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海七鳃鳗(Petromyzon marinus)的紧密连接蛋白 - 组织特异性表达和对不同离子含量水的转录反应。

Claudins of sea lamprey (Petromyzon marinus) - organ-specific expression and transcriptional responses to water of varying ion content.

机构信息

Department of Biology, York University, Toronto, Ontario, Canada.

Department of Biology, McMaster University, Hamilton, Ontario, Canada.

出版信息

J Fish Biol. 2020 Mar;96(3):768-781. doi: 10.1111/jfb.14274. Epub 2020 Feb 16.

Abstract

The role of lamprey epithelium tight junctions (TJs) in the regulation of salt and water balance is poorly understood. This study reported on claudin (Cldn) TJ protein transcripts of pre-metamorphic larval and post-metamorphic juvenile sea lamprey (Petromyzon marinus) and the transcriptional response of genes encoding Cldns to changed environmental ion levels. Transcripts encoding Cldn-3b, -4, -5, -10, -14, -18 and -19 were identified, and mRNA expression profiles revealed the organ-specific presence of cldn-5 and -14, broad expression of cldn-3b, -4, -10, -18 and -19 and spatial differences in the mRNA abundance of cldn-4, -3b and -14 along the ammocoete intestine. Expression profiles were qualitatively similar in ammocoetes and juvenile fishes. Transcript abundance of genes encoding Cldns in osmoregulatory organs (gill, kidney, intestine and skin) was subsequently investigated after exposure of ammocoetes to ion-poor water (IPW) and juveniles to hyperosmotic conditions [60% sea water (SW)]. IPW-acclimated ammocoetes increased mRNA abundance of nearly all cldns in the gill. Simultaneously, cldn-10 abundance increased in the skin, whereas cldn-4, -14 and -18 decreased in the kidney. Ammocoete cldn mRNA abundance in the intestine was altered in a region-specific manner. In contrast, cldn transcript abundance was mostly downregulated in osmoregulatory organs of juvenile fish acclimated to SW - cldn-3b, -10 and -19 in the gill; cldn-3b, -4, -10 and -19 in the skin; cldn-3b in the kidney; and cldn-3b and -14 in the intestine. Data support the idea that Cldn TJ proteins play an important role in the osmoregulatory physiology of pre- and post-metamorphic sea lamprey and that Cldn participation can occur across organs, in an organ-specific manner, as well as differ spatially within organs, which contributes to the regulation of salt and water balance in these fishes.

摘要

在调节盐和水平衡方面,七鳃鳗上皮紧密连接(TJ)的作用知之甚少。本研究报告了处于变态前期幼鱼和变态后期幼鱼阶段的海七鳃鳗(Petromyzon marinus)的闭合蛋白(Cldn)TJ 蛋白转录本,以及编码 Cldn 的基因对环境离子水平变化的转录反应。鉴定出编码 Cldn-3b、-4、-5、-10、-14、-18 和 -19 的转录本,mRNA 表达谱显示 cldn-5 和 -14 在器官上的特异性存在,cldn-3b、-4、-10、-18 和 -19 的广泛表达,以及 cldn-4、-3b 和 -14 在鳗苗肠道中的 mRNA 丰度的空间差异。在鳗苗和幼鱼中,表达谱的定性相似。随后,在鳗苗暴露于贫离子水(IPW)和幼鱼暴露于高渗条件[60%海水(SW)]后,研究了渗透压调节器官(鳃、肾、肠和皮肤)中编码 Cldn 的基因的转录物丰度。适应 IPW 的鳗苗增加了鳃中几乎所有 Cldn 的 mRNA 丰度。同时,皮肤中 cldn-10 的丰度增加,而肾脏中 cldn-4、-14 和 -18 的丰度降低。肠中鳗苗 cldn mRNA 丰度以区域特异性方式发生改变。相比之下,适应 SW 的幼鱼渗透压调节器官中大多数 Cldn 转录物丰度下调 - 鳃中的 cldn-3b、-10 和 -19;皮肤中的 cldn-3b、-4、-10 和 -19;肾脏中的 cldn-3b;以及肠道中的 cldn-3b 和 -14。数据支持这样一种观点,即 Cldn TJ 蛋白在海七鳃鳗的变态前期和后期的渗透压生理学中发挥重要作用,并且 Cldn 的参与可以发生在器官之间,以器官特异性的方式,以及在器官内的空间差异,这有助于调节这些鱼类的盐和水平衡。

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