Abstract

One goal of diabetic regenerative medicine is to instructively convert mature pancreatic exocrine cells into insulin-producing cells. We recently reported that ligand-bound thyroid hormone receptor α (TRα) plays a critical role in expansion of the β-cell mass during postnatal development. Here, we used an adenovirus vector that expresses TRα driven by the amylase 2 promoter (AdAmy2TRα) to induce the reprogramming of pancreatic acinar cells into insulin-producing cells. Treatment with l-3,5,3-triiodothyronine increases the association of TRα with the p85α subunit of phosphatidylinositol 3-kinase (PI3K), leading to the phosphorylation and activation of Akt and the expression of Pdx1, Ngn3, and MafA in purified acinar cells. Analyses performed with the lectin-associated cell lineage tracing system and the Cre/loxP-based direct cell lineage tracing system indicate that newly synthesized insulin-producing cells originate from elastase-expressing pancreatic acinar cells. Insulin-containing secretory granules were identified in these cells by electron microscopy. The inhibition of p85α expression by siRNA or the inhibition of PI3K by LY294002 prevents the expression of Pdx1, Ngn3, and MafA and the reprogramming to insulin-producing cells. In immunodeficient mice with streptozotocin-induced hyperglycemia, treatment with AdAmy2TRα leads to the reprogramming of pancreatic acinar cells to insulin-producing cells in vivo. Our findings suggest that ligand-bound TRα plays a critical role in β-cell regeneration during postnatal development via activation of PI3K signaling.

Highlights

  • One goal of diabetic regenerative medicine is to convert mature pancreatic acinar cells into insulin-producing cells

  • Interaction of thyroid hormone nuclear receptors (TR)␣ with phosphatidylinositol 3-kinase (PI3K)—We first analyzed the expression of endogenous TR␣ in the pancreatic acinar or ␤-cells by coimmunoprecipitation of the whole cell lysate with a monoclonal antibody that recognizes the TR C-terminal region or with control mouse IgG

  • These findings indicate that the expression levels of TR␣ are different between pancreatic acinar cells and ␤-cells and that large amounts of TR␣ are present in insulin-producing cells

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Summary

Background

One goal of diabetic regenerative medicine is to convert mature pancreatic acinar cells into insulin-producing cells. Results: Ligand-bound thyroid hormone receptor ␣ (TR␣), which interacts with p85␣, induces phosphatidylinositol 3-kinase (PI3K) signaling and insulin expression. We recently reported that ligand-bound thyroid hormone receptor ␣ (TR␣) plays a critical role in expansion of the ␤-cell mass during postnatal development. The formation of the pancreas and its subsequent differentiation into various types of exocrine and endocrine cells during development are controlled by the activation or repression of a large number of genes [1]. The expression of these genes is regulated by a well organized cascade of transcription factors. Two TR genes located on different chromosomes encode four TR isoforms, designated as

The abbreviations used are
EXPERIMENTAL PROCEDURES
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