Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

In a continuing effort to understand reaction mechanisms of terpene synthases catalyzing initial anti-Markovnikov cyclization reactions, we solved the X-ray crystal structure of (+)-caryolan-1-ol synthase (CS) from , with and without an inactive analog of the FPP substrate, 2-fluorofarnesyl diphosphate (2FFPP), bound in the active site of the enzyme. The CS-2FFPP complex was solved to 2.65 Å resolution and showed the ligand in a linear, elongated orientation, incapable of undergoing the initial cyclization event to form a bond between carbons C1 and C11. Intriguingly, the apo CS structure (2.2 Å) also had electron density in the active site, in this case density that was well fit with a curled-up tetraethylene glycol molecule presumably recruited from the crystallization medium. The density was also well fit by a molecule of farnesene suggesting that the structure may mimic an intermediate along the reaction coordinate. The curled-up conformation of tetraethylene glycol was accompanied by dramatic rotamer shifts among active-site residues. Most notably, W56 was observed to undergo a 90° rotation between the 2FFPP complex and apo-enzyme structures, suggesting that it contributes to steric interactions that help curl the tetraethylene glycol molecule in the active site, and by extension perhaps also a derivative of the FPP substrate in the normal course of the cyclization reaction. In support of this proposal, the CS W56L variant lost the ability to cyclize the FPP substrate and produced only the linear terpene products farnesol and α- and β-farnesene.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11092760PMC
http://dx.doi.org/10.1101/2024.05.04.592530DOI Listing

Publication Analysis

Top Keywords

fpp substrate
12
active site
12
tetraethylene glycol
12
crystal structure
8
catalyzing initial
8
initial anti-markovnikov
8
anti-markovnikov cyclization
8
cyclization reaction
8
density well
8
well fit
8

Similar Publications

In the opportunistic pathogen , hyphal growth and virulence factor expression are regulated by environmental and chemical cues. Farnesol is a secreted autoregulatory molecule that represses filamentation. It is derived from farnesyl pyrophosphate (FPP), an ergosterol biosynthesis pathway intermediate.

View Article and Find Full Text PDF

Engineering Sanghuangporus sanghuang for enhanced (-)-aristolone production via metabolic pathway optimization and terpene synthase engineering.

Appl Microbiol Biotechnol

June 2025

Key Laboratory of Medicinal Resources and Natural Pharmaceutical Chemistry, National Engineering Laboratory for Resource Developing of Endangered Chinese Crude Drugs in Northwest of China, College of Life Science, Ministry of Education, Shaanxi Normal University, Xi'an, 710055, Shaanxi, China. bioma

(-)-Aristolone, a sesquiterpene with promising therapeutic properties such as antidiabetic and vasorelaxant effects, currently suffers from limited availability due to inefficient chemical synthesis and lack of viable extraction methods. This study presents a novel strategy for high-yield microbial (-)-aristolone production using Sanghuangporus sanghuang DM989 as a fungal chassis. Genome mining identified nine sesquiterpene synthases, among which TPS2152 was functionally linked to (-)-aristolone biosynthesis.

View Article and Find Full Text PDF

Drimenol synthase from (AsDMS) is a highly unusual chimera that integrates two distinct, sequential isoprenoid processing activities within a single polypeptide chain. AsDMS catalyzes the class II cyclization of farnesyl diphosphate (FPP) to form drimenyl diphosphate, which then undergoes enzyme-catalyzed hydrolysis to yield drimenol, a bioactive sesquiterpene alcohol with antifungal and anticancer properties. Here, we report the X-ray crystal structures of AsDMS and its complex with a sesquiterpene thiol.

View Article and Find Full Text PDF

Multifunctional sesquiterpene synthase from Curcuma wenyujin reveals the biosynthetic mechanism of sesquiterpenes with diverse skeletons.

Int J Biol Macromol

July 2025

School of Pharmacy, Hangzhou Normal University, Hangzhou 311121, China; School of Pharmaceutical Sciences, Shanghai Jiao Tong University, Shanghai 200030, China; Xinchang Pharmaceutical Factory, Zhejiang Medicine Co., Ltd., Xinchang 312500, Zhejiang, China; State Key Laboratory for Quality Ensurance

Volatile sesquiterpenes derived from Curcuma wenyujin Y.H.Chen et C.

View Article and Find Full Text PDF

Identification and Characterization of a Novel Multifunctional Terpene Synthase from the Pathogenic Fungus .

J Agric Food Chem

June 2025

Chongqing Key Laboratory of High Active Traditional Chinese Drug Delivery System, Chongqing Medical and Pharmaceutical College, Chongqing 401331, China.

Sesquiterpenes, a structurally diverse class of natural products, play pivotal roles in the pharmaceutical, fragrance, and flavor industries. In this study, we first identified and functionally characterized a multifunctional sesquiterpene synthase, ChTPS6, from the plant-pathogenic fungus . When incubated with FPP, ChTPS6 primarily catalyzed the formation of cubebol as the main product, which is widely used as a sustained cooling and refreshing agent in the food industry.

View Article and Find Full Text PDF