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Published on: April 19, 2013
Genetic defects in human pericentrin are associated with severe insulin resistance and diabetes
Isabel Huang-Doran1, Louise S Bicknell, Francis M Finucane
1Institute of Metabolic Science, Addenbrooke's Hospital, University of Cambridge Metabolic Research Laboratories, Cambridge, UK.
Insights
Genetic defects in pericentrin (PCNT) are linked to severe insulin resistance and early-onset diabetes in patients. PCNT deficiency impairs glucose uptake in adipocytes, contributing to metabolic dysfunction.
Area of Science:
- Endocrinology
- Genetics
- Cell Biology
Background:
- Genetic defects in human pericentrin (PCNT) cause osteodysplastic primordial dwarfism.
- PCNT deficiency has been anecdotally linked to diabetes.
- The role of PCNT in metabolic regulation is not well understood.
Purpose of the Study:
- To determine the prevalence of diabetes and insulin resistance in patients with PCNT defects.
- To investigate the impact of pericentrin depletion on insulin action and adipogenesis in a cellular model.
Main Methods:
- Cross-sectional metabolic assessment of 21 patients with PCNT mutations.
- Quantitative real-time PCR for pericentrin expression profiling in human tissues.
- Pericentrin knockdown in 3T3-L1 adipocytes to assess insulin action, adipogenesis, and glucose uptake.
Main Results:
- 18 out of 21 patients with PCNT defects exhibited insulin resistance, with the majority being severe.
- Ten patients developed diabetes with a mean onset age of 15 years; 13 had metabolic dyslipidemia.
- Pericentrin knockdown in adipocytes impaired insulin-stimulated glucose uptake by twofold, linked to defects in cell proliferation and adipogenesis, but did not affect proximal insulin signaling.
Conclusions:
- Severe insulin resistance and premature diabetes are common in PCNT deficiency, developing postnatally.
- Impaired adipocyte differentiation may contribute to the metabolic phenotype.
- Pericentrin deficiency does not directly impair proximal insulin action in adipocytes but affects glucose uptake.
Objective:
Genetic defects in human pericentrin (PCNT), encoding the centrosomal protein pericentrin, cause a form of osteodysplastic primordial dwarfism that is sometimes reported to be associated with diabetes. We thus set out to determine the prevalence of diabetes and insulin resistance among patients with PCNT defects and examined the effects of pericentrin depletion on insulin action using 3T3-L1 adipocytes as a model system.
Research Design And Methods:
A cross-sectional metabolic assessment of 21 patients with PCNT mutations was undertaken. Pericentrin expression in human tissues was profiled using quantitative real-time PCR. The effect of pericentrin knockdown on insulin action and adipogenesis in 3T3-L1 adipocytes was determined using Oil red O staining, gene-expression analysis, immunoblotting, and glucose uptake assays. Pericentrin expression and localization also was determined in skeletal muscle.
Results:
Of 21 patients with genetic defects in PCNT, 18 had insulin resistance, which was severe in the majority of subjects. Ten subjects had confirmed diabetes (mean age of onset 15 years [range 5-28]), and 13 had metabolic dyslipidemia. All patients without insulin resistance were younger than 4 years old. Knockdown of pericentrin in adipocytes had no effect on proximal insulin signaling but produced a twofold impairment in insulin-stimulated glucose uptake, approximately commensurate with an associated defect in cell proliferation and adipogenesis. Pericentrin was highly expressed in human skeletal muscle, where it showed a perinuclear distribution.
Conclusions:
Severe insulin resistance and premature diabetes are common features of PCNT deficiency but are not congenital. Partial failure of adipocyte differentiation may contribute to this, but pericentrin deficiency does not impair proximal insulin action in adipocytes.
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