Type 2 diabetes is a heterogeneous disorder caused by concomitant impairment of insulin secretion by pancreatic β cells and of insulin action in peripheral target tissues. Studies with inhibitors and agonists established a role for PLC in the regulation of insulin secretion but did not distinguish between effects due to nuclear or cytoplasmic PLC signaling pathways that act in a distinct fashion. We report that in MIN6 β cells, PLCβ1 localized in both nucleus and cytoplasm, PLCδ4 in the nucleus, and PLCγ1 in the cytoplasm. By silencing each isoform, we observed that they all affected glucose-induced insulin release both at basal and high glucose concentrations. To elucidate the molecular basis of PLC regulation, we focused on peroxisome proliferator-activated receptor-γ (PPARγ), a nuclear receptor transcription factor that regulates genes critical to β-cell maintenance and functions. Silencing of PLCβ1 and PLCδ4 resulted in a decrease in the PPARγ mRNA level. By means of a PPARγ- promoter-luciferase assay, the decrease could be attributed to a PLC action on the PPARγ-promoter region. The effect was specifically observed on silencing of the nuclear and not the cytoplasmic PLC. These findings highlight a novel pathway by which nuclear PLCs affect insulin secretion and identify PPARγ as a novel molecular target of nuclear PLCs.

Fiume R, Ramazzotti G, Faenza I, Piazzi M, Bavelloni A, Billi AM, et al. (2012). Nuclear PLCs affect insulin secretion by targeting PPARgamma; in pancreatic beta cells. THE FASEB JOURNAL, 26(1), 203-210.

Nuclear PLCs affect insulin secretion by targeting PPARgamma; in pancreatic beta cells.

FIUME, ROBERTA;RAMAZZOTTI, GIULIA;FAENZA, IRENE;PIAZZI, MANUELA;BAVELLONI, ALBERTO;BILLI, ANNA MARIA;COCCO, LUCIO ILDEBRANDO
2012

Abstract

Type 2 diabetes is a heterogeneous disorder caused by concomitant impairment of insulin secretion by pancreatic β cells and of insulin action in peripheral target tissues. Studies with inhibitors and agonists established a role for PLC in the regulation of insulin secretion but did not distinguish between effects due to nuclear or cytoplasmic PLC signaling pathways that act in a distinct fashion. We report that in MIN6 β cells, PLCβ1 localized in both nucleus and cytoplasm, PLCδ4 in the nucleus, and PLCγ1 in the cytoplasm. By silencing each isoform, we observed that they all affected glucose-induced insulin release both at basal and high glucose concentrations. To elucidate the molecular basis of PLC regulation, we focused on peroxisome proliferator-activated receptor-γ (PPARγ), a nuclear receptor transcription factor that regulates genes critical to β-cell maintenance and functions. Silencing of PLCβ1 and PLCδ4 resulted in a decrease in the PPARγ mRNA level. By means of a PPARγ- promoter-luciferase assay, the decrease could be attributed to a PLC action on the PPARγ-promoter region. The effect was specifically observed on silencing of the nuclear and not the cytoplasmic PLC. These findings highlight a novel pathway by which nuclear PLCs affect insulin secretion and identify PPARγ as a novel molecular target of nuclear PLCs.
2012
Fiume R, Ramazzotti G, Faenza I, Piazzi M, Bavelloni A, Billi AM, et al. (2012). Nuclear PLCs affect insulin secretion by targeting PPARgamma; in pancreatic beta cells. THE FASEB JOURNAL, 26(1), 203-210.
Fiume R; Ramazzotti G; Faenza I; Piazzi M; Bavelloni A; Billi AM; Cocco L.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/110959
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