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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Increased Protein Stability and Decreased Protein Turnover in the Caenorhabditis elegans Ins/IGF-1 daf-2 Mutant
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Increased Protein Stability and Decreased Protein Turnover in the Caenorhabditis elegans Ins/IGF-1 daf-2 Mutant

机译:秀丽隐杆线虫Ins / IGF-1 daf-2突变体中增加的蛋白质稳定性和减少的蛋白质周转率

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In Caenorhabditis elegans, cellular proteostasis is likely essential for longevity. Autophagy has been shown to be essential for lifespan extension of daf-2 insulin/IGF mutants. Therefore, it can be hypothesized that daf-2 mutants achieve this phenotype by increasing protein turnover. However, such a mechanism would exert a substantial energy cost. By using classical S-35 pulse-chase labeling, we observed that protein synthesis and degradation rates are decreased in young adults of the daf-2 insulin/IGF mutants. Although reduction of protein turnover may be energetically favorable, it may lead to accumulation and aggregation of damaged proteins. As this has been shown not to be the case in daf-2 mutants, another mechanism must exist to maintain proteostasis in this strain. We observed that proteins isolated from daf-2 mutants are more soluble in acidic conditions due to increased levels of trehalose. This suggests that trehalose may decrease the potential for protein aggregation and increases proteostasis in the daf-2 mutants. We postulate that daf-2 mutants save energy by decreasing protein turnover rates and instead stabilize their proteome by trehalose.
机译:在秀丽隐杆线虫中,细胞蛋白水解可能对于长寿至关重要。自噬已被证明对于延长daf-2胰岛素/ IGF突变体的寿命至关重要。因此,可以假设daf-2突变体通过增加蛋白质更新来实现此表型。然而,这样的机制将施加大量的能量成本。通过使用经典的S-35脉冲追踪标记,我们观察到daf-2胰岛素/ IGF突变体的年轻成年人中蛋白质合成和降解速率降低。尽管减少蛋白质更新在能量上可能是有利的,但它可能导致受损蛋白质的积累和聚集。由于在daf-2突变体中并非如此,因此必须存在另一种机制来维持该菌株的蛋白稳态。我们观察到从daf-2突变体分离的蛋白质由于海藻糖水平的提高而更易溶于酸性条件。这表明海藻糖可能会降低daf-2突变体中蛋白质聚集的可能性并增加蛋白稳态。我们假设daf-2突变体通过降低蛋白质更新率来节省能量,而是通过海藻糖来稳定其蛋白质组。

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