Madern Dominique
Laboratoire de Biophysique Moléculaire, Institut de Biologie Structurale CEA-CNRS-UJF, 41 rue Jules Horowitz, 38027 Grenoble Cedex 1, France.
J Mol Evol. 2002 Jun;54(6):825-40. doi: 10.1007/s00239-001-0088-8.
The NAD(P)-dependent malate (L-MalDH) and NAD-dependent lactate (L-LDH) form a large super-family that has been characterized in organisms belonging to the three domains of life. In the first part of this study, the group of [LDH-like] L-MalDH, which are malate dehydrogenases resembling lactate dehydrogenase, were analyzed and clearly defined with respect to the other enzymes. In the second part, the phylogenetic relationships of the whole super-family were presented by taking into account the [LDH-like] L-MalDH. The inferred tree unambiguously shows that two ancestral genes duplications, and not one as generally thought, are needed to explain both the distribution into two enzymatic functions and the observation of three main groups within the super-family: L-LDH, [LDH-like] L-MalDH, and dimeric L-MalDH. In addition, various cases of functional changes within each group were observed and analyzed. The direction of evolution was found to always be polarized: from enzymes with a high stringency of substrate recognition to enzymes with a broad substrate specificity. A specific phyletic distribution of the L-LDH, [LDH-like] L-MalDH, and dimeric L-MalDH over the Archaeal, Bacterial, and Eukaryal domains was observed. This was analyzed in the light of biochemical, structural, and genomic data available for the L-LDH, [LDH-like] L-MalDH, and dimeric L-MalDH. This analysis led to the elaboration of a refined evolutionary scenario of the super-family, in which the selection of L-LDH and the fate of L-MalDH during mitochrondrial genesis are presented.
NAD(P) 依赖的苹果酸脱氢酶(L-MalDH)和 NAD 依赖的乳酸脱氢酶(L-LDH)构成了一个庞大的超家族,该超家族已在属于生命三个域的生物体中得到表征。在本研究的第一部分,对[LDH 样]L-MalDH 组进行了分析,该组是类似于乳酸脱氢酶的苹果酸脱氢酶,并相对于其他酶进行了明确界定。在第二部分中,通过考虑[LDH 样]L-MalDH 呈现了整个超家族的系统发育关系。推断的树明确显示,需要两次而非通常认为的一次祖先基因复制,才能解释超家族中两种酶功能的分布以及三个主要组的观察结果:L-LDH、[LDH 样]L-MalDH 和二聚体 L-MalDH。此外,观察并分析了每组内功能变化的各种情况。发现进化方向始终是极化的:从底物识别严格性高 的酶到底物特异性广泛的酶。观察到 L-LDH、[LDH 样]L-MalDH 和二聚体 L-MalDH 在古菌域、细菌域和真核域中的特定系统发育分布。根据可获得的 L-LDH、[LDH 样]L-MalDH 和二聚体 L-MalDH 的生化、结构和基因组数据对其进行了分析。该分析导致了超家族精细进化场景的阐述,其中呈现了 L-LDH 的选择以及线粒体发生过程中 L-MalDH 的命运。