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利用内源性辛酰辅酶A生产辛酸丁酯的工程技术。

Engineering for the production of butyl octanoate from endogenous octanoyl-CoA.

作者信息

Chacón Micaela G, Kendrick Emanuele G, Leak David J

机构信息

Department of Biology and Biochemistry, University of Bath, Bath, England.

出版信息

PeerJ. 2019 Jul 1;7:e6971. doi: 10.7717/peerj.6971. eCollection 2019.

Abstract

Medium chain esters produced from fruits and flowering plants have a number of commercial applications including use as flavour and fragrance ingredients, biofuels, and in pharmaceutical formulations. These esters are typically made via the activity of an alcohol acyl transferase (AAT) enzyme which catalyses the condensation of an alcohol and an acyl-CoA. Developing a microbial platform for medium chain ester production using AAT activity presents several obstacles, including the low product specificity of these enzymes for the desired ester and/or low endogenous substrate availability. In this study, we engineered for the production of butyl octanoate from endogenously produced octanoyl-CoA. This was achieved through rational protein engineering of an AAT enzyme from for improved octanoyl-CoA substrate specificity and metabolic engineering of fatty acid metabolism for increased endogenous octanoyl-CoA availability. This resulted in accumulation of 3.3 + 0.1 mg/L butyl octanoate as the sole product from after 48 h. This study represents a preliminary examination of the feasibility of developing platforms for the synthesis single medium chain esters from endogenous fatty acids.

摘要

从水果和开花植物中生产的中链酯有许多商业应用,包括用作香料和香精成分、生物燃料以及用于药物制剂。这些酯通常通过醇酰基转移酶(AAT)的活性来制备,该酶催化醇与酰基辅酶A的缩合反应。利用AAT活性开发用于生产中链酯的微生物平台存在几个障碍,包括这些酶对所需酯的产物特异性低和/或内源性底物可用性低。在本研究中,我们对大肠杆菌进行工程改造,以从内源性产生的辛酰辅酶A生产辛酸丁酯。这是通过对来自解脂耶氏酵母的AAT酶进行合理的蛋白质工程改造以提高辛酰辅酶A底物特异性,以及对大肠杆菌脂肪酸代谢进行代谢工程改造以增加内源性辛酰辅酶A可用性来实现的。这导致在48小时后,大肠杆菌作为唯一产物积累了3.3±0.1mg/L的辛酸丁酯。本研究代表了开发从内源性脂肪酸合成单一中链酯的大肠杆菌平台可行性的初步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d9e/6610577/7ec87f60565c/peerj-07-6971-g001.jpg

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