生物
碳酸酐酶
视网膜变性
突变体
视网膜
视网膜
变性(医学)
细胞生物学
生物化学
碳酸酐酶Ⅱ
酶
基因
神经科学
医学
病理
作者
Zhenglin Yang,Bernardo V. Álvarez,Christina Chakarova,Li Jiang,Goutam Karan,Jeanne M. Frederick,Yu Zhao,Yves Sauvé,Xi Li,Eberhart Zrenner,Bernd Wissinger,Anneke I. den Hollander,Bradley J. Katz,Wolfgang Baehr,Frans P.M. Cremers,Joseph R. Casey,Shomi S. Bhattacharya,Kang Zhang
摘要
Retina and retinal pigment epithelium (RPE) belong to the metabolically most active tissues in the human body. Efficient removal of acid load from retina and RPE is a critical function mediated by the choriocapillaris. However, the mechanism by which pH homeostasis is maintained is largely unknown. Here, we show that a functional complex of carbonic anhydrase 4 (CA4) and Na+/bicarbonate co-transporter 1 (NBC1) is specifically expressed in the choriocapillaris and that missense mutations in CA4 linked to autosomal dominant rod–cone dystrophy disrupt NBC1-mediated HCO3− transport. Our results identify a novel pathogenic pathway in which a defect in a functional complex involved in maintaining pH balances, but not expressed in retina or RPE, leads to photoreceptor degeneration. The importance of a functional CA4 for survival of photoreceptors implies that CA inhibitors, which are widely used as medications, particularly in the treatment of glaucoma, may have long-term adverse effects on vision.
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