Interleukin-6 increases insulin secretion and preproinsulin mRNA expression via Ca2+-dependent mechanism

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Abstract

Interleukin (IL)-6, one of the cytokines released from inflammatory cells, stimulates insulin secretion in a physiological concentration (1-100 pg/ml), but the exact mechanism is still unknown. The present studies were undertaken to investigate the mechanism of IL-6-induced stimulation of insulin secretion in HIT-T 15 cells. The effects of the addition of nifedipine on the IL-6 (100 pg/ml)-induced stimulation of insulin secretion were investigated. We also examined the possibility that IL-6 (1-100 pg/ml) may stimulate insulin messenger ribonucleic acid (mRNA) expression, using the reverse transcription-polymerase chain reaction method. The addition of 100 and 1000 nM nifedipine significantly attenuated the stimulatory effects of 100 pg/ml IL-6 on insulin secretion. The addition of 1-100 pg/ml IL-6 dose- dependently increased preproinsulin mRNA expression relative to β-actin mRNA. IL-6 increased insulin gene promoter activity of fragments A (-2188 to +337bp) and B (-1782 to +270bp) but not fragments C (-1275 to +270bp), D (- 1138 to +270bp), E (-880 to +236bp) or F (-356 to +252bp). The addition of 10 nM nifedipine completely abolished the stimulatory effect of 10-100 pg/ml IL- 6 on relative preproinsulin mRNA expression. These data raised the possibility that IL-6 increased preproinsulin mRNA expression via the stimulation of Ca2+ influx which enhances insulin gene expression.

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Shimizu, H., Ohtani, K., Kato, Y., & Mori, M. (2000). Interleukin-6 increases insulin secretion and preproinsulin mRNA expression via Ca2+-dependent mechanism. Journal of Endocrinology, 166(1), 121–126. https://doi.org/10.1677/joe.0.1660121

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