Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, Michigan, USA.
Post-baccalaureate Research Education Program (PREP), University of Michigan Medical School, Ann Arbor, Michigan, USA.
J Bacteriol. 2022 Aug 16;204(8):e0001422. doi: 10.1128/jb.00014-22. Epub 2022 Jul 25.
Thioesterases play a critical role in metabolism, membrane biosynthesis, and overall homeostasis for all domains of life. In this present study, we characterize a putative thioesterase from Escherichia coli MG1655 and define its role as a cytosolic enzyme. Building on structure-guided functional predictions, we show that YigI is a medium- to long-chain acyl-CoA thioesterase that is involved in the degradation of conjugated linoleic acid (CLA) , showing overlapping specificity with two previously defined E. coli thioesterases TesB and FadM. We then bioinformatically identify the regulatory relationships that induce YigI expression, which include: an acidic environment, high oxygen availability, and exposure to aminoglycosides. Our findings define a role for YigI and shed light on why the E. coli genome harbors numerous thioesterases with closely related functions. Previous research has shown that long chain acyl-CoA thioesterases are needed for E. coli to grow in the presence of carbon sources such as conjugated linoleic acid, but that E. coli must possess at least one such enzyme that had not previously been characterized. Building off structure-guided function predictions, we showed that the poorly annotated protein YigI is indeed the previously unidentified third acyl CoA thioesterase. We found that the three potentially overlapping acyl-CoA thioesterases appear to be induced by nonoverlapping conditions and use that information as a starting point for identifying the precise reactions catalyzed by each such thioesterase, which is an important prerequisite for their industrial application and for more accurate metabolic modeling of E. coli.
硫酯酶在所有生命领域的代谢、膜生物合成和整体动态平衡中起着关键作用。在本研究中,我们对来自大肠杆菌 MG1655 的假定硫酯酶进行了表征,并将其定义为胞质酶。基于结构引导的功能预测,我们表明 YigI 是一种中长链酰基辅酶 A 硫酯酶,参与共轭亚油酸 (CLA) 的降解,与先前定义的两种大肠杆菌硫酯酶 TesB 和 FadM 具有重叠的特异性。然后,我们从生物信息学角度确定了诱导 YigI 表达的调控关系,包括:酸性环境、高氧可用性和暴露于氨基糖苷类药物。我们的研究结果定义了 YigI 的作用,并阐明了为什么大肠杆菌基因组具有许多具有密切相关功能的硫酯酶。 先前的研究表明,长链酰基辅酶 A 硫酯酶对于大肠杆菌在共轭亚油酸等碳源存在的情况下生长是必需的,但大肠杆菌必须至少具有一种以前未被表征的此类酶。基于结构引导的功能预测,我们表明注释较差的蛋白 YigI 确实是以前未被识别的第三种酰基辅酶 A 硫酯酶。我们发现,这三种潜在重叠的酰基辅酶 A 硫酯酶似乎由非重叠条件诱导,并利用该信息作为起点来确定每种此类硫酯酶催化的确切反应,这是其工业应用和更准确的大肠杆菌代谢建模的重要前提。