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褪黑素整合离子细胞中钠钾ATP酶的多维调节并促进缺氧诱导的呼吸空气鱼类的应激与缓解反应:综合方法的启示

Melatonin integrates multidimensional regulation of Na/K-ATPase in ionocytes and promotes stress and ease response in hypoxia-induced air-breathing fish: lessons from integrative approach.

作者信息

Peter M C Subhash, Gayathry R, Simi S, Peter Valsa S

机构信息

Inter-University Centre for Evolutionary and Integrative Biology-ICEIB, School of Life Sciences, University of Kerala, Kariavattom, Thiruvananthapuram, India.

Department of Zoology, University of Kerala, Kariavattom, Thiruvananthapuram, India.

出版信息

Front Physiol. 2023 Jan 12;13:1012729. doi: 10.3389/fphys.2022.1012729. eCollection 2022.

Abstract

As circadian regulator, melatonin is involved in many physiological processes including ionosmotic regulation in fishes. Na/K-ATPase (NKA), an ubiquitous Na/K transporter in ionocyte epithelia that drives electrochemical Na gradients and systemic osmotic integration, is a target of stress in fish. However, it is not certain how melatonin regulates NKA functions in ionocyte epithelia and how it modulates the adaptive response such as stress and ease response in fish particularly in hypoxia condition. We, thus, examined the short-term action of melatonin on the dynamics of NKA regulation in branchial, renal and intestinal ionocytes of hypoxia-induced air-breathing fish ( Bloch). Interestingly, we found a rise in plasma melatonin in fish when kept for 30 min of forced submergence in water and that indicates a role for melatonin in hypoxia tolerance. A fall in blood [Na K] occurred in these hypoxic fish which later showed a recovery after melatonin treatment. Similarly, melatonin favored the fall in NKA activity in branchial and renal epithelia of hypoxic fish, though it remarkably stimulated its activities in non-stressed fish. Likewise, melatonin that produced differential pattern of mRNA expression in nkaα1-subunit isoforms () and melatonin receptor isoforms ( ) in the tested ionocyte epithelia, showed reversed expression in hypoxic fish. In addition, the rise in NKAα-protein abundance in branchial and renal epithelia of melatonin-treated hypoxic fish indicated a recovery action of melatonin. A higher NKAα-immunoreactivity was found in the immunohistochemical and immunofluorescent images of branchial ionocytes and renal proximal and distal ionocytes of hypoxic fish treated with melatonin. Furthermore, an activation of PKA and PKG-dependent phosphorylation was found in branchial epithelia of hypoxic fish. The generated integrative parabola model showed that melatonin has a maximum targeted action on NKA function in the renal epithelia, suggesting its lead role in the integration of ionosmotic balance during the recovery or ease response. Over all, the data indicate a multidimensional and preferential action of melatonin on NKA regulation in fish ionocytes that integrate the recovery action against hypoxia, thus pointing to a major role for melatonin in stress and ease response in this fish.

摘要

作为昼夜节律调节因子,褪黑素参与许多生理过程,包括鱼类的离子渗透压调节。钠钾ATP酶(NKA)是离子细胞上皮中一种普遍存在的钠钾转运蛋白,它驱动电化学钠梯度和全身渗透压整合,是鱼类应激的一个靶点。然而,尚不确定褪黑素如何调节离子细胞上皮中的NKA功能,以及它如何调节鱼类的适应性反应,如应激和缓解反应,特别是在缺氧条件下。因此,我们研究了褪黑素对缺氧诱导的呼吸空气鱼类(布洛赫)鳃、肾和肠离子细胞中NKA调节动态的短期作用。有趣的是,我们发现,当鱼类在水中被迫浸没30分钟时,其血浆褪黑素水平会升高,这表明褪黑素在缺氧耐受性中发挥作用。这些缺氧鱼类的血液[Na⁺ K⁺]水平下降,而在褪黑素处理后,其水平随后出现恢复。同样,褪黑素有利于缺氧鱼类鳃和肾上皮中NKA活性的下降,尽管它在非应激鱼类中显著刺激其活性。同样,在测试的离子细胞上皮中,褪黑素在nkaα1亚基异构体()和褪黑素受体异构体()中产生了不同的mRNA表达模式,在缺氧鱼类中表现出相反的表达。此外,褪黑素处理的缺氧鱼类鳃和肾上皮中NKAα蛋白丰度的增加表明了褪黑素的恢复作用。在用褪黑素处理的缺氧鱼类的鳃离子细胞以及肾近端和远端离子细胞的免疫组织化学和免疫荧光图像中,发现了更高的NKAα免疫反应性。此外,在缺氧鱼类的鳃上皮中发现了PKA和PKG依赖性磷酸化的激活。生成的综合抛物线模型表明,褪黑素对肾上皮中的NKA功能具有最大的靶向作用,表明其在恢复或缓解反应过程中离子渗透压平衡整合中起主导作用。总体而言,数据表明褪黑素对鱼类离子细胞中NKA调节具有多维和优先作用,整合了针对缺氧的恢复作用,从而表明褪黑素在这种鱼类的应激和缓解反应中起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f7/9879292/7785521ecc63/fphys-13-1012729-g001.jpg

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