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Articles

Mutations in exons 10 and 11 of human glucokinase result in conformational variations in the active site of the structure contributing to poor substrate binding – explains hyperglycemia in type 2 diabetic patients

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Pages 820-833 | Received 05 Mar 2014, Accepted 08 Apr 2014, Published online: 15 May 2014
 

Abstract

Mutations in the glucokinase (GK) gene play a critical role in the establishment of type 2 diabetes. In our earlier study, R308K mutation in GK in a clinically proven type 2 diabetic patient showed, structural and functional variations that contributed immensely to the hyperglycemic condition. In the extension of this work, a cohort of 30 patients with established type 2 diabetic condition were chosen and the exons 10 and 11 of GK were PCR-amplified and sequenced. The sequence alignment showed A379S, D400Y, E300A, E395A, E395G, H380N, I348N, L301M, M298I, M381G, M402R, R308K, R394P, R397S, and S398R mutations in 12 different patients. The structural analysis of these mutated GKs, showed a variable number of β-α-β units, hairpins, β-bulges, strands, helices, helix–helix interactions, β-turns, and γ-turns along with the RMSD variations when compared to wild-type GK. Molecular modeling studies revealed that the substrate showed variable binding orientations and could not fit into the active site of these mutated structures; moreover, it was expelled out of the conformations. Therefore, these structural variations in GK due to mutations could be one of the strongest reasons for the hyperglycemic levels in these type 2 diabetic patients.

Acknowledgments

This work was supported by the INSPIRE Division, Department of Science and Technology (DST), Government of India, New Delhi. We acknowledge them gratefully for providing DST INSPIRE Fellowship for supporting doctoral studies. We are highly thankful to Sri Venkateswara Medical College, Tirupati, AP, INDIA, for providing biological samples required for this research work.

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