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南极鳕鱼线粒体功能与 ND6 易位。

Mitochondrial function in Antarctic nototheniids with ND6 translocation.

机构信息

Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, Germany.

出版信息

PLoS One. 2012;7(2):e31860. doi: 10.1371/journal.pone.0031860. Epub 2012 Feb 21.

Abstract

Fish of the suborder Notothenioidei have successfully radiated into the Southern Ocean and today comprise the dominant fish sub-order in Antarctic waters in terms of biomass and species abundance. During evolution in the cold and stable Antarctic climate, the Antarctic lineage of notothenioids developed several unique physiological adaptations, which make them extremely vulnerable to the rapid warming of Antarctic waters currently observed. Only recently, a further phenomenon exclusive to notothenioid fish was reported: the translocation of the mitochondrial gene encoding the NADH Dehydrogenase subunit 6 (ND6), an indispensable part of complex I in the mitochondrial electron transport system.This study investigated the potential physiological consequences of ND6 translocation for the function and thermal sensitivity of the electron transport system in isolated liver mitochondria of the two nototheniid species Notothenia coriiceps and Notothenia rossii, with special attention to the contributions of complex I (NADH DH) and complex II (Succinate DH) to oxidative phosphorylation. Furthermore, enzymatic activities of NADH:Cytochrome c Oxidoreductase and Cytochrome C Oxidase were measured in membrane-enriched tissue extracts.During acute thermal challenge (0-15°C), capacities of mitochondrial respiration and enzymatic function in the liver could only be increased until 9°C. Mitochondrial complex I (NADH Dehydrogenase) was fully functional but displayed a higher thermal sensitivity than the other complexes of the electron transport system, which may specifically result from its unique amino acid composition, revealing a lower degree of stability in notothenioids in general. We interpret the translocation of ND6 as functionally neutral but the change in amino acid sequence as adaptive and supportive of cold stenothermy in Antarctic nototheniids. From these findings, an enhanced sensitivity to ocean warming can be deduced for Antarctic notothenioid fish.

摘要

南极鳕鱼亚目鱼类成功辐射到南大洋,目前就生物量和物种丰富度而言,它们是南极水域的主要鱼类亚目。在寒冷稳定的南极气候的进化过程中,南极鳕鱼亚目的进化支发展出了几种独特的生理适应性,这使它们对目前观察到的南极水域的快速变暖极其敏感。直到最近,人们才报道了另一个仅存在于南极鳕鱼亚目鱼类中的现象:编码 NADH 脱氢酶亚单位 6(ND6)的线粒体基因易位,这是线粒体电子传递系统复合体 I 中不可或缺的一部分。

本研究调查了 ND6 易位对电子传递系统功能和热敏感性的潜在生理影响,研究对象为两种南极鳕鱼 Notothenia coriiceps 和 Notothenia rossii 的分离肝线粒体,特别关注复合体 I(NADH DH)和复合体 II(琥珀酸脱氢酶)对氧化磷酸化的贡献。此外,还测量了膜丰富组织提取物中 NADH:细胞色素 c 氧化还原酶和细胞色素 C 氧化酶的酶活性。

在急性热应激(0-15°C)期间,肝脏线粒体呼吸和酶功能的能力只能在 9°C 以下增加。线粒体复合体 I(NADH 脱氢酶)完全发挥功能,但比电子传递系统的其他复合体显示出更高的热敏感性,这可能是由于其独特的氨基酸组成,一般来说南极鳕鱼亚目具有较低的稳定性。我们将 ND6 的易位解释为功能上的中性,但氨基酸序列的变化是适应性的,并支持南极鳕鱼的冷温特性。从这些发现中,可以推断出南极鳕鱼亚目鱼类对海洋变暖的敏感性增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b20a/3283701/29d77c6489dd/pone.0031860.g001.jpg

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