超过200 kDa。最小的复合物,约116 kDa,由两个MYOC单体二聚化形成。150 kDa复合物在房水中的表达最强。WT构建体与Q368X或K423E cDNA共转染产生MYOC(WT)/MYOC(突变体)异源二聚体和更高分子量的异源寡聚复合物。WT同源寡聚复合物分泌到两种细胞系的细胞外培养基中,而Q368X和K423E突变体/突变体同多聚体以及异源WT/突变体寡聚体则保留在细胞内。

结论

异源WT/突变体复合物的形成可能是突变型肌纤蛋白多肽导致常染色体显性开角型青光眼的关键机制。异常WT/突变体复合物在细胞内的隔离可能导致表达MYOC的细胞功能失调,并可能导致原发性开角型青光眼,这可能涉及显性负效应。

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