Literature DB >> 11822825

Identification and functional analysis of mutations in FAD-binding domain of mitochondrial glycerophosphate dehydrogenase in caucasian patients with type 2 diabetes mellitus.

M Gudayol1, J Vidal, E F Usac, A Morales, M E Fabregat, J C Fernández-Checa, A Novials, R Gomis.   

Abstract

Ca2+-responsive mitochondrial FAD-linked glycerophosphate dehydrogenase (mGPDH) is a key component of the pancreatic beta-cell glucose-sensing device. The purpose of this study was to examine the association of mutations in the cDNA coding for the FAD-binding domain of mGPDH and to explore the functional consequences of these mutations in vitro. To investigate this association in type 2 diabetes mellitus, we studied a cohort of 168 patients with type 2 diabetes and 179 glucose-tolerant control subjects of Spanish Caucasian origin by single-stranded conformational polymorphism analysis. In vitro site-directed mutagenesis was performed in the mGPDH cDNA sequence to reproduce those mutations that produce amino acid changes in a patient with type 2 diabetes. We detected mutations in the mGPDH FAD-binding domain in a single patient, resulting in a Gly to Arg amino acid change at positions 77, 78, and 81 and a Thr to Pro at position 90. In vitro expression of the mutated constructs in Xenopus oocytes resulted in a significantly lower enzymatic activity than in cells expressing the wild-type form of the enzyme. Our results indicate that although mutations in the mGPDH gene do not appear to have a major role in type 2 diabetes mellitus, the reduction in mGPDH enzymatic activity associated with the newly described mGPDH mutations suggests that they may contribute to the disease in some patients.

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Year:  2001        PMID: 11822825     DOI: 10.1385/ENDO:16:1:39

Source DB:  PubMed          Journal:  Endocrine        ISSN: 1355-008X            Impact factor:   3.633


  20 in total

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2.  Immunodetection of mitochondrial glycerophosphate dehydrogenase (mGDH) by a polyclonal antibody raised against a recombinant mGDH fragment product.

Authors:  A Novials; M E Fabregat; C Benito; J Fernandez-Alvarez; T Gallart; W J Malaisse; R Gomis
Journal:  Biochem Mol Med       Date:  1996-12

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Journal:  Diabetes       Date:  1997-10       Impact factor: 9.461

Review 4.  Seminars in Medicine of the Beth Israel Hospital, Boston. Non-insulin-dependent diabetes mellitus - a genetically programmed failure of the beta cell to compensate for insulin resistance.

Authors:  K S Polonsky; J Sturis; G I Bell
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5.  Normalization by insulin treatment of low mitochondrial glycerol phosphate dehydrogenase and pyruvate carboxylase in pancreatic islets of the GK rat.

Authors:  M J MacDonald; S Efendić; C G Ostenson
Journal:  Diabetes       Date:  1996-07       Impact factor: 9.461

6.  High prevalence of abnormal glucose tolerance and metabolic disturbances in first degree relatives of NIDDM patients. A study in Catalonia, a mediterranean community.

Authors:  A Costa; M Rios; R Casamitjana; R Gomis; I Conget
Journal:  Diabetes Res Clin Pract       Date:  1998-09       Impact factor: 5.602

7.  A genome-wide search for human non-insulin-dependent (type 2) diabetes genes reveals a major susceptibility locus on chromosome 2.

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8.  Enzymatic, metabolic and secretory patterns in human islets of type 2 (non-insulin-dependent) diabetic patients.

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9.  Calcium activation of mitochondrial glycerol phosphate dehydrogenase restudied.

Authors:  M J MacDonald; L J Brown
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10.  Hexose metabolism in pancreatic islets. Glucose-induced and Ca(2+)-dependent activation of FAD-glycerophosphate dehydrogenase.

Authors:  J Rasschaert; W J Malaisse
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3.  Haploinsufficiency of the GPD2 gene in a patient with nonsyndromic mental retardation.

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