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BAHD乙酰基转移酶有助于乳香中伤口诱导的油胶树脂三萜生物合成。

BAHD acetyltransferase contributes to wound-induced biosynthesis of oleo-gum resin triterpenes in Boswellia.

作者信息

Kumar Aashish, Srivastava Payal, Srivastava Gaurav, Kumar Narendra, Chanotiya Chandan S, Ghosh Sumit

机构信息

Plant Biotechnology Division, Council of Scientific and Industrial Research-Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Lucknow, 226015, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

出版信息

Plant J. 2021 Sep;107(5):1403-1419. doi: 10.1111/tpj.15388. Epub 2021 Jul 28.

Abstract

Triterpenes (30-carbon isoprene compounds) represent a large and highly diverse class of natural products that play various physiological functions in plants. The triterpene biosynthetic enzymes, particularly those catalyzing the late-stage regio-selective modifications are not well characterized. The bark of select Boswellia trees, e.g., B. serrata exudes specialized oleo-gum resin in response to wounding, which is enriched with boswellic acids (BAs), a unique class of C3α-epimeric pentacyclic triterpenes with medicinal properties. The bark possesses a network of resin secretory structures comprised of vertical and horizontal resin canals, and amount of BAs in bark increases considerably in response to wounding. To investigate BA biosynthetic enzymes, we conducted tissue-specific transcriptome profiling and identified a wound-responsive BAHD acetyltransferase (BsAT1) of B. serrata catalyzing the late-stage C3α-O-acetylation reactions in the BA biosynthetic pathway. BsAT1 catalyzed C3α-O-acetylation of αBA, βBA, and 11-keto-βBA in vitro and in planta assays to produce all the major C3α-O-acetyl-BAs (3-acetyl-αBA, 3-acetyl-βBA, and 3-acetyl-11-keto-βBA) found in B. serrata bark and oleo-gum resin. BsAT1 showed strict specificity for BA scaffold, whereas it did not acetylate the more common C3β-epimeric pentacyclic triterpenes. The analysis of steady-state kinetics using various BAs revealed distinct substrate affinity and catalytic efficiency. BsAT1 transcript expression coincides with increased levels of C3α-O-acetyl-BAs in bark in response to wounding, suggesting a role of BsAT1 in wound-induced biosynthesis of C3α-O-acetyl-BAs. Overall, the results provide new insights into the biosynthesis of principal chemical constituents of Boswellia oleo-gum resin.

摘要

三萜类化合物(30碳异戊二烯化合物)是一大类高度多样化的天然产物,在植物中发挥着多种生理功能。三萜生物合成酶,尤其是那些催化后期区域选择性修饰的酶,目前尚未得到充分表征。某些乳香树(如锯叶乳香树)的树皮在受伤时会分泌特殊的油胶树脂,其中富含乳香酸(BAs),这是一类具有药用特性的独特的C3α-差向异构五环三萜。树皮具有由垂直和水平树脂道组成的树脂分泌结构网络,受伤后树皮中BAs的含量会显著增加。为了研究BA生物合成酶,我们进行了组织特异性转录组分析,并鉴定出锯叶乳香树中一种伤口响应型BAHD乙酰转移酶(BsAT1),它催化BA生物合成途径中的后期C3α-O-乙酰化反应。在体外和体内实验中,BsAT1催化了αBA、βBA和11-酮-βBA的C3α-O-乙酰化反应,生成了锯叶乳香树皮和油胶树脂中发现的所有主要C3α-O-乙酰-BAs(3-乙酰-αBA、3-乙酰-βBA和3-乙酰-11-酮-βBA)。BsAT1对BA骨架表现出严格的特异性,而它不会使更常见的C3β-差向异构五环三萜乙酰化。使用各种BAs进行的稳态动力学分析揭示了不同的底物亲和力和催化效率。BsAT1转录本表达与受伤后树皮中C3α-O-乙酰-BAs水平的增加相一致,表明BsAT1在伤口诱导的C3α-O-乙酰-BAs生物合成中发挥作用。总体而言,这些结果为乳香油胶树脂主要化学成分的生物合成提供了新的见解。

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