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单羧酸转运蛋白在外网状层代谢稳态调控中的作用:来自细胞特异性 Bsg 缺失的见解。

Role of monocarboxylate transporters in regulating metabolic homeostasis in the outer retina: Insight gained from cell-specific Bsg deletion.

机构信息

Department of Pathology, Anatomy, & Cell Biology, Thomas Jefferson University, Philadelphia, PA, USA.

Cole Eye Institute, Cleveland Clinic, Cleveland, OH, USA.

出版信息

FASEB J. 2020 Apr;34(4):5401-5419. doi: 10.1096/fj.201902961R. Epub 2020 Feb 28.

Abstract

The neural retina metabolizes glucose through aerobic glycolysis generating large amounts of lactate. Lactate flux into and out of cells is regulated by proton-coupled monocarboxylate transporters (MCTs), which are encoded by members of the Slc16a family. MCT1, MCT3, and MCT4 are expressed in the retina and require association with the accessory protein basigin, encoded by Bsg, for maturation and trafficking to the plasma membrane. Bsg mice have severely reduced electroretinograms (ERGs) and progressive photoreceptor degeneration, which is presumed to be driven by metabolic dysfunction resulting from loss of MCTs. To understand the basis of the Bsg phenotype, we generated mice with conditional deletion of Bsg in rods (RodΔBsg), cones (Cone∆Bsg), or retinal pigment epithelial cells (RPEΔBsg). RodΔBsg mice showed a progressive loss of photoreceptors, while ConeΔBsg mice did not display a degenerative phenotype. The RPEΔBsg mice developed a distinct phenotype characterized by severely reduced ERG responses as early as 4 weeks of age. The loss of lactate transporters from the RPE most closely resembled the phenotype of the Bsg mouse, suggesting that the regulation of lactate levels in the RPE and the subretinal space is essential for the viability and function of photoreceptors.

摘要

神经视网膜通过有氧糖酵解代谢葡萄糖,产生大量的乳酸。细胞内外的乳酸通量由质子偶联单羧酸转运蛋白(MCTs)调节,这些蛋白由 Slc16a 家族的成员编码。MCT1、MCT3 和 MCT4 在视网膜中表达,需要与辅助蛋白 basigin(由 Bsg 编码)结合,才能成熟并转运到质膜。Bsg 小鼠的视网膜电图(ERG)严重降低,并且感光细胞逐渐退化,据推测这是由于 MCTs 的缺失导致代谢功能障碍所致。为了了解 Bsg 表型的基础,我们生成了在视杆细胞(RodΔBsg)、视锥细胞(Cone∆Bsg)或视网膜色素上皮细胞(RPEΔBsg)中条件性缺失 Bsg 的小鼠。RodΔBsg 小鼠表现出感光细胞的进行性丧失,而 ConeΔBsg 小鼠没有表现出退行性表型。RPEΔBsg 小鼠表现出一种独特的表型,其特征是早在 4 周龄时 ERG 反应就严重降低。RPE 中乳酸转运蛋白的缺失最类似于 Bsg 小鼠的表型,这表明 RPE 和视网膜下腔中乳酸水平的调节对于感光细胞的存活和功能至关重要。

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