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比较嗜冷杆菌 Psychrobacter sp. PAMC 21119 中的鸟氨酸氨甲酰转移酶的单向催化的结构见解。

Comparative structural insight into the unidirectional catalysis of ornithine carbamoyltransferases from Psychrobacter sp. PAMC 21119.

机构信息

Research Unit of Cryogenic Novel Material, Korea Polar Research Institute, Incheon, Republic of Korea.

Department of Polar Sciences, University of Science and Technology, Incheon, Republic of Korea.

出版信息

PLoS One. 2022 Sep 23;17(9):e0274019. doi: 10.1371/journal.pone.0274019. eCollection 2022.

Abstract

Ornithine carbamoyltransferases (OTCs) are involved in the arginine deiminase (ADI) pathway and in arginine biosynthesis. Two OTCs in a pair are named catalytic OTC (cOTC) and anabolic OTC (aOTC). The cOTC is responsible for catalyzing the third step of the ADI pathway to catabolize citrulline into carbamoyl phosphate (CP), as well as ornithine, and displays CP cooperativity. In contrast, aOTC catalyzes the biosynthesis of citrulline from CP and ornithine in vivo and is thus involved in arginine biosynthesis. Structural and biochemical analyses were employed to investigate the CP cooperativity and unidirectional function of two sequentially similar OTCs (32.4% identity) named Ps_cOTC and Ps_aOTC from Psychrobacter sp. PAMC 21119. Comparison of the trimeric structure of these two OTCs indicated that the 80s loop of Ps_cOTC has a unique conformation that may influence cooperativity by connecting the CP binding site and the center of the trimer. The corresponding 80s loop region of in Ps_aOTC was neither close to the CP binding site nor connected to the trimer center. In addition, results from the thermal shift assay indicate that each OTC prefers the substrate for the unidirectional process. The active site exhibited a blocked binding site for CP in the Ps_cOTC structure, whereas residues at the active site in Ps_aOTC established a binding site to facilitate CP binding. Our data provide novel insights into the unidirectional catalysis of OTCs and cooperativity, which are distinguishable features of two metabolically specialized proteins.

摘要

鸟氨酸氨甲酰转移酶(OTCs)参与精氨酸脱氨酶(ADI)途径和精氨酸生物合成。一对中的两个 OTC 分别命名为催化 OTC(cOTC)和合成 OTC(aOTC)。cOTC 负责催化 ADI 途径的第三步,将瓜氨酸分解为氨基甲酰磷酸(CP)、鸟氨酸,并显示 CP 协同性。相比之下,aOTC 催化 CP 和鸟氨酸在体内合成瓜氨酸,因此参与精氨酸生物合成。采用结构和生化分析方法研究了来自 Psychrobacter sp. PAMC 21119 的两个顺序相似的 OTC(32.4%同源性)Ps_cOTC 和 Ps_aOTC 的 CP 协同性和单向功能。这两种 OTC 的三聚体结构比较表明,Ps_cOTC 的 80s 环具有独特的构象,可能通过连接 CP 结合位点和三聚体中心来影响协同性。Ps_aOTC 中相应的 80s 环区域既不靠近 CP 结合位点,也不与三聚体中心相连。此外,热移位测定结果表明,每个 OTC 都优先选择单向过程的底物。在 Ps_cOTC 结构中,活性位点显示出 CP 结合位点被阻断,而 Ps_aOTC 中活性位点的残基建立了一个结合位点以促进 CP 结合。我们的数据为 OTCs 的单向催化和协同性提供了新的见解,这是两种代谢特化蛋白的区别特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43da/9506655/dad22ff1aa29/pone.0274019.g001.jpg

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