Unraveling the multiplicity of geranylgeranyl reductases in Archaea: potential roles in saturation of terpenoids.

IF 2.6 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Alka Rao, Arnold J M Driessen
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引用次数: 0

Abstract

The enzymology of the key steps in the archaeal phospholipid biosynthetic pathway has been elucidated in recent years. In contrast, the complete biosynthetic pathways for proposed membrane regulators consisting of polyterpenes, such as carotenoids, respiratory quinones, and polyprenols remain unknown. Notably, the multiplicity of geranylgeranyl reductases (GGRs) in archaeal genomes has been correlated with the saturation of polyterpenes. Although GGRs, which are responsible for saturation of the isoprene chains of phospholipids, have been identified and studied in detail, there is little information regarding the structure and function of the paralogs. Here, we discuss the diversity of archaeal membrane-associated polyterpenes which is correlated with the genomic loci, structural and sequence-based analyses of GGR paralogs.

Abstract Image

揭示古细菌中香叶醇还原酶的多样性:在萜类饱和中的潜在作用。
近年来,古菌磷脂生物合成途径中关键步骤的酶学研究已得到阐明。相比之下,由类胡萝卜素、呼吸醌和多酚等多萜类化合物组成的拟议膜调节剂的完整生物合成途径仍然未知。值得注意的是,古生菌基因组中的香叶基纯碱还原酶(GGRs)的多样性与多萜烯的饱和度有关。虽然负责磷脂异戊二烯链饱和的 GGRs 已被确定并进行了详细研究,但有关其旁系基因的结构和功能的信息却很少。在此,我们讨论了古细菌膜相关多萜烯的多样性,这与 GGR 旁系亲属的基因组位点、结构和基于序列的分析相关。
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来源期刊
Extremophiles
Extremophiles 生物-生化与分子生物学
CiteScore
6.80
自引率
6.90%
发文量
28
审稿时长
2 months
期刊介绍: Extremophiles features original research articles, reviews, and method papers on the biology, molecular biology, structure, function, and applications of microbial life at high or low temperature, pressure, acidity, alkalinity, salinity, or desiccation; or in the presence of organic solvents, heavy metals, normally toxic substances, or radiation.
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