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首页> 外文期刊>Human Molecular Genetics >Mutant carbonic anhydrase 4 impairs pH regulation and causes retinal photoreceptor degeneration.
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Mutant carbonic anhydrase 4 impairs pH regulation and causes retinal photoreceptor degeneration.

机译:突变的碳酸酐酶4会损害pH调节,并导致视网膜感光细胞变性。

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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.
机译:视网膜和视网膜色素上皮(RPE)属于人体中代谢最活跃的组织。从视网膜和RPE有效去除酸负荷是脉络膜毛细血管介导的关键功能。但是,维持pH稳态的机理在很大程度上尚不清楚。在这里,我们显示出碳酸酐酶4(CA4)和Na + /碳酸氢盐共转运蛋白1(NBC1)的功能复合体在脉络膜毛细血管中特异性表达,并且与常染色体显性杆状锥体营养不良有关的CA4错义突变破坏了NBC1介导的HCO3运输。我们的结果确定了一条新的致病途径,其中涉及维持pH平衡但未在视网膜或RPE中表达的功能性复合物的缺陷导致光感受器变性。功能性CA4对光感受器存活的重要性意味着,广泛用作药物,特别是在治疗青光眼的药物中,CA抑制剂可能会对视力产生长期不利影响。

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