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The effect of amyloidogenic peptides on bacterial aging correlates with their intrinsic aggregation propensity

机译:淀粉样肽对细菌衰老的影响与其固有的聚集倾向相关

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The formation of aggregates by misfolded proteins is thought to be inherently toxic, affecting cell fitness. This observation has led to the suggestion that selection against protein aggregation might be a major constraint on protein evolution. The precise fitness cost associated with protein aggregation has been traditionally difficult to evaluate. Moreover, it is not known if the detrimental effect of aggregates on cell physiology is generic or depends on the specific structural features of the protein deposit. In bacteria, the accumulation of intracellular protein aggregates reduces cell reproductive ability, promoting cellular aging. Here, we exploit the cell division defects promoted by the intracellular aggregation of Alzheimer's-disease-related amyloid β peptide in bacteria to demonstrate that the fitness cost associated with protein misfolding and aggregation is connected to the protein sequence, which controls both the in vivo aggregation rates and the conformational properties of the aggregates. We also show that the deleterious impact of protein aggregation on bacterial division can be buffered by molecular chaperones, likely broadening the sequential space on which natural selection can act. Overall, the results in the present work have potential implications for the evolution of proteins and provide a robust system to experimentally model and quantify the impact of protein aggregation on cell fitness.
机译:错误折叠的蛋白质形成的聚集体被认为具有内在毒性,影响细胞适应性。该观察结果提示针对蛋白质聚集的选择可能是蛋白质进化的主要限制。传统上很难评估与蛋白质聚集相关的精确适应度成本。此外,还不知道聚集体对细胞生理的有害作用是普遍的还是取决于蛋白质沉积物的特定结构特征。在细菌中,细胞内蛋白质聚集体的积累会降低细胞的繁殖能力,从而促进细胞衰老。在这里,我们利用细菌中阿尔茨海默氏病相关淀粉样蛋白β肽的细胞内聚集促进的细胞分裂缺陷,证明与蛋白质错误折叠和聚集相关的适应性成本与蛋白质序列有关,从而控制着体内聚集率和聚集体的构象性质。我们还表明,蛋白质聚集对细菌分裂的有害影响可以被分子伴侣所缓冲,可能扩大了自然选择可以起作用的顺序空间。总的来说,本研究的结果对蛋白质的进化具有潜在的影响,并提供了一个强大的系统来对蛋白质聚集对细胞适应性的影响进行实验建模和量化。

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