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Rhythm of the beta-cell oscillator is not governed by a single regulator: multiple systems contribute to oscillatory behavior

机译:β细胞振荡器的节律不受单个调节器的控制:多个系统有助于振荡行为

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摘要

Pulsatile insulin output, paralleled by oscillations in intracellular Ca(2+), reflect oscillating metabolism within beta-cells in response to secretory fuels. Here we question whether oscillatory periodicity is conserved or varied from stimulation to stimulation, whether glycolysis is essential for the manifestation of an oscillatory response, and if an environment of nutrient oversupply affects oscillatory regularity. We have determined that a beta-cell oscillatory Ca(2+) pattern is independent of the type of applied secretory fuel (glucose, methyl-pyruvate, or alpha-ketoisocaproate). In addition, single cells respond with the same pattern when repeatedly stimulated, regardless of the type of stimulatory fuel. Presence of substimulatory glucose is not necessary to obtain an oscillatory responses to methyl-pyruvate or alpha-ketoisocaproate. Glucose-6-phosphate, as a measure of glycolytic flux, is not detectable under these conditions. These data suggest that multiple systems, rather than a single enzyme component, can contribute to the beta-cell oscillatory behavior. Prolonged exposure to high levels of palmitate impaired oscillatory regularity in the individual beta-cells. This supports the hypothesis that a high-fat environment might contribute to loss of regular oscillatory pattern in diabetic subjects, acting, at least in part, at the level of the single beta-cell
机译:脉动性胰岛素输出,与细胞内Ca(2+)的振荡平行,反映了β细胞内分泌燃料响应的振荡代谢。在这里,我们质疑振荡周期是保守的还是在刺激之间变化的,糖酵解对于振荡反应的表现是否必不可少,营养物质的供应过剩是否会影响振荡规律。我们已经确定,β细胞振荡Ca(2+)模式独立于所应用的分泌燃料(葡萄糖,丙酮酸甲酯或α-酮异己酸)的类型。另外,不管刺激性燃料的类型如何,单细胞在重复刺激时都会以相同的模式响应。兴奋性葡萄糖的存在对于获得丙酮酸甲酯或α-酮异己酸的振荡反应不是必需的。在这些条件下无法检测到6-磷酸葡萄糖作为糖酵解通量的量度。这些数据表明,多个系统而不是单个酶组分可以促进β细胞的振荡行为。长时间暴露于高水平的棕榈酸酯会损害单个β细胞的振荡规律。这支持了以下假设:高脂环境可能会导致糖尿病受试者的正常振荡模式丧失,至少部分作用于单个β细胞的水平

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    Heart, Emma; Smith, Peter J.S.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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