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富含氧气的鳔利用单羧酸转运蛋白,通过乳酸诱导的根效应血红蛋白产生氧气。

O2-filled swimbladder employs monocarboxylate transporters for the generation of O2 by lactate-induced root effect hemoglobin.

机构信息

Department of Biological Sciences, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

PLoS One. 2012;7(4):e34579. doi: 10.1371/journal.pone.0034579. Epub 2012 Apr 4.

Abstract

The swimbladder volume is regulated by O(2) transfer between the luminal space and the blood In the swimbladder, lactic acid generation by anaerobic glycolysis in the gas gland epithelial cells and its recycling through the rete mirabile bundles of countercurrent capillaries are essential for local blood acidification and oxygen liberation from hemoglobin by the "Root effect." While O(2) generation is critical for fish flotation, the molecular mechanism of the secretion and recycling of lactic acid in this critical process is not clear. To clarify molecules that are involved in the blood acidification and visualize the route of lactic acid movement, we analyzed the expression of 17 members of the H(+)/monocarboxylate transporter (MCT) family in the fugu genome and found that only MCT1b and MCT4b are highly expressed in the fugu swimbladder. Electrophysiological analyses demonstrated that MCT1b is a high-affinity lactate transporter whereas MCT4b is a low-affinity/high-conductance lactate transporter. Immunohistochemistry demonstrated that (i) MCT4b expresses in gas gland cells together with the glycolytic enzyme GAPDH at high level and mediate lactic acid secretion by gas gland cells, and (ii) MCT1b expresses in arterial, but not venous, capillary endothelial cells in rete mirabile and mediates recycling of lactic acid in the rete mirabile by solute-specific transcellular transport. These results clarified the mechanism of the blood acidification in the swimbladder by spatially organized two lactic acid transporters MCT4b and MCT1b.

摘要

鳐鱼鳔的体积通过鳔腔和血液之间的 O(2) 转移来调节。在鳔组织中,气体分泌细胞通过无氧糖酵解生成的乳酸,以及通过逆流毛细血管网的奇异网(rete mirabile)进行再循环,这对于局部血液酸化和血红蛋白中的氧释放至关重要,这一过程被称为“Root 效应”。虽然 O(2) 的生成对于鱼类的上浮至关重要,但这一关键过程中乳酸分泌和再循环的分子机制尚不清楚。为了阐明参与血液酸化的分子,并可视化乳酸的运动途径,我们分析了 17 种鱼类 H(+)/单羧酸转运蛋白(MCT)家族成员在鳐鱼基因组中的表达情况,发现只有 MCT1b 和 MCT4b 在鳐鱼鳔中高度表达。电生理学分析表明,MCT1b 是一种高亲和力的乳酸转运蛋白,而 MCT4b 是一种低亲和力/高电导的乳酸转运蛋白。免疫组织化学分析表明:(i)MCT4b 与糖酵解酶 GAPDH 一起在气体分泌细胞中高表达,并介导气体分泌细胞的乳酸分泌;(ii)MCT1b 在 rete mirabile 的动脉毛细血管内皮细胞中表达,但在静脉毛细血管内皮细胞中不表达,并通过溶质特异性跨细胞转运来介导 rete mirabile 中乳酸的再循环。这些结果阐明了由空间组织的两种乳酸转运蛋白 MCT4b 和 MCT1b 实现鳔中血液酸化的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e7/3319611/63a7ddcbd0eb/pone.0034579.g001.jpg

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