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首页> 外文期刊>The Biochemical Journal >Neutral sphingomyelinase-2 is a redox sensitive enzyme: role of catalytic cysteine residues in regulation of enzymatic activity through changes in oligomeric state
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Neutral sphingomyelinase-2 is a redox sensitive enzyme: role of catalytic cysteine residues in regulation of enzymatic activity through changes in oligomeric state

机译:中性鞘磷脂酶-2是氧化还原敏感酶:催化半胱氨酸残基在酶活性调节中的作用,通过寡聚状态的变化

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Neutral sphingomyelinase-2 (nSMase-2) is themajor sphingomyelinase activated in response to pro-inflammatory cytokines and during oxidative stress. It is a membrane-bound 655 amino acid protein containing 22 cysteine residues. In this study, we expressed recombinant mouse nSMase-2 protein in Escherichia coli, and investigated whether nSMase-2 is a redox sensitive enzyme. Our results demonstrate that nSMase-2 exists as both monomers and multimers that are associated with high and low enzymatic activity respectively. Mutational analysis of nSMase-2 identified within its C-terminal catalytic domain several oxidant-sensitive cysteine residues that were shown to be involved in enzyme oligomerization. Changing Cys(617) to Ser for example is a gain-of-function mutation associated with a decreased propensity for oligomerization. Alternatively, nSMase-2 expression in a bacterial strain that lacks endogenous thioredoxin, Rosetta-gami2, results in increased oligomer formation and lower enzyme activity. Phenotypic rescue was accomplished by treating nSMase-2 lysates with recombinant human thioredoxin. This indicates that nSMase-2 may be a novel substrate for thioredoxin. FRET analysis confirmed the presence of nSMase-2 multimers in mammalian HEK cells and their localization to the plasma membrane. In conclusion, our results identify nSMase-2 as a redox-sensitive enzyme, whose basal activity is influenced by thioredoxin-mediated changes in its oligomeric state.
机译:中性鞘磷脂酶-2(nsmase-2)是响应促炎细胞因子和氧化应激期间活化的HOMAJOR Spingomyelinase。它是含有22个半胱氨酸残基的膜结合的655氨基酸蛋白。在这项研究中,我们在大肠杆菌中表达了重组小鼠NSMase-2蛋白,并研究了NSMase-2是否是氧化还原敏感酶。我们的结果表明,NSMase-2作为单体和多聚体分别存在于高酶活性和低酶活性。其C-末端催化结构域内鉴定的NSMase-2的突变分析几种氧化剂敏感的半胱氨酸残基,其显示参与酶寡聚化。改变Cys(617)至Ser例如是与寡聚化倾向降低相关的功能突变。或者,在缺乏内源性硫昔林的细菌菌株中的NSMase-2表达,导致寡聚菌和较低的酶形成和较低的酶活性。通过将Nsmase-2裂解物与重组人硫辛蛋白处理Nsmase-2裂解物完成表型救援。这表明NSMase-2可以是用于硫辛的新型底物。 FRET分析证实了哺乳动物HEK细胞中NSMase-2多聚体的存在及其对血浆膜的定位。总之,我们的结果鉴定了Nsmase-2作为氧化还原敏感酶,其基础活性受到其低聚状态的肝素介导的变化的影响。

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