首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Effects of aging on insulin synthesis and secretion. Differential effects on preproinsulin messenger RNA levels proinsulin biosynthesis and secretion of newly made and preformed insulin in the rat.
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Effects of aging on insulin synthesis and secretion. Differential effects on preproinsulin messenger RNA levels proinsulin biosynthesis and secretion of newly made and preformed insulin in the rat.

机译:衰老对胰岛素合成和分泌的影响。对大鼠胰岛素原前信使RNA水平胰岛素原生物合成以及新制备和预制的胰岛素分泌的不同影响。

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摘要

Aging in men and rodents is associated with a marked decline in glucose stimulated insulin secretion by pancreatic beta cells (B cells). Secreted insulin is the end result of a series of steps along the biosynthetic protein-secretion pathway, including insulin gene transcription, processing of transcripts to preproinsulin mRNA, translation of mRNA, segregation and processing of newly made proinsulin in secretory vesicles, proinsulin to insulin conversion, transport of vesicles to the plasma membrane, and exocytosis. We have examined the influence of age at three stages along this pathway: preproinsulin mRNA levels, proinsulin synthesis, and secretion of newly made and preformed insulin, using Fischer rats, a widely studied rodent model of aging. Pancreatic weights and total insulin contents, islet sizes, and mean insulin content per islet were the same in young adult (4-5 mo) and senescent (21-22 mo) animals. There was no effect of age on preproinsulin mRNA levels in whole pancreata of fed animals, or in isolated islets cultured for 16 h in 5.5 mM glucose. Proinsulin biosynthesis and the secretion of newly made insulin were compared in isolated islets preincubated in 5.5 mM glucose. After a pulse label at 16.7 mM glucose, proinsulin synthesis, assayed by immunoprecipitation, was decreased 16% in 7 mo islets and 39% in 21-22 mo islets, compared with 4-5 mo islets, though total protein synthesis was not reduced. When chased at 2.8 mM glucose, 4-5 month and 21-22 mo islets showed no difference in release of preformed or newly made insulin. When chased at 16.7 mM glucose, there was a significant decrease in the secretion of newly made insulin in the old islets compared with the young islets. There was preferential release of newly made insulin over preformed insulin in both young and old islets. However, since secretion of preformed insulin was decreased much more than secretion of newly made insulin in senescent islets, these displayed a two- to threefold increase in the proportion of newly made insulin relative to total immunoreactive insulin released compared with young adult islets. The differential effects of aging on these steps in the insulin synthesis-secretion pathway may be due to varying impairments in signals transducing the glucose stimulus into the wide range of B cell responses to glucose.
机译:男性和啮齿动物的衰老与胰岛β细胞(B细胞)引起的葡萄糖刺激的胰岛素分泌显着下降有关。分泌胰岛素是生物合成蛋白分泌途径一系列步骤的最终结果,包括胰岛素基因转录,转录物加工成胰岛素原前mRNA,mRNA的翻译,分泌小泡中新胰岛素原的分离和加工,胰岛素原到胰岛素的转化。 ,将囊泡运输到质膜和胞吐作用。我们已经使用Fischer大鼠研究了衰老过程中三个阶段的年龄影响:胰岛素原前mRNA水平,胰岛素原合成以及新制备和预形成的胰岛素的分泌。在成年(4-5 mo)和衰老(21-22 mo)动物中,胰腺的重量和总胰岛素含量,胰岛大小以及每个胰岛的平均胰岛素含量相同。年龄对喂食动物的整个胰脏或在5.5 mM葡萄糖中培养16小时的分离胰岛中胰岛素原前mRNA水平没有影响。比较了在5.5 mM葡萄糖中预孵育的胰岛中胰岛素原的生物合成和新胰岛素的分泌。在脉冲标记为16.7 mM葡萄糖后,通过免疫沉淀法测定的胰岛素原合成在4个Mo-5个胰岛中减少了,在7个Mo胰岛中减少了16%,在21-22 mo胰岛中减少了39%,尽管总蛋白合成没有减少。当以2.8 mM葡萄糖追踪时,4-5个月和21-22 mo的胰岛显示预先形成或新制造的胰岛素的释放没有差异。当以16.7 mM葡萄糖追踪时,与年轻的胰岛相比,旧的胰岛中新产生的胰岛素的分泌显着减少。无论是年轻的还是老人的胰岛,新产生的胰岛素都比预先形成的胰岛素优先释放。但是,由于衰老的胰岛中预先形成的胰岛素的分泌要比新制备的胰岛素的分泌减少得多,因此与年轻成年胰岛相比,相对于释放的总免疫反应性胰岛素,新制备的胰岛素的比例增加了2到3倍。衰老对胰岛素合成-分泌途径中这些步骤的不同影响可能是由于将葡萄糖刺激转导至广泛的B细胞对葡萄糖反应的信号损伤程度不同所致。

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