diterpene biosynthesis
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2021 ◽  
Vol 4 (1) ◽  
Author(s):  
Baiying Xing ◽  
Jiahui Yu ◽  
Changbiao Chi ◽  
Xueyang Ma ◽  
Qingxia Xu ◽  
...  

AbstractPimarane-type diterpenoids are widely distributed in all domains of life, but no structures or catalytic mechanisms of pimarane-type diterpene synthases (DTSs) have been characterized. Here, we report that two class I DTSs, Sat1646 and Stt4548, each accept copalyl diphosphate (CPP) as the substrate to produce isopimara-8,15-diene (1). Sat1646 can also accept syn-CPP and produce syn-isopimaradiene/pimaradiene analogues (2–7), among which 2 possesses a previously unreported "6/6/7" ring skeleton. We solve the crystal structures of Sat1646, Sat1646 complexed with magnesium ions, and Stt4548, thereby revealing the active sites of these pimarane-type DTSs. Substrate modeling and subsequent site-directed mutagenesis experiments demonstrate different structural bases of Sat1646 and Stt4548 for 1 production. Comparisons with previously reported DTSs reveal their distinct carbocation intermediate stabilization mechanisms, which control the conversion of a single substrate CPP into structurally diverse diterpene products. These results illustrate the structural bases for enzymatic catalyses of pimarane-type DTSs, potentially facilitating future DTS engineering and combinatorial biosynthesis.


2021 ◽  
pp. 101045
Author(s):  
Payal Srivastava ◽  
Anchal Garg ◽  
Rajesh Chandra Misra ◽  
Chandan Singh Chanotiya ◽  
Sumit Ghosh

Science ◽  
2021 ◽  
Vol 371 (6526) ◽  
pp. 255-260
Author(s):  
Jiancai Li ◽  
Rayko Halitschke ◽  
Dapeng Li ◽  
Christian Paetz ◽  
Haichao Su ◽  
...  

Many plant specialized metabolites function in herbivore defense, and abrogating particular steps in their biosynthetic pathways frequently causes autotoxicity. However, the molecular mechanisms underlying their defense and autotoxicity remain unclear. Here, we show that silencing two cytochrome P450s involved in diterpene biosynthesis in the wild tobacco Nicotiana attenuata causes severe autotoxicity symptoms that result from the inhibition of sphingolipid biosynthesis by noncontrolled hydroxylated diterpene derivatives. Moreover, the diterpenes’ defensive function is achieved by inhibiting herbivore sphingolipid biosynthesis through postingestive backbone hydroxylation products. Thus, by regulating metabolic modifications, tobacco plants avoid autotoxicity and gain herbivore defense. The postdigestive duet that occurs between plants and their insect herbivores can reflect the plant’s solutions to the “toxic waste dump” problem of using potent chemical defenses.


2019 ◽  
Vol 58 (45) ◽  
pp. 15964-15976 ◽  
Author(s):  
Jeroen S. Dickschat

2019 ◽  
Vol 58 (27) ◽  
pp. 9230-9233 ◽  
Author(s):  
Jan Rinkel ◽  
Simon T. Steiner ◽  
Jeroen S. Dickschat

2019 ◽  
Vol 78 (4) ◽  
pp. 914-926 ◽  
Author(s):  
Anthati Mastan ◽  
RKB Bharadwaj ◽  
Ramesh Kumar Kushwaha ◽  
Chikkarasanahalli Shivegowda Vivek Babu

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