Human Glucokinase Gene: Isolation, Characterization, and Identification of Two Missense Mutations Linked to Early-Onset Non-Insulin-Dependent (type 2) Diabetes Mellitus

DNA polymorphisms in the glucokinase gene have recently been shown to be tightly linked to early-onset non-insulin-dependent diabetes mellitus in ≈80% of French families with this form of diabetes. We previously identified a nonsense mutation in exon 7 in one of these families and showed that it was...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 1992-08, Vol.89 (16), p.7698-7702
Hauptverfasser: Stoffel, M., Ph. Froguel, Takeda, J., Zouali, H., Vionnet, N., Nishi, S., Weber, I. T., Harrison, R. W., Pilkis, S. J., Lesage, S., Vaxillaire, M., Velho, G., Sun, F., Iris, F., Ph. Passa, Cohen, D., Bell, G. I.
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Sprache:eng
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Zusammenfassung:DNA polymorphisms in the glucokinase gene have recently been shown to be tightly linked to early-onset non-insulin-dependent diabetes mellitus in ≈80% of French families with this form of diabetes. We previously identified a nonsense mutation in exon 7 in one of these families and showed that it was the likely cause of glucose intolerance in this dominantly inherited disorder. Here we report the isolation and partial sequence of the human glucokinase gene and the identification of two missense mutations in exon 7, Thr-228 → Met and Gly-261 → Arg, that cosegregate with early-onset non-insulin-dependent diabetes mellitus. To assess the molecular mechanism by which mutations at these two sites may affect glucokinase activity, the crystal structure of the related yeast hexokinase B was used as a simple model for human β-cell glucokinase. Computer-assisted modeling suggests that mutation of Thr-228 affects affinity for ATP and mutation of Gly-261 may alter glucose binding. The identification of mutations in glucokinase, a protein that plays an important role in hepatic and β-cell glucose metabolism, indicates that early-onset non-insulin-dependent diabetes mellitus may be primarily a disorder of carbohydrate metabolism.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.89.16.7698