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温度驯化对鳕鱼( Gadus morhua)乳酸脱氢酶的影响:遗传、动力学和热力学方面

Effects of temperature acclimation on lactate dehydrogenase of cod (Gadus morhua): genetic, kinetic and thermodynamic aspects.

作者信息

Zakhartsev Maxim, Johansen Torild, Pörtner Hans O, Blust Ronny

机构信息

Department of Biology, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium.

出版信息

J Exp Biol. 2004 Jan;207(Pt 1):95-112. doi: 10.1242/jeb.00708.

Abstract

The aim of this study was to determine the effects of seasonal temperature variation on the functional properties of lactate dehydrogenase (LDH) from white muscle and liver of Norwegian coastal cod (Gadus morhua) and the possible relevance of LDH allelic variability for thermal acclimation. Two groups of fishes were acclimated to 4 degrees C or 12 degrees C for one year. Polymorphism was observed in only one (Ldh-B) of the three Ldh loci expressed in cod liver and/or muscle. Isozyme expression remained unchanged regardless of acclimation temperature (T(A)). The products of locus Ldh-B comprise only 14-19% (depending on the tissue) of total LDH activities and, consequently, differences between phenotypes are negligible in terms of their effect on LDH total performance. No kinetic (, V(max)) or thermodynamic (E(a), DeltaG) differences were found among Ldh-B phenotypes. Clear kinetic differences were observed between LDH isoforms in the two tissues. However, the Arrhenius activation energy (E(a)) for pyruvate reduction was the same for both tissues (E(a)=47 kJ mol(-1)) at T(A)=12 degrees C. Factors T(A), tissue and phenotype did not reveal a significant effect on the Gibbs free energy change (DeltaG) of the reaction (55.5 kJ mol(-1)). However, at T(A)=4 degrees C, the E(a) was increased (E(a)=53-56 kJ mol(-1)) and the temperature dependence of the constant of substrate inhibition for pyruvate () decreased in both muscle and liver. In conclusion, the strategies of LDH adjustment to seasonal temperature variations in cod involve changes in LDH concentration (quantitative), adjustment of thermodynamic (E(a)) and kinetic () properties of the LDH (modulative) but not the expression of alternative isoforms (qualitative). We assume that the observed increase in E(a) and the decrease of temperature dependence of at low T(A) is the result of structural changes of the LDH molecule (temperature-driven protein folding). We propose a new mechanism of metabolic compensation of seasonal temperature variations - cold acclimation results in changes in the kinetic and thermodynamic properties of LDH in a way that favours aerobic metabolism through reduction of the competition of LDH for pyruvate in normoxic conditions.

摘要

本研究的目的是确定季节性温度变化对挪威沿海鳕鱼(大西洋鳕)白色肌肉和肝脏中乳酸脱氢酶(LDH)功能特性的影响,以及LDH等位基因变异与热适应的可能相关性。两组鱼分别在4℃或12℃下驯化一年。在鳕鱼肝脏和/或肌肉中表达的三个Ldh基因座中,仅在一个基因座(Ldh - B)中观察到多态性。无论驯化温度(T(A))如何,同工酶表达均保持不变。Ldh - B基因座的产物仅占总LDH活性的14 - 19%(取决于组织),因此,表型之间的差异对LDH总体性能的影响可忽略不计。在Ldh - B表型之间未发现动力学(V(max))或热力学(E(a),ΔG)差异。在两种组织的LDH同工型之间观察到明显的动力学差异。然而,在T(A)=12℃时,两种组织丙酮酸还原的阿伦尼乌斯活化能(E(a))相同(E(a)=47 kJ·mol⁻¹)。因素T(A)、组织和表型对反应的吉布斯自由能变化(ΔG)(55.5 kJ·mol⁻¹)未显示出显著影响。然而,在T(A)=4℃时,E(a)增加(E(a)=53 - 56 kJ·mol⁻¹),并且在肌肉和肝脏中丙酮酸底物抑制常数的温度依赖性均降低。总之,鳕鱼中LDH适应季节性温度变化的策略包括LDH浓度的变化(定量)、LDH热力学(E(a))和动力学()特性的调整(调节),但不包括替代同工型的表达(定性)。我们假设在低T(A)时观察到的E(a)增加和温度依赖性降低是LDH分子结构变化(温度驱动的蛋白质折叠)的结果。我们提出了一种季节性温度变化的代谢补偿新机制——冷适应导致LDH的动力学和热力学特性发生变化,这种变化通过在常氧条件下减少LDH对丙酮酸的竞争来促进有氧代谢。

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