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杨树α-和β-NAD-ME重组蛋白的酶学性质

Enzymatic properties of Populus α- and β-NAD-ME recombinant proteins.

作者信息

Liu Jinwen, Yu Qiguo, Elsheery Nabil I, Cheng Yuxiang

机构信息

State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China.

出版信息

Int J Mol Sci. 2013 Jun 24;14(7):12994-3004. doi: 10.3390/ijms140712994.

Abstract

Plant mitochondrial NAD-malic enzyme (NAD-ME), which is composed of α- and β-subunits in many species, participates in many plant biosynthetic pathways and in plant respiratory metabolism. However, little is known about the properties of woody plant NAD-MEs. In this study, we analyzed four NAD-ME genes (PtNAD-ME1 through PtNAD-ME4) in the genome of Populus trichocarpa. PtNAD-ME1 and -2 encode putative α-subunits, while PtNAD-ME3 and -4 encode putative β-subunits. The Populus NAD-MEs were expressed in Escherichia coli cells as GST-tagged fusion proteins. Each recombinant GST-PtNAD-ME protein was purified to near homogeneity by glutathione-Sepharose 4B affinity chromatography. Milligram quantities of each native protein were obtained from 1 L bacterial cultures after cleavage of the GST tag. Analysis of the enzymatic properties of these proteins in vitro indicated that α-NAD-MEs are more active than β-NAD-MEs and that α- and β-NAD-MEs presented different kinetic properties (Vmax, kcat and kcat/Km). The effect of different amounts of metabolites on the activities of Populus α- and β-NAD-MEs was assessed in vitro. While none of the metabolites evaluated in our assays activated Populus NAD-ME, oxalacetate and citrate inhibited all α- and β-NAD-MEs and glucose-6-P and fructose inhibited only the α-NAD-MEs.

摘要

植物线粒体NAD - 苹果酸酶(NAD - ME)在许多物种中由α和β亚基组成,参与多种植物生物合成途径和植物呼吸代谢。然而,关于木本植物NAD - ME的特性知之甚少。在本研究中,我们分析了毛果杨基因组中的四个NAD - ME基因(PtNAD - ME1至PtNAD - ME4)。PtNAD - ME1和 - 2编码推定的α亚基,而PtNAD - ME3和 - 4编码推定的β亚基。杨树NAD - ME以GST标签融合蛋白的形式在大肠杆菌细胞中表达。每个重组GST - PtNAD - ME蛋白通过谷胱甘肽 - Sepharose 4B亲和层析纯化至接近均一性。在去除GST标签后,从1 L细菌培养物中获得了毫克量的每种天然蛋白。对这些蛋白的体外酶学性质分析表明,α - NAD - ME比β - NAD - ME更具活性,并且α - 和β - NAD - ME呈现出不同的动力学性质(Vmax、kcat和kcat/Km)。体外评估了不同量的代谢物对杨树α - 和β - NAD - ME活性的影响。虽然我们测定中评估的代谢物均未激活杨树NAD - ME,但草酰乙酸和柠檬酸抑制了所有α - 和β - NAD - ME,而葡萄糖 - 6 - P和果糖仅抑制α - NAD - ME。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55b1/3742170/ff0b59f9d62d/ijms-14-12994f1.jpg

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