Literature DB >> 21630644

Human hemolysate glycated proteome.

Feliciano Priego-Capote1, Maria Ramirez-Boo, Christine Hoogland, Alexander Scherl, Markus Mueller, Frédérique Lisacek, Jean-Charles Sanchez.   

Abstract

Despite continuous advances in hyperglycemia treatments, a precise control through monitoring of glucose and glycated hemoglobin remains in most diabetic patients as the diagnosis/prognosis tool. An alternative perspective could be the discovery and quantitation of new blood glycated proteins formed by nonenzymatic reaction with circulatory glucose. As a result, the human hemolysate is an incomparable source of glycated proteins to further monitor glycemia and interpret changes at the level of this post-translational modification. The human hemolysate is here studied based on the differential labeling of proteins with isotopically labeled-glucose ([(13)C(6)] glucose), named glycation isotopic labeling. Due to the chemoselectivity of glycation, only preferential targets are labeled by this protocol. The approach provides qualitative data through the detection of preferential protein glycation sites as well as quantitative information to evaluate the abundance of this modification. This strategy was applied to human hemolysate samples corresponding to different glycemic states estimated by laboratory-certified concentrations of glycated hemoglobin. The glycation level of each protein can then be employed to interpret the effect of glucose exposition as a consequence of glycemic unbalance. This information should provide new molecular insights into protein glycation mechanisms that might generate a new hypothesis to clinicians to improve the understanding of underlying pathologies associated to prolonged hyperglycemia.

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Year:  2011        PMID: 21630644     DOI: 10.1021/ac200864b

Source DB:  PubMed          Journal:  Anal Chem        ISSN: 0003-2700            Impact factor:   6.986


  3 in total

1.  Development of Diagnostic Fragment Ion Library for Glycated Peptides of Human Serum Albumin: Targeted Quantification in Prediabetic, Diabetic, and Microalbuminuria Plasma by Parallel Reaction Monitoring, SWATH, and MSE.

Authors:  Arvind M Korwar; Garikapati Vannuruswamy; Mashanipalya G Jagadeeshaprasad; Ramesha H Jayaramaiah; Shweta Bhat; Bhaskaran S Regin; Sureshkumar Ramaswamy; Ashok P Giri; Viswanathan Mohan; Muthuswamy Balasubramanyam; Mahesh J Kulkarni
Journal:  Mol Cell Proteomics       Date:  2015-05-28       Impact factor: 5.911

2.  Rapid Non-Enzymatic Glycation of the Insulin Receptor under Hyperglycemic Conditions Inhibits Insulin Binding In Vitro: Implications for Insulin Resistance.

Authors:  Tyler Rhinesmith; Thomas Turkette; Robert Root-Bernstein
Journal:  Int J Mol Sci       Date:  2017-12-02       Impact factor: 5.923

3.  A new strategy for early diagnosis of type 2 diabetes by standard-free, label-free LC-MS/MS quantification of glycated peptides.

Authors:  Mei Zhang; Wei Xu; Yulin Deng
Journal:  Diabetes       Date:  2013-07-26       Impact factor: 9.461

  3 in total

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