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PYCR3 的表达与动力学特征分析。

Expression and kinetic characterization of PYCR3.

机构信息

Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States.

Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States; Department of Chemistry, University of Missouri, Columbia, MO, 65211, United States.

出版信息

Arch Biochem Biophys. 2023 Jan 1;733:109468. doi: 10.1016/j.abb.2022.109468. Epub 2022 Nov 19.

Abstract

PYCRs are proline biosynthetic enzymes that catalyze the NAD(P)H-dependent reduction of Δ-pyrroline-5-carboxylate (P5C) to proline in humans. PYCRs - especially PYCR1 - are upregulated in many types of cancers and have been implicated in the altered metabolism of cancer cells. Of the three isoforms of PYCR, PYCR3 remains the least studied due in part to the lack of a robust recombinant expression. Herein, we describe a procedure for the expression of soluble SUMO-PYCR3 in Escherichia coli, purification of the fusion protein, and removal of the SUMO tag. PYCR3 is active with either NADPH or NADH as the coenzyme. Bi-substrate kinetic measurements obtained by varying the concentrations of both L-P5C and NADH, along with product inhibition data for l-proline, suggest a random ordered bi bi mechanism. A panel of 19 proline analogs was screened for inhibition, and the kinetics of competitive inhibition (with L-P5C) were measured for five of the compounds screened, including N-formyl-l-proline, a validated inhibitor of PYCR1. N-formyl-l-proline was found to be ten times more selective for PYCR1 over PYCR3. The SUMO-PYCR3 expression system should be useful for testing the isoform specificity of PYCR1 inhibitors.

摘要

PYCRs 是脯氨酸生物合成酶,可在人类中将 NAD(P)H 依赖性 Δ-吡咯啉-5-羧酸(P5C)还原为脯氨酸。PYCRs - 特别是 PYCR1 - 在许多类型的癌症中上调,并与癌细胞代谢的改变有关。在三种 PYCR 同工型中,PYCR3 由于缺乏稳健的重组表达,仍然是研究最少的同工型。本文描述了在大肠杆菌中表达可溶性 SUMO-PYCR3 的程序,纯化融合蛋白,并去除 SUMO 标签。PYCR3 可以 NADPH 或 NADH 作为辅酶发挥活性。通过改变 L-P5C 和 NADH 的浓度获得的双底物动力学测量值,以及 l-脯氨酸的产物抑制数据,表明存在随机有序的双分子机制。筛选了 19 种脯氨酸类似物的抑制作用,并测量了五种筛选化合物(包括已验证的 PYCR1 抑制剂 N-甲酰基-l-脯氨酸)的竞争性抑制(与 L-P5C)动力学。发现 N-甲酰基-l-脯氨酸对 PYCR1 的选择性比 PYCR3 高十倍。SUMO-PYCR3 表达系统应可用于测试 PYCR1 抑制剂的同工型特异性。

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