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The small heat shock proteins αB-crystallin (HSPB5) and Hsp27 (HSPB1) inhibit the intracellular aggregation of α-synuclein

机译:小型热休克蛋白αB-结晶素(HSPB5)和HSP27(HSPB1)抑制α-突触核蛋白的细胞内聚集

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摘要

Protein homeostasis, or proteostasis, is the process of maintaining the conformational and functional integrity of the proteome. Proteostasis is preserved in the face of stress by a complex network of cellular machinery, including the small heat shock molecular chaperone proteins (sHsps), which act to inhibit the aggregation and deposition of misfolded protein intermediates. Despite this, the pathogenesis of several neurodegenerative diseases has been inextricably linked with the amyloid fibrillar aggregation and deposition of α-synuclein (α-syn). The sHsps are potent inhibitors of α-syn aggregation in vitro. However, the limited availability of a robust, cell-based model of α-syn aggregation has, thus far, restricted evaluation of sHsp efficacy in the cellular context. As such, this work sought to establish a robust model of intracellular α-syn aggregation using Neuro-2a cells. Aggregation of α-syn was found to be sensitive to inhibition of autophagy and the proteasome, resulting in a significant increase in the proportion of cells containing α-syn inclusions. This model was then used to evaluate the capacity of the sHsps, αB-c and Hsp27, to prevent α-syn aggregation in cells. To do so, we used bicistronic expression plasmids to express the sHsps. Unlike traditional fluorescent fusion constructs, these bicistronic expression plasmids enable only individual transfected cells expressing the sHsps (via expression of the fluorescent reporter) to be analysed, but without the need to tag the sHsp, which can affect its oligomeric structure and chaperone activity. Overexpression of both αB-c and Hsp27 significantly reduced the intracellular aggregation of α-syn. Thus, these findings suggest that overexpressing or boosting the activity of sHsps may be a way of preventing amyloid fibrillar aggregation of α-syn in the context of neurodegenerative disease.
机译:蛋白质稳态或蛋白质,是保持蛋白质组的构象和功能完整性的过程。在面对应力的蜂窝机械的群体面前保存蛋白质,包括小型热休克分子伴侣蛋白(SHSP),其用于抑制错误折叠蛋白质中间体的聚集和沉积。尽管如此,几种神经变性疾病的发病机制与α-突触核蛋白(α-SYN)的淀粉样蛋白纤维蛋白聚集和沉积有密不可分。 SHSP是体外α-SYN聚集的有效抑制剂。然而,到目前为止,α-SYN聚集的基于细胞的细胞基模型的有限可用性,因此在蜂窝环境中限制了对SHSP功效的评估。因此,使用神经2A细胞寻求建立细胞内α-SYN聚集的鲁棒模型。发现α-Syn的聚集对自噬和蛋白酶体抑制敏感,导致含有α-SYN夹杂物的细胞比例的显着增加。然后使用该模型来评估SHSP,αB-C和HSP27的容量,以防止细胞中的α-SYN聚集。为此,我们使用双顺列表达质粒表达SHSP。与传统的荧光融合构建体不同,这些双顺列表达质粒只能分析表达SHSP的单个转染细胞(通过表达荧光报告量),但没有需要标记SHSP,这会影响其低聚结构和伴侣活性。 αb-c和hsp27的过表达显着降低了α-syn的细胞内聚集。因此,这些发现表明过表达或促进SHSP的活性可能是在神经变性疾病的背景下预防α-SYN的淀粉样蛋白纤维聚集的一种方式。

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    Dezerae Cox; Heath Ecroyd;

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