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编码氧化鲨烯环化酶的基因结构——海参三萜生物合成的关键酶

Structure of Genes Encoding Oxidosqualene Cyclases-Key Enzymes of Triterpenoid Biosynthesis from Sea Cucumber .

作者信息

Baldaev Sergey N, Chausova Viktoria E, Isaeva Ksenia V, Boyko Alexey V, Stonik Valentin A, Isaeva Marina P

机构信息

G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far Eastern Branch, Russian Academy of Sciences, 159, Pr. 100 let Vladivostoku, 690022 Vladivostok, Russia.

Institute of High Technology and Advanced Materials, Far Eastern Federal University, Ajax Bay 10, Russky Island, 690922 Vladivostok, Russia.

出版信息

Int J Mol Sci. 2024 Nov 29;25(23):12881. doi: 10.3390/ijms252312881.

Abstract

Oxidosqualene cyclases (OSCs) are enzymes responsible for converting linear triterpenes into tetracyclic ones, which are known as precursors of other important and bioactive metabolites. Two OSCs genes encoding parkeol synthase and lanostadienol synthase have been found in representatives of the genera and (family Stichopodidae, order Synallactida). As a limited number of sea cucumber OSCs have been studied thus far, OSCs encoding gene(s) of the sea cucumber (family Sclerodactylidae, order Dendrochirotida) were investigated to fill this gap. Here, we employed RACEs, molecular cloning, and Oxford Nanopore Technologies to identify candidate OSC mRNAs and genes. The assembled cDNAs were 2409 bp () and 3263 bp (), which shared the same CDS size of 2163 bp encoding a 721-amino-acid protein. The . OSC1 and OSC2 had higher sequence identity similarity to each other (77.5%) than to other holothurian OSCs (64.7-71.0%). According to the sequence and molecular docking analyses, OSC1 with L436 is predicted to be parkeol synthase, while OSC2 with Q439 is predicted to be lanostadienol synthase. Based on the phylogenetic analysis, OSCs cDNAs clustered with other holothurian OSCs, forming the isolated branch. As a result of gene analysis, the high polymorphism and larger size of the OSC1 gene suggest that this gene may be an ancestor of the OSC2 gene. These results imply that the genome contains two OSC genes whose evolutionary pathways are different from those of the OSC genes in Stichopodidae.

摘要

氧化鲨烯环化酶(OSCs)是负责将线性三萜转化为四环三萜的酶,四环三萜是其他重要生物活性代谢物的前体。在 和 属(海参科,芋参目)的代表物种中发现了两个编码帕克醇合酶和羊毛甾二烯醇合酶的OSCs基因。由于迄今为止对海参OSCs的研究数量有限,因此对海参 (硬指参科,枝手目)的OSCs编码基因进行了研究,以填补这一空白。在这里,我们采用了快速扩增cDNA末端(RACEs)、分子克隆和牛津纳米孔技术来鉴定候选OSC mRNA和基因。组装后的cDNA分别为2409 bp()和3263 bp(),它们共享相同的2163 bp编码区,编码一个721个氨基酸的蛋白质。 海参的OSC1和OSC2彼此之间的序列同一性相似性(77.5%)高于与其他海参OSCs的相似性(64.7 - 71.0%)。根据序列和分子对接分析,预测具有L436的OSC1为帕克醇合酶,而具有Q439的OSC2为羊毛甾二烯醇合酶。基于系统发育分析,海参的OSCs cDNA与其他海参OSCs聚集在一起,形成了孤立的分支。基因分析结果表明,OSC1基因的高多态性和较大的大小表明该基因可能是OSC2基因的祖先。这些结果表明,海参的基因组包含两个OSC基因,其进化途径与海参科中的OSC基因不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80d8/11641436/093688f477c4/ijms-25-12881-g001.jpg

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