Literature DB >> 25701404

Structural stability of myoglobin and glycomyoglobin: a comparative molecular dynamics simulation study.

Joulia Alizadeh-Rahrovi1, Alireza Shayesteh, Azadeh Ebrahim-Habibi.   

Abstract

Glycoproteins are formed as the result of enzymatic glycosylation or chemical glycation in the body, and produced in vitro in industrial processes. The covalently attached carbohydrate molecule(s) confer new properties to the protein, including modified stability. In the present study, the structural stability of a glycoprotein form of myoglobin, bearing a glucose unit in the N-terminus, has been compared with its native form by the use of molecular dynamics simulation. Both structures were subjected to temperatures of 300 and 500 K in an aqueous environment for 10 ns. Changes in secondary structures and RMSD were then assessed. An overall higher stability was detected for glycomyoglobin, for which the most stable segments/residues were highlighted and compared with the native form. The simple addition of a covalently bound glucose is suggested to exert its stabilizing effect via increased contacts with surrounding water molecules, as well as a different pattern of interactions with neighbor residues.

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Year:  2015        PMID: 25701404      PMCID: PMC4550620          DOI: 10.1007/s10867-015-9383-2

Source DB:  PubMed          Journal:  J Biol Phys        ISSN: 0092-0606            Impact factor:   1.365


  30 in total

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Review 7.  Effects of glycosylation on the stability of protein pharmaceuticals.

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Review 5.  Modeling and simulation in medical sciences: an overview of specific applications based on research experience in EMRI (Endocrinology and Metabolism Research Institute of Tehran University of Medical Sciences).

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