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非洲肺鱼鳃中 Aquaporin 1 和 Aquaporin 3 的分子特征,以及夏眠三个阶段中其鳃部 mRNA 表达水平和蛋白质丰度的变化。

Molecular Characterization of Aquaporin 1 and Aquaporin 3 from the Gills of the African Lungfish, , and Changes in Their Branchial mRNA Expression Levels and Protein Abundance during Three Phases of Aestivation.

作者信息

Chng You R, Ong Jasmine L Y, Ching Biyun, Chen Xiu L, Hiong Kum C, Wong Wai P, Chew Shit F, Lam Siew H, Ip Yuen K

机构信息

Department of Biological Sciences, National University of Singapore Singapore, Singapore.

Natural Sciences and Science Education, National Institute of Education, Nanyang Technological University Singapore, Singapore.

出版信息

Front Physiol. 2016 Nov 10;7:532. doi: 10.3389/fphys.2016.00532. eCollection 2016.

Abstract

African lungfishes can undergo long periods of aestivation on land during drought. During aestivation, lungfishes are confronted with desiccation and dehydration, and their gills become non-functional and covered with a thick layer of dried mucus. Aquaporins (Aqps) are a superfamily of integral membrane proteins which generally facilitate the permeation of water through plasma membranes. This study aimed to obtain the complete cDNA coding sequences of and from the gills of , and to determine their branchial mRNA and protein expression levels during the induction, maintenance and arousal phases of aestivation. Dendrogramic analyses of the deduced Aqp1 and Aqp3 amino acid sequences of revealed their close relationships with those of and tetrapods. During the induction phase, there were significant decreases in the transcript levels of and in the gills of , but the branchial Aqp1 and Aqp3 protein abundance remained unchanged. As changes in transcription might precede changes in translation, this could be regarded as an adaptive response to decrease the protein abundance of Aqp1 and Aqp3 in the subsequent maintenance phase of aestivation. As expected, the branchial transcript levels and protein abundance of /Aqp1 and /Aqp3 were significantly down-regulated during the maintenance phase, probably attributable to the shutdown of branchial functions and the cessation of volume regulation of branchial epithelial cells. Additionally, these changes could reduce the loss of water through branchial epithelial surfaces, supplementing the anti-desiccating property of the dried mucus. Upon arousal, it was essential for the lungfish to restore branchial functions. Indeed, the protein abundance of Aqp1 recovered partially, with complete recovery of mRNA expression level and protein abundance of Aqp3, in the gills of after 3 days of arousal. These results provide insights into how regulates branchial Aqp expression to cope with desiccation and rehydration during different phases of aestivation.

摘要

非洲肺鱼在干旱期间能在陆地上进行长时间的夏眠。在夏眠期间,肺鱼面临干燥和脱水,它们的鳃失去功能并被一层厚厚的干黏液覆盖。水通道蛋白(Aqps)是一类整合膜蛋白超家族,通常促进水通过质膜的渗透。本研究旨在从非洲肺鱼的鳃中获得 和 的完整cDNA编码序列,并确定它们在夏眠的诱导、维持和苏醒阶段鳃中的mRNA和蛋白质表达水平。对非洲肺鱼推导的Aqp1和Aqp3氨基酸序列的系统发育分析表明,它们与 和四足动物的序列关系密切。在诱导阶段,非洲肺鱼鳃中 和 的转录水平显著下降,但鳃中Aqp1和Aqp3的蛋白质丰度保持不变。由于转录变化可能先于翻译变化,这可被视为一种适应性反应,以在随后的夏眠维持阶段降低Aqp1和Aqp3的蛋白质丰度。正如预期的那样,在维持阶段, /Aqp1和 /Aqp3的鳃转录水平和蛋白质丰度显著下调,这可能归因于鳃功能的关闭和鳃上皮细胞体积调节的停止。此外,这些变化可以减少通过鳃上皮表面的水分流失,补充干黏液的抗干燥特性。苏醒时,肺鱼恢复鳃功能至关重要。事实上,苏醒3天后,非洲肺鱼鳃中Aqp1的蛋白质丰度部分恢复,Aqp3的mRNA表达水平和蛋白质丰度完全恢复。这些结果为非洲肺鱼在夏眠不同阶段如何调节鳃Aqp表达以应对干燥和再水化提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02a7/5102888/ffcb2ea5c921/fphys-07-00532-g0001.jpg

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