TY - JOUR
T1 - Catalytic control in terpenoid cyclases
T2 - Multiscale modeling of thermodynamic, kinetic, and dynamic effects
AU - Major, Dan Thomas
AU - Freud, Yehoshua
AU - Weitman, Michal
N1 - Funding Information: We thank the editors and Dean Tantillo for helpful comments to the manuscript. DTM thanks the ISF for financial support.
PY - 2014/8
Y1 - 2014/8
N2 - In this Opinion we review some of the key work on terpene biosynthesis using multi-scale simulation approaches. Terpene synthases generate terpenes employing beautiful and rich carbocation chemistry, including highly specific ring formations, hydride, proton, methyl, and methylene migrations, followed by reaction quenching. In spite of the chemical finesse of these enzymes, terpene synthases are highly promiscuous. Incidentally, these mischievous enzymes are very challenging to treat computationally due to the inherent complexity of the potential energy surface in carbocations and the lack of directional hydrogen bonds to active site residues. Thus, a carefully designed computational platform must be employed. Herein, we review multi-scale simulations of squalene-hopene, aristolochene, and bornyl diphosphate synthases, and highlight what we have learned from this work.
AB - In this Opinion we review some of the key work on terpene biosynthesis using multi-scale simulation approaches. Terpene synthases generate terpenes employing beautiful and rich carbocation chemistry, including highly specific ring formations, hydride, proton, methyl, and methylene migrations, followed by reaction quenching. In spite of the chemical finesse of these enzymes, terpene synthases are highly promiscuous. Incidentally, these mischievous enzymes are very challenging to treat computationally due to the inherent complexity of the potential energy surface in carbocations and the lack of directional hydrogen bonds to active site residues. Thus, a carefully designed computational platform must be employed. Herein, we review multi-scale simulations of squalene-hopene, aristolochene, and bornyl diphosphate synthases, and highlight what we have learned from this work.
UR - http://www.scopus.com/inward/record.url?scp=84908314966&partnerID=8YFLogxK
U2 - 10.1016/j.cbpa.2014.03.010
DO - 10.1016/j.cbpa.2014.03.010
M3 - مقالة مرجعية
C2 - 24735749
SN - 1367-5931
VL - 21
SP - 25
EP - 33
JO - Current Opinion in Chemical Biology
JF - Current Opinion in Chemical Biology
ER -