Krithika Ramakrishnan, Srivastava Prabhakar Lal, Rani Bajaj, Kolet Swati P, Chopade Manojkumar, Soniya Mantri, Thulasiram Hirekodathakallu V
Chemical Biology Unit, Division of Organic Chemistry, CSIR- National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411008.
1] Chemical Biology Unit, Division of Organic Chemistry, CSIR- National Chemical Laboratory, Dr. Homi Bhabha Road, Pune 411008 [2] CSIR-Institute of Genomics and Integrative Biology, Mall Road, New Delhi 110007.
Sci Rep. 2015 Feb 5;5:8258. doi: 10.1038/srep08258.
Catharanthus roseus [L.] is a major source of the monoterpene indole alkaloids (MIAs), which are of significant interest due to their therapeutic value. These molecules are formed through an intermediate, cis-trans-nepetalactol, a cyclized product of 10-oxogeranial. One of the key enzymes involved in the biosynthesis of MIAs is an NAD(P)(+) dependent oxidoreductase system, 10-hydroxygeraniol dehydrogenase (Cr10HGO), which catalyses the formation of 10-oxogeranial from 10-hydroxygeraniol via 10-oxogeraniol or 10-hydroxygeranial. This work describes the cloning and functional characterization of Cr10HGO from C. roseus and its role in the iridoid biosynthesis. Substrate specificity studies indicated that, Cr10HGO has good activity on substrates such as 10-hydroxygeraniol, 10-oxogeraniol or 10-hydroxygeranial over monohydroxy linear terpene derivatives. Further it was observed that incubation of 10-hydroxygeraniol with Cr10HGO and iridoid synthase (CrIDS) in the presence of NADP(+) yielded a major metabolite, which was characterized as (1R, 4aS, 7S, 7aR)-nepetalactol by comparing its retention time, mass fragmentation pattern, and co-injection studies with that of the synthesized compound. These results indicate that there is concerted activity of Cr10HGO with iridoid synthase in the formation of (1R, 4aS, 7S, 7aR)-nepetalactol, an important intermediate in iridoid biosynthesis.
长春花是单萜吲哚生物碱(MIAs)的主要来源,由于其治疗价值,这些生物碱备受关注。这些分子通过中间体顺式-反式荆芥内酯形成,顺式-反式荆芥内酯是10-氧代香叶醛的环化产物。参与MIAs生物合成的关键酶之一是一种NAD(P)(+)依赖性氧化还原酶系统,即10-羟基香叶醇脱氢酶(Cr10HGO),它催化10-羟基香叶醇通过10-氧代香叶醇或10-羟基香叶醛形成10-氧代香叶醛。这项工作描述了来自长春花的Cr10HGO的克隆和功能表征及其在环烯醚萜生物合成中的作用。底物特异性研究表明,与单羟基线性萜烯衍生物相比,Cr10HGO对10-羟基香叶醇、10-氧代香叶醇或10-羟基香叶醛等底物具有良好的活性。此外,观察到在NADP(+)存在下,将10-羟基香叶醇与Cr10HGO和环烯醚萜合酶(CrIDS)一起孵育会产生一种主要代谢物,通过比较其保留时间、质量碎片模式以及与合成化合物的共注射研究,将其鉴定为(1R, 4aS, 7S, 7aR)-荆芥内酯。这些结果表明,Cr10HGO与环烯醚萜合酶在(1R, 4aS, 7S, 7aR)-荆芥内酯的形成中具有协同活性,(1R, 4aS, 7S, 7aR)-荆芥内酯是环烯醚萜生物合成中的一种重要中间体。