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胰岛素降解酶对蛋白质降解的调控:通过小干扰RNA介导的基因沉默进行分析

Regulation of protein degradation by insulin-degrading enzyme: analysis by small interfering RNA-mediated gene silencing.

作者信息

Fawcett Janet, Permana Paska A, Levy Jennifer L, Duckworth William C

机构信息

Endocrinology (CS/111E), Carl T. Hayden VA Medical Center, 650 E. Indian School Road, Phoenix, AZ 85012, USA.

出版信息

Arch Biochem Biophys. 2007 Dec 1;468(1):128-33. doi: 10.1016/j.abb.2007.09.019. Epub 2007 Sep 29.

Abstract

Proteins are vital to the overall structure of cells and to the function of cells in the form of enzymes. Thus the control of protein metabolism is among the most important aspects of cellular metabolism. Insulin's major effect on protein metabolism in the adult animal is inhibition of protein degradation. This is via inhibition of proteasome activity via an interaction with insulin-degrading enzyme (IDE). IDE is responsible for the majority of cellular insulin degradation. We hypothesized that a reduction in IDE would reduce insulin degradation and insulin's ability to inhibit protein degradation. HepG2 cells were transfected with siRNA against human IDE and insulin degradation and protein degradation measured. Both IDE mRNA and protein were reduced by >50% in the IDE siRNA transfected cells. Insulin degradation was reduced by approximately 50%. Cells were labeled with [3H]-leucine to investigate protein degradation. Short-lived protein degradation was unchanged in the cells with reduced IDE expression. Long-lived and very-long-lived protein degradation was reduced in the cells with reduced IDE expression (14.0+/-0.16 vs. 12.5+/-0.07%/4h (long-lived), 9.6+/-2.2% vs. 7.3+/-0.2%/3h (very-long-lived), control vs. IDE transfected, respectively, P<0.005). The inhibition of protein degradation by insulin was reduced 37-76% by a decreased expression of IDE in HepG2 cells. This shows that IDE is involved in cellular insulin metabolism and provides further evidence that insulin inhibits protein degradation via an interaction with IDE.

摘要

蛋白质对于细胞的整体结构以及以酶的形式存在的细胞功能至关重要。因此,蛋白质代谢的调控是细胞代谢最重要的方面之一。胰岛素对成年动物蛋白质代谢的主要作用是抑制蛋白质降解。这是通过与胰岛素降解酶(IDE)相互作用来抑制蛋白酶体活性实现的。IDE负责细胞内大部分胰岛素的降解。我们推测,IDE减少会降低胰岛素降解以及胰岛素抑制蛋白质降解的能力。用针对人IDE的小干扰RNA(siRNA)转染HepG2细胞,并测定胰岛素降解和蛋白质降解情况。在转染了IDE siRNA的细胞中,IDE的信使核糖核酸(mRNA)和蛋白质水平均降低了50%以上。胰岛素降解减少了约50%。用[3H] - 亮氨酸标记细胞以研究蛋白质降解。在IDE表达降低的细胞中,短寿命蛋白质降解没有变化。在IDE表达降低的细胞中,长寿命和极长寿命蛋白质降解减少(分别为14.0±0.16对12.5±0.07%/4小时(长寿命),9.6±2.2%对7.3±0.2%/3小时(极长寿命),分别为对照与转染IDE,P<0.005)。在HepG2细胞中,IDE表达降低使胰岛素对蛋白质降解的抑制作用降低了37 - 76%。这表明IDE参与细胞胰岛素代谢,并进一步证明胰岛素通过与IDE相互作用来抑制蛋白质降解。

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