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The CFTR-derived peptides as a model of sequence-specific protein aggregation

机译:CFTR衍生肽作为序列特异性蛋白质聚集的模型

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摘要

Protein aggregation is a hallmark of a growing group of pathologies known as conformational diseases. Although many native or mutated proteins are able to form aggregates, the exact amino acid sequences involved in the process of aggregation are known only in a few cases. Hence, there is a need for different model systems to expand our knowledge in this area. The so-called ag region was previously found to cause the aggregation of the C-terminal fragment of the cystic fibrosis transmembrane conductance regulator (CFTR). To investigate whether this specific amino acid sequence is able to induce protein aggregation irrespective of the amino acid context, we altered its position within the CFTR-derived C-terminal peptide and analyzed the localization of such modified peptides in transfected mammalian cells. Insertion of the ag region into a different amino acid background affected not only the overall level of intracellular protein aggregation, but also the morphology and subcellular localization of aggregates, suggesting that sequences other than the ag region can substantially influence the peptide’s behavior. Also, the introduction of a short dipeptide (His-Arg) motif, a crucial component of the ag region, into different locations within the C-terminus of CFTR lead to changes in the aggregation pattern that were less striking, although still statistically significant. Thus, our results indicate that even subtle alterations within the aggregating peptide can affect many different aspects of the aggregation process.
机译:蛋白质聚集是被称为构象性疾病的一组不断增长的病理学的标志。尽管许多天然或突变的蛋白质都能够形成聚集体,但仅在少数情况下才知道聚集过程中涉及的确切氨基酸序列。因此,需要不同的模型系统来扩展我们在这一领域的知识。先前发现所谓的ag区引起囊性纤维化跨膜电导调节剂(CFTR)的C-末端片段的聚集。为了研究该特定氨基酸序列是否能够诱导蛋白聚集,而与氨基酸背景无关,我们改变了其在CFTR衍生的C端肽中的位置,并分析了此类修饰肽在转染哺乳动物细胞中的定位。将ag区域插入不同的氨基酸背景不仅会影响细胞内蛋白质聚集的整体水平,而且会影响聚集体的形态和亚细胞定位,这表明ag区域以外的序列会实质上影响肽的行为。同样,将短二肽(His-Arg)基序(ag区域的关键组成部分)引入CFTR C末端的不同位置会导致聚集模式的变化,虽然在统计学上仍然不明显,但变化并不明显。因此,我们的结果表明,即使聚集肽内的细微变化也会影响聚集过程的许多不同方面。

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