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Autophagy in Dictyostelium: Mechanisms, regulation and disease in a simple biomedical model

机译:Dictyostelium中的自噬:一个简单的生物医学模型中的机制,调节和疾病

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摘要

Autophagy is a fast-moving field with an enormous impact on human health and disease. Understanding the complexity of the mechanism and regulation of this process often benefits from the use of simple experimental models such as the social amoeba Dictyostelium discoideum. Since the publication of the first review describing the potential of D. discoideum in autophagy, significant advances have been made that demonstrate both the experimental advantages and interest in using this model. Since our previous review, research in D. discoideum has shed light on the mechanisms that regulate autophagosome formation and contributed significantly to the study of autophagy-related pathologies. Here, we review these advances, as well as the current techniques to monitor autophagy in D. discoideum. The comprehensive bioinformatics search of autophagic proteins that was a substantial part of the previous review has not been revisited here except for those aspects that challenged previous predictions such as the composition of the Atg1 complex. In recent years our understanding of, and ability to investigate, autophagy in D. discoideum has evolved significantly and will surely enable and accelerate future research using this model.
机译:自噬是一种快速发展的领域,对人类健康和疾病影响巨大影响。了解该过程的机制和规定的复杂性通常是利益使用简单的实验模型,例如社会amoeba dictyostelium discoideum。自发布的第一次审查,描述了D. DiCeoide的潜力在自噬中,已经提出了显着的进步,以证明使用该模型的实验优势和兴趣。自从我们之前的审查以来,D. Dipeoideum的研究对调节自噬组织形成的机制,并显着促进了与自噬相关病理学的贡献。在这里,我们审查了这些进步,以及目前在D. DiscoIdeum中监测自噬的技术。除了挑战以前预测的那些方面,尚未重新预先审视自噬蛋白的自噬蛋白质的全面生物信息学,除了诸如ATG1复合物的组成之类的预测。近年来我们对D. Discopagy的探讨和调查能力的理解和能力已经显着演变,并且可以使用此模型来实现和加速未来的研究。

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