Abstract
An excessive production of nitric oxide (NO) in response to cytokines has been shown to be the major cause of the destruction of islet β-cells associated with type 1 (insulin-dependent) diabetes mellitus. The NO-induced β-cell death is the typical apoptosis. In the present study, we show evidence that supports a tight link between NO, Ca2+, protease and apoptosis in β-cells. Three different NO donors, SNAP, NOR3 and NOC7, induced apoptosis in a β-cell line, MIN6 cells, in a concentration-dependent manner. SNAP at 200 μM increased cytosolic Ca2+ concentration ([Ca2+](i)) and induced apoptosis. The SNAP-induced apoptosis was blocked by a Ca2+ chelator, BAPTA-AM, and by an inhibitor of a Ca2+-dependent protease, calpain. In conclusion, an excessive NO production induces apoptosis, wherein an increase in [Ca2+](i) and resultant activation of calpain play a key role.
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Nakata, M., Uto, N., Maruyama, I., & Yada, T. (1999). Nitric oxide induces apoptosis via Ca2+-dependent processes in the pancreatic β-cell line MIN6. Cell Structure and Function, 24(6), 451–455. https://doi.org/10.1247/csf.24.451
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