Literature DB >> 15705060

Plant ribulosamine/erythrulosamine 3-kinase, a putative protein-repair enzyme.

Juliette Fortpied1, Rita Gemayel, Vincent Stroobant, Emile van Schaftingen.   

Abstract

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.

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Year:  2005        PMID: 15705060      PMCID: PMC1183458          DOI: 10.1042/BJ20041976

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  25 in total

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Authors:  B S Szwergold; S Howell; P J Beisswenger
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3.  Identification, cloning, and heterologous expression of a mammalian fructosamine-3-kinase.

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4.  Fructosamine 3-kinase is involved in an intracellular deglycation pathway in human erythrocytes.

Authors:  Ghislain Delpierre; François Collard; Juliette Fortpied; Emile Van Schaftingen
Journal:  Biochem J       Date:  2002-08-01       Impact factor: 3.857

5.  Identification of fructosamine residues deglycated by fructosamine-3-kinase in human hemoglobin.

Authors:  Ghislain Delpierrre; Didier Vertommen; David Communi; Mark H Rider; Emile Van Schaftingen
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Journal:  Diabetes       Date:  2003-12       Impact factor: 9.461

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Authors:  S D Sharma; B N Pandey; K P Mishra; S Sivakami
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5.  A Mannose Family Phosphotransferase System Permease and Associated Enzymes Are Required for Utilization of Fructoselysine and Glucoselysine in Salmonella enterica Serovar Typhimurium.

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6.  Identification of protein-ribulosamine-5-phosphatase as human low-molecular-mass protein tyrosine phosphatase-A.

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Journal:  Biochem J       Date:  2007-08-15       Impact factor: 3.857

7.  Structural and functional diversity of the microbial kinome.

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8.  A Snapshot of the Plant Glycated Proteome: STRUCTURAL, FUNCTIONAL, AND MECHANISTIC ASPECTS.

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Review 10.  Protein Glycation in Plants-An Under-Researched Field with Much Still to Discover.

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  10 in total

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