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2-酮戊二酸依赖性双加氧酶驱动茄属植物中甾体生物碱结构多样性的扩展。

2-oxoglutarate-dependent dioxygenases drive expansion of steroidal alkaloid structural diversity in the genus Solanum.

作者信息

Sonawane Prashant D, Jozwiak Adam, Barbole Ranjit, Panda Sayantan, Abebie Bekele, Kazachkova Yana, Gharat Sachin A, Ramot Ofir, Unger Tamar, Wizler Guy, Meir Sagit, Rogachev Ilana, Doron-Faigenboim Adi, Petreikov Marina, Schaffer Arthur, Giri Ashok P, Scherf Tali, Aharoni Asaph

机构信息

Department of Plant and Environmental Sciences, Weizmann Institute of Science, Rehovot, 7610001, Israel.

Department of Natural Products, Max Planck Institute for Chemical Ecology, Jena, 07745, Germany.

出版信息

New Phytol. 2022 May;234(4):1394-1410. doi: 10.1111/nph.18064. Epub 2022 Mar 28.

Abstract

Solanum steroidal glycoalkaloids (SGAs) are renowned defence metabolites exhibiting spectacular structural diversity. Genes and enzymes generating the SGA precursor pathway, SGA scaffold and glycosylated forms have been largely identified. Yet, the majority of downstream metabolic steps creating the vast repertoire of SGAs remain untapped. Here, we discovered that members of the 2-OXOGLUTARATE-DEPENDENT DIOXYGENASE (2-ODD) family play a prominent role in SGA metabolism, carrying out three distinct backbone-modifying oxidative steps in addition to the three formerly reported pathway reactions. The GLYCOALKALOID METABOLISM34 (GAME34) enzyme catalyses the conversion of core SGAs to habrochaitosides in wild tomato S. habrochaites. Cultivated tomato plants overexpressing GAME34 ectopically accumulate habrochaitosides. These habrochaitoside enriched plants extracts potently inhibit Puccinia spp. spore germination, a significant Solanaceae crops fungal pathogen. Another 2-ODD enzyme, GAME33, acts as a desaturase (via hydroxylation and E/F ring rearrangement) forming unique, yet unreported SGAs. Conversion of bitter α-tomatine to ripe fruit, nonbitter SGAs (e.g. esculeoside A) requires two hydroxylations; while the known GAME31 2-ODD enzyme catalyses hydroxytomatine formation, we find that GAME40 catalyses the penultimate step in the pathway and generates acetoxy-hydroxytomatine towards esculeosides accumulation. Our results highlight the significant contribution of 2-ODD enzymes to the remarkable structural diversity found in plant steroidal specialized metabolism.

摘要

茄属甾体糖苷生物碱(SGAs)是著名的防御代谢产物,具有惊人的结构多样性。生成SGA前体途径、SGA骨架和糖基化形式的基因和酶已基本确定。然而,产生大量SGA种类的大多数下游代谢步骤仍未被开发。在这里,我们发现2-氧代戊二酸依赖性双加氧酶(2-ODD)家族成员在SGA代谢中发挥着重要作用,除了先前报道的三个途径反应外,还进行三个不同的骨架修饰氧化步骤。糖生物碱代谢34(GAME34)酶催化野生番茄S. habrochaites中核心SGA向哈布罗糖苷的转化。过表达GAME34的栽培番茄植株异位积累哈布罗糖苷。这些富含哈布罗糖苷的植物提取物能有效抑制柄锈菌属孢子萌发,柄锈菌属是茄科作物的一种重要真菌病原体。另一种2-ODD酶GAME33作为去饱和酶(通过羟基化和E/F环重排),形成独特但未报道的SGA。将苦味α-番茄碱转化为成熟果实中的非苦味SGA(如番茄皂苷A)需要两次羟基化;虽然已知的GAME31 2-ODD酶催化羟基番茄碱的形成,但我们发现GAME40催化该途径的倒数第二步,并生成乙酰氧基羟基番茄碱以促进番茄皂苷的积累。我们的结果突出了2-ODD酶对植物甾体特殊代谢中显著结构多样性的重要贡献。

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