Crynodeb
Terpene synthases (TS) catalyze complex reactions to produce a diverse array of terpene skeletons from linear isoprenyl diphosphates. Patchoulol synthase (PTS) from Pogostemon cablin converts farnesyl diphosphate into patchoulol. Using simulation-guided engineering, we obtained PTS variants that eliminate water capture. Further, we demonstrate that modifying the structurally conserved Hα-1 loop also reduces hydroxylation in PTS, as well as in germacradiene-11-ol synthase (Gd11olS), leading to cyclic neutral intermediates as products, including α-bulnesene (PTS) and isolepidozene (Gd11olS). Hα-1 loop modification could be a general strategy for engineering sesquiterpene synthases to produce complex cyclic hydrocarbons without the need for structure determination or modeling.
| Iaith wreiddiol | Saesneg |
|---|---|
| Tudalennau (o-i) | 14199-14204 |
| Nifer y tudalennau | 6 |
| Cyfnodolyn | ACS Catalysis |
| Cyfrol | 13 |
| Rhif cyhoeddi | 21 |
| Dyddiad ar-lein cynnar | 20 Hyd 2023 |
| Dynodwyr Gwrthrych Digidol (DOIs) | |
| Statws | Cyhoeddwyd - 3 Tach 2023 |
| Cyhoeddwyd yn allanol | Ie |
Ôl bys
Gweld gwybodaeth am bynciau ymchwil 'Active Site Loop Engineering Abolishes Water Capture in Hydroxylating Sesquiterpene Synthases'. Gyda’i gilydd, maen nhw’n ffurfio ôl bys unigryw.Dyfynnu hyn
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