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去饱和酶和延长酶的基因库揭示了56个真核生物基因组中的脂肪酸变异。

The repertoire of desaturases and elongases reveals fatty acid variations in 56 eukaryotic genomes.

作者信息

Hashimoto Kosuke, Yoshizawa Akiyasu C, Okuda Shujiro, Kuma Keiichi, Goto Susumu, Kanehisa Minoru

机构信息

Bioinformatics Center, Institute for Chemical Research, Kyoto University, Uji, Kyoto 611-0011, Japan.

出版信息

J Lipid Res. 2008 Jan;49(1):183-91. doi: 10.1194/jlr.M700377-JLR200. Epub 2007 Oct 7.

Abstract

The repertoire of biosynthetic enzymes found in an organism is an important clue for elucidating the chemical structural variations of various compounds. In the case of fatty acids, it is essential to examine key enzymes that are desaturases and elongases, whose combination determine the range of fatty acid structures. We systematically investigated 56 eukaryotic genomes to obtain 275 desaturase and 265 elongase homologs. Phylogenetic and motif analysis indicated that the desaturases consisted of four functionally distinct subfamilies and the elongases consisted of two subfamilies. From the combination of the subfamilies, we then predicted the ability to synthesize six types of fatty acids. Consequently, we found that the ranges of synthesizable fatty acids were often different even between closely related organisms. The reason is that, as well as diverging into subfamilies, the enzymes have functionally diverged within the individual subfamilies. Finally, we discuss how the adaptation to individual environments and the ability to synthesize specific metabolites provides some explanation for the diversity of enzyme functions. This study provides an example of a potent strategy to bridge the gap from genomic knowledge to chemical knowledge.

摘要

生物体中发现的生物合成酶库是阐明各种化合物化学结构变异的重要线索。就脂肪酸而言,检查作为去饱和酶和延长酶的关键酶至关重要,它们的组合决定了脂肪酸结构的范围。我们系统地研究了56个真核生物基因组,以获得275个去饱和酶和265个延长酶同源物。系统发育和基序分析表明,去饱和酶由四个功能不同的亚家族组成,延长酶由两个亚家族组成。然后,根据这些亚家族的组合,我们预测了合成六种脂肪酸的能力。因此,我们发现,即使在亲缘关系密切的生物体之间,可合成脂肪酸的范围也常常不同。原因是,这些酶除了分化成亚家族外,在各个亚家族内部也发生了功能分化。最后,我们讨论了对个体环境的适应以及合成特定代谢物的能力如何为酶功能的多样性提供一些解释。这项研究提供了一个有力策略的例子,以弥合从基因组知识到化学知识的差距。

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