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首页> 外文期刊>The Biochemical Journal >Plant ribulosamine/erythrulosamine 3-kinase, a putative protein-repair enzyme.
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Plant ribulosamine/erythrulosamine 3-kinase, a putative protein-repair enzyme.

机译:植物核糖胺/赤藓糖胺3-激酶,一种推定的蛋白质修复酶。

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摘要

FN3K (fructosamine 3-kinase) is a mammalian enzyme that catalyses the phosphorylation of fructosamines, which thereby becomes unstable and detaches from proteins. The homologous mammalian enzyme, FN3K-RP (FN3K-related protein), does not phosphorylate fructosamines but ribulosamines, which are probably formed through a spontaneous reaction of amines with ribose 5-phosphate, an intermediate of the pentose-phosphate pathway and the Calvin cycle. We show in the present study that spinach leaf extracts display a substantial ribulosamine kinase activity (approx. 700 times higher than the specific activity of FN3K in erythrocytes). The ribulosamine kinase was purified approx. 400 times and shown to phosphorylate ribulose-epsilon-lysine, protein-bound ribulosamines and also, with higher affinity, erythrulose-epsilon-lysine and protein-bound erythrulosamines. Evidence is presented for the fact that the third carbon of the sugar portion is phosphorylated by this enzyme and that this leads to the formation of unstable compounds decomposing with half-lives of approx. 30 min at 37 degrees C (ribulosamine 3-phosphates) and 5 min at 30 degrees C (erythrulosamine 3-phosphates). This decomposition results in the formation of a 2-oxo-3-deoxyaldose and inorganic phosphate, with regeneration of the free amino group. The Arabidopsis thaliana homologue of FN3K/FN3K-RP was overexpressed in Escherichia coli and shown to have properties similar to those of the enzyme purified from spinach leaves. These results indicate that the plant FN3K/FN3K-RP homologue, which appears to be targeted to the chloroplast in many species, is a ribulosamine/erythrulosamine 3-kinase. This enzyme may participate in a protein deglycation process removing Amadori products derived from ribose 5-phosphate and erythrose 4-phosphate, two Calvin cycle intermediates that are potent glycating agents.
机译:FN3K(果糖胺3激酶)是一种哺乳动物酶,催化果糖胺的磷酸化,从而变得不稳定并与蛋白质分离。同源的哺乳动物酶FN3K-RP(与FN3K相关的蛋白)不磷酸化果糖胺,而是核糖胺,核糖胺可能是胺与5-磷酸核糖的自发反应形成的,是戊糖-磷酸途径和加尔文循环的中间产物。我们在本研究中表明,菠菜叶提取物显示出显着的核糖胺激酶活性(比红细胞中FN3K的比活性高约700倍)。核糖胺激酶被大约纯化。 400倍,并显示磷酸化核糖-ε-赖氨酸,蛋白质结合的核糖胺,以及具有更高亲和力的赤藓糖-ε-赖氨酸和蛋白质结合的赤藓糖胺。事实证明糖部分的第三碳被该酶磷酸化,并导致形成不稳定的化合物,其分解半衰期约为1。在37°C下30分钟(核糖胺3-磷酸)和在30°C下5分钟(赤藓糖胺3-磷酸)。这种分解导致2-氧代-3-脱氧醛糖和无机磷酸酯的形成,并带有游离氨基的再生。 FN3K / FN3K-RP的拟南芥同源物在大肠杆菌中过表达,并显示与从菠菜叶纯化的酶相似的特性。这些结果表明在许多物种中似乎针对叶绿体的植物FN3K / FN3K-RP同源物是核糖胺/赤藓糖胺3-激酶。该酶可能参与蛋白质去糖化过程,去除了源自5磷酸核糖和4磷酸赤藓糖的Amadori产物,这两种加尔文循环中间体都是有效的糖化剂。

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