首页> 外文期刊>Clinical Science >Prolonged L-alanine exposure induces changesin metabolism, Ca~(2+) handling and desensitization of insulin secretion in clonalpancreatic beta-cells
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Prolonged L-alanine exposure induces changesin metabolism, Ca~(2+) handling and desensitization of insulin secretion in clonalpancreatic beta-cells

机译:长时间的L-丙氨酸暴露会引起克隆胰腺β细胞的代谢,Ca〜(2+)处理和胰岛素分泌脱敏的改变

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摘要

Acute insulin-releasing actions of amino acids have been studied in detail, but comparatively little is known about the beta-cell effects of long-term exposure to amino acids. The present study examined the effects of prolonged exposure of beta-cells to the metabolizable amino acid L-alanine. Basal insulin release or cellular insulin content were not significantly altered by alanine culture, but acute alanine-induced insulin secretion was suppressed by 74% (P < 0.001). Acute stimulation of insulin secretion with glucose, KCI or KIC (2-oxoisocaproic acid) following alanine culture was not affected. Acute alanine exposure evoked strong cellular depolarization after control culture, whereas AUC (area under the curve) analysis revealed significant (P < 0.01) suppression of this action after culture with alanine. Compared with control cells, prior exposure to alanine also markedly decreased (p<0.01) the acute elevation of [Ca~(2+)]j (intracellular [Ca~(2+)]) induced by acute alanine exposure. These diminished stimulatory responses were partially restored after 18 h of culture in the absence of alanine, indicating reversible amino-acid-induced desensitization. ~(13)C NMR spectra revealed that alanine culture increased glutamate labelling at position C4 (by 60%; P < 0.01), as a result of an increase in the singlet peak, indicating increased flux through pyruvate dehydrogenase. Consistent with this, protein expression of the pyruvate dehydrogenase kinases PDK2 and PDK4 was significantly reduced. This was accompanied by a decrease in cellular ATP (P < 0.05), consistent with diminished insulin-releasing actions of this amino acid. Collectively, these results illustrate the phenomenon of beta-cell desensitization by amino acids, indicating that prolonged exposure to alanine can induce reversible alterations to metabolic flux, Ca~(2+) handling and insulin secretion.
机译:已经详细研究了氨基酸的急性胰岛素释放作用,但对长期暴露于氨基酸的β细胞效应的了解相对较少。本研究检查了长期暴露于可代谢氨基酸L-丙氨酸的β细胞的影响。丙氨酸培养未显着改变基础胰岛素释放或细胞胰岛素含量,但急性丙氨酸诱导的胰岛素分泌被抑制了74%(P <0.001)。丙氨酸培养后,葡萄糖,KCI或KIC(2-氧代己酸)对胰岛素分泌的急性刺激不受影响。急性丙氨酸暴露在对照培养后引起强烈的细胞去极化作用,而AUC(曲线下面积)分析显示丙氨酸培养后对该作用有明显的抑制作用(P <0.01)。与对照细胞相比,先前暴露于丙氨酸也显着降低了由急性丙氨酸暴露引起的[Ca〜(2 +)] j(细胞内[Ca〜(2+)])的急性升高(p <0.01)。在缺乏丙氨酸的情况下培养18小时后,这些减弱的刺激反应得以部分恢复,表明可逆的氨基酸诱导的脱敏。 〜(13)C NMR光谱显示,由于单线态峰的增加,丙氨酸培养物增加了C4位置的谷氨酸标记(增加60%; P <0.01),表明通过丙酮酸脱氢酶的通量增加。与此相一致,丙酮酸脱氢酶激酶PDK2和PDK4的蛋白质表达显着降低。这伴随着细胞ATP的降低(P <0.05),与该氨基酸的胰岛素释放作用减弱有关。总的来说,这些结果说明了氨基酸使β细胞脱敏的现象,表明长时间暴露于丙氨酸会引起代谢通量,Ca〜(2+)处理和胰岛素分泌的可逆变化。

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