Department of Environmental Sciences, Bioremediation and Metabolomics Research Group, Central University of Himachal Pradesh, Temporary Academic Block-Shahpur, District-Kangra, Himachal Pradesh, 176206, India.
Present address: Department of Biotechnology, DAV University, Jalandhar, Punjab, 144001, India.
Extremophiles. 2021 Jan;25(1):15-24. doi: 10.1007/s00792-020-01208-7. Epub 2020 Oct 21.
Here, we have analyzed the enzyme ornithine carbamoyltransferase (OCTase) in different classes of microorganisms belonging to psychrophiles, mesophiles and thermophiles. This OCTase catalyzes the formation of citrulline from carbamoyl phosphate (CP) and ornithine (ORN) in arginine biosynthesis pathway and has certain unique adaptations to regulate metabolic pathways in extreme conditions. The tertiary structure of OCTase showed two binding domains, the CP domain and ORN-binding domain at N and C terminals, respectively. We propose general acid-base catalysis in Pseudomonas gessardii between His259 and Asp220 in which later may act as a recipient of proton in the process. The comparative docking analysis showed that substrate-binding loops have been evolved to accommodate their lifestyles across the physiological temperature range where two substrates bind on two distinct loops in psychrophiles and mesophiles, whereas both the substrates bind on a single-substrate-binding loop in thermophiles and bring down the flexibility of the active site pocket to improve its evolutionary fitness.
在这里,我们分析了属于嗜冷菌、中温菌和嗜热菌的不同微生物类群中的鸟氨酸氨甲酰基转移酶 (OCTase)。该 OCTase 在精氨酸生物合成途径中催化从氨甲酰磷酸 (CP) 和鸟氨酸 (ORN) 形成瓜氨酸,并具有某些特定的适应机制来调节极端条件下的代谢途径。OCTase 的三级结构显示出两个结合域,分别位于 N 端和 C 端的 CP 域和 ORN 结合域。我们提出在假单胞菌属中存在一般的酸碱催化作用,其中 His259 和 Asp220 之间起酸碱催化作用,后者可能在该过程中充当质子受体。比较对接分析表明,底物结合环已经进化以适应其在整个生理温度范围内的生活方式,在嗜冷菌和中温菌中,两种底物结合在两个不同的环上,而在嗜热菌中,两种底物结合在单个底物结合环上,降低了活性位点口袋的灵活性,从而提高了其进化适应性。