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去除花生过氧化物酶prxPNC2的N-连接聚糖结构:对蛋白质稳定性和活性的影响

Removal of the N-linked glycan structure from the peanut peroxidase prxPNC2: influence on protein stability and activity.

作者信息

Pathirana Ranjith, Watson Lyn, Chen Balance, Leung Susanna, Voisey Christine, Murray Trish, McManus Michael T

机构信息

Institute of Molecular BioSciences, Massey University, Tennent Drive, Private Bag 11222, Palmerston North, New Zealand.

出版信息

Phytochemistry. 2005 Aug;66(16):1869-79. doi: 10.1016/j.phytochem.2005.06.027.

Abstract

Lines of transgenic tobacco have been generated that are transformed with either the wild-type peanut peroxidase prxPNC2 cDNA, driven by the CaMV35S promoter (designated 35S::prxPNC2-WT) or a mutated PNC2 cDNA in which the asparagine residue (Asn189) associated with the point of glycan attachment (Asn189) has been replaced with alanine (designated 35S::prxPNC2-M). PCR, using genomic DNA as template, has confirmed the integration of the 35S::prxPNC2-WT and 35S:prxPNC2-M constructs into the tobacco genome, and western analysis using anti-PNC2 antibodies has revealed that the prxPNC2-WT protein product (PNC2-WT) accumulates with a molecular mass of 34,670 Da, while the prxPNC2-M protein product (PNC2-M) accumulates with a molecular mass of 32,600 Da. Activity assays have shown that both PNC2-WT and PNC2-M proteins accumulate preferentially in the ionically-bound cell wall fraction, with a significantly higher relative accumulation of the PNC2-WT isoenzyme in the ionically-bound fraction when compared with the PNC2-M isoform. Kinetic analysis of the partially purified PNC2-WT isozyme revealed an affinity constant (apparent Km) of 11.2 mM for the reductor substrate guaiacol and 1.29 mM for H2O2, while values of 11.9 mM and 1.12 mM were determined for the PNC2-M isozyme. A higher Arrenhius activation energy (Ea) was determined for the PNC2-M isozyme (22.9 kJ mol(-1)), when compared with the PNC2-WT isozyme (17.6 kJ mol(-1)), and enzyme assays have determined that the absence of the glycan influences the thermostability of the PNC2-M isozyme. These results are discussed with respect to the proposed roles of N-linked glycans attached to plant peroxidases.

摘要

已培育出转基因烟草品系,这些品系用由CaMV35S启动子驱动的野生型花生过氧化物酶prxPNC2 cDNA(命名为35S::prxPNC2-WT)或一种突变的PNC2 cDNA进行转化,其中与聚糖附着点相关的天冬酰胺残基(Asn189)已被丙氨酸取代(命名为35S::prxPNC2-M)。以基因组DNA为模板进行PCR已证实35S::prxPNC2-WT和35S:prxPNC2-M构建体整合到烟草基因组中,使用抗PNC2抗体的蛋白质印迹分析表明,prxPNC2-WT蛋白产物(PNC2-WT)以34,670 Da的分子量积累,而prxPNC2-M蛋白产物(PNC2-M)以32,600 Da的分子量积累。活性测定表明,PNC2-WT和PNC2-M蛋白均优先在离子结合的细胞壁组分中积累,与PNC2-M同工型相比,PNC2-WT同工酶在离子结合组分中的相对积累显著更高。对部分纯化的PNC2-WT同工酶的动力学分析显示,对还原底物愈创木酚的亲和常数(表观Km)为11.2 mM,对H2O2为1.29 mM,而PNC2-M同工酶的值分别为11.9 mM和1.12 mM。与PNC2-WT同工酶(17.6 kJ mol(-1))相比,PNC2-M同工酶的阿伦尼乌斯活化能(Ea)更高(22.9 kJ mol(-1)),酶活性测定表明聚糖的缺失影响PNC2-M同工酶的热稳定性。针对与植物过氧化物酶附着的N-连接聚糖的假定作用对这些结果进行了讨论。

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