首页> 外文期刊>Journal of Comparative Physiology, B. Biochemical, Systemic, and Environmental Physiology >Does Japanese medaka (Oryzias latipes) exhibit a gill Na+/K+-ATPase isoform switch during salinity change?
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Does Japanese medaka (Oryzias latipes) exhibit a gill Na+/K+-ATPase isoform switch during salinity change?

机译:在盐度变化期间,日本(Oryzias latipes)是否表现出g Na + / K + -ATPase同工型转换?

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Some euryhaline teleosts exhibit a switch in gill Na+/K+-ATPase (Nka) alpha isoform when moving between fresh water (FW) and seawater (SW). The present study tested the hypothesis that a similar mechanism is present in Japanese medaka and whether salinity affects ouabain, Mg2+, Na+ and K+ affinity of the gill enzyme. Phylogenetic analysis classified six separate medaka Nka alpha isoforms (alpha 1a, alpha 1b, alpha 1c, alpha 2, alpha 3a and alpha 3b). Medaka acclimated long-term (> 30 days) to either FW or SW had similar gill expression of alpha 1c, alpha 2, alpha 3a and alpha 3b, while both alpha 1a and alpha 1b were elevated in SW. Since a potential isoform shift may rely on early changes in transcript abundance, we conducted two short-term (1-3 days) salinity transfer experiments. FW to SW acclimation induced an elevation of alpha 1b and alpha 1a after 1 and 3 days. SW to FW acclimation reduced alpha 1b after 3 days with no other alpha isoforms affected. To verify that the responses were typical, additional transport proteins were examined. Gill ncc and nhe3 expression were elevated in FW, while cftr and nkcc1a were up-regulated in SW. This is in accordance with putative roles in ion-uptake and secretion. SW-acclimated medaka had higher gill Nka V (max) and lower apparent K (m) for Na+ compared to FW fish, while apparent affinities for K+, Mg2+ and ouabain were unchanged. The present study showed that the Japanese medaka does not exhibit a salinity-induced alpha isoform switch and therefore suggests that Na+ affinity changes involve altered posttranslational modification or intermolecular interactions.
机译:当在淡水(FW)和海水(SW)之间移动时,某些淡滨鱼硬骨鱼的g Na + / K + -ATPase(Nka)α亚型会发生变化。本研究检验了一种假设,即在日本中存在类似的机制,并且盐度是否会影响g酶的哇巴因,Mg2 +,Na +和K +亲和力。系统发育分析对六种分开的高Nkaα亚型(α1a,α1b,α1c,α2,α3a和α3b)进行了分类。 Medaka长期(> 30天)适应FW或SW时,α1c,α2,α3a和α3b的g表达相似,而SW中的α1a和α1b均升高。由于潜在的亚型转移可能依赖于转录本丰度的早期变化,因此我们进行了两个短期(1-3天)盐度转移实验。从FW到SW的适应会在1天和3天后引起alpha 1b和alpha 1a升高。 3天后,SW到FW的适应减少了alpha 1b,而没有其他alpha亚型受到影响。为了验证反应是典型的,检查了其他转运蛋白。 F中ncc和nhe3的表达在FW中升高,而cftr和nkcc1a在SW中上调。这与推定的离子吸收和分泌作用一致。与FW鱼相比,适应SW的medaka的Na + ill Nka V(max)高,表观K(m)较低,而K +,Mg2 +和ouabain的表观亲和力没有变化。本研究表明日本the没有表现出盐度诱导的α同工型转换,因此表明Na +亲和力变化涉及翻译后修饰或分子间相互作用的改变。

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