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有证据表明核受体与萜烯合酶有关。

Evidence that nuclear receptors are related to terpene synthases.

机构信息

Institute of Quantitative Biology, Biochemistry, and Biotechnology, School of Biological Sciences, University of Edinburgh, Edinburgh, UK.

Program in Neuroscience, University of Glasgow, Glasgow, UK.

出版信息

J Mol Endocrinol. 2022 Mar 14;68(3):153-166. doi: 10.1530/JME-21-0156.

Abstract

Ligand-activated nuclear receptors (NRs) orchestrate development, growth, and reproduction across all animal lifeforms - the Metazoa - but how NRs evolved remains mysterious. Given the NR ligands including steroids and retinoids are predominantly terpenoids, we asked whether NRs might have evolved from enzymes that catalyze terpene synthesis and metabolism. We provide evidence suggesting that NRs may be related to the terpene synthase (TS) enzyme superfamily. Based on over 10,000 3D structural comparisons, we report that the NR ligand-binding domain and TS enzymes share a conserved core of seven α-helical segments. In addition, the 3D locations of the major ligand-contacting residues are also conserved between the two protein classes. Primary sequence comparisons reveal suggestive similarities specifically between NRs and the subfamily of cis-isoprene transferases, notably with dehydrodolichyl pyrophosphate synthase and its obligate partner, NUS1/NOGOB receptor. Pharmacological overlaps between NRs and TS enzymes add weight to the contention that they share a distant evolutionary origin, and the combined data raise the possibility that a ligand-gated receptor may have arisen from an enzyme antecedent. However, our findings do not formally exclude other interpretations such as convergent evolution, and further analysis will be necessary to confirm the inferred relationship between the two protein classes.

摘要

配体激活的核受体(NRs)在所有动物生命形式中协调发育、生长和繁殖 - 后生动物,但 NRs 的进化方式仍然神秘。鉴于 NR 配体包括类固醇和视黄酸主要是萜类化合物,我们想知道 NRs 是否可能是由催化萜类合成和代谢的酶进化而来。我们提供的证据表明,NRs 可能与萜烯合酶(TS)酶超家族有关。基于超过 10000 次 3D 结构比较,我们报告说,NR 配体结合域和 TS 酶共享七个α-螺旋片段的保守核心。此外,两种蛋白质类别的主要配体结合残基的 3D 位置也保持一致。与 NR 之间存在明显相似性的一级序列比较,特别是在 cis-isoprene 转移酶的亚家族中,尤其是与 dehydrodolichyl pyrophosphate synthase 和其必需的伴侣 NUS1/NOGOB 受体之间。NRs 和 TS 酶之间的药理学重叠进一步支持了它们具有共同的遥远进化起源的观点,综合数据提出了这样一种可能性,即配体门控受体可能是从酶的前身中产生的。然而,我们的发现并没有正式排除其他解释,如趋同进化,需要进一步分析来确认这两种蛋白质类之间推断出的关系。

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