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二 - 胰岛素在线粒体中的加工过程。

II - Insulin processing in mitochondria.

作者信息

Camberos María Del Carmen, Pérez Adriana A, Passicot Gisel A, Martucci Lucía C, Wanderley María I, Udrisar Daniel P, Cresto Juan C

机构信息

Endocrinology Research Center "Dr. Cesar Bergada" (CEDIE-CONICET), Endocrinology Division, Children Hospital. R. Gutierrez, Gallo 1330 (C1425), Ciudad Autónoma de Buenos Aires, Buenos Aires, Argentina.

Department Genetic and Evolution, School of Natural and Exact Sciences, University of Buenos Aires (UBA), Buenos Aires, Argentina.

出版信息

J Bioenerg Biomembr. 2016 Oct;48(5):469-482. doi: 10.1007/s10863-016-9682-8. Epub 2016 Oct 29.

Abstract

Our objective was to know how insulin is processing in mitochondria; if IDE is the only participant in mitochondrial insulin degradation and the role of insulin degradation on IDE accumulation in mitoplasts. Mitochondria and its fractions were isolated as described by Greenwalt. IDE was purified and detected in immunoblot with specific antibodies. High insulin degradation was obtained through addition to rat's diet of 25 g/rat of apple and 10 g/rat of hard-boiled eggs, 3 days a week. Mitochondrial insulin degradation was assayed with 5 % TCA, insulin antibody or Sephadex G50 chromatography. Degradation was also assayed 60 min at 37 °C in mitochondrial fractions (IMS and Mx) with diet or not and without IDE. Degradation in fractions precipitated with ammonium sulfates (60-80 %) were studied after mitochondrial insulin incubation (1 ng. insulin during 15 min, at 30 °C) or with addition of 2.5 mM ATP. Supplementary diet increased insulin degradation. High insulin did not increase mitoplasts accumulation and did not decrease mitochondrial degradation. High insulin and inhibition of degradation evidence insulin competition for a putative transport system. Mitochondrial incubation with insulin increased IDE in matrix as observed in immunoblot. ATP decreased degradation in Mx and increased it in IMS. Chromatography of IMS demonstrated an ATP-dependent protease that degraded insulin, similar to described by Sitte et al. Mitochondria participate in insulin degradation and the diet increased it. High insulin did not accomplish mitochondrial decrease of degradation or its accumulation in mitoplasts. Mitochondrial incubation with insulin increased IDE in matrix. ATP suggested being a regulator of mitochondrial insulin degradation.

摘要

我们的目标是了解胰岛素在线粒体中的加工过程;IDE是否是线粒体胰岛素降解的唯一参与者,以及胰岛素降解对线粒体内膜间隙中IDE积累的作用。按照格林沃尔特所述方法分离线粒体及其组分。纯化IDE并用特异性抗体在免疫印迹中进行检测。通过每周3天给大鼠喂食25克/只苹果和10克/只煮鸡蛋来实现高胰岛素降解。用5%三氯乙酸、胰岛素抗体或葡聚糖凝胶G50柱色谱法测定线粒体胰岛素降解。在有或无饮食且无IDE的情况下,于37℃在线粒体组分(内膜间隙和线粒体基质)中测定60分钟的降解情况。在线粒体胰岛素孵育(1纳克胰岛素,30℃,15分钟)后或添加2.5毫摩尔ATP后,研究用硫酸铵沉淀的组分(60 - 80%)中的降解情况。补充饮食可增加胰岛素降解。高胰岛素水平并未增加线粒体内膜间隙的积累,也未降低线粒体降解。高胰岛素水平和降解抑制表明胰岛素竞争一个假定的转运系统。如免疫印迹所示,胰岛素与线粒体孵育可增加基质中的IDE。ATP降低了线粒体基质中的降解并增加了内膜间隙中的降解。内膜间隙的柱色谱显示一种ATP依赖性蛋白酶可降解胰岛素,类似于西特等人所描述的情况。线粒体参与胰岛素降解,饮食可增加其降解。高胰岛素水平并未导致线粒体降解减少或线粒体内膜间隙中其积累增加。胰岛素与线粒体孵育可增加基质中的IDE。ATP似乎是线粒体胰岛素降解的调节剂。

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