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黑腹果蝇自噬反应的特征

Characterization of Autophagic Responses in Drosophila melanogaster.

作者信息

Xu T, Kumar S, Denton D

机构信息

Centre for Cancer Biology, University of South Australia, Adelaide, SA, Australia.

Centre for Cancer Biology, University of South Australia, Adelaide, SA, Australia.

出版信息

Methods Enzymol. 2017;588:445-465. doi: 10.1016/bs.mie.2016.09.089. Epub 2016 Nov 23.

Abstract

Drosophila is an excellent model system for studying autophagy during animal development due to the availability of genetic reagents and opportunity for in vivo cell biological analysis. The regulation and mechanism of autophagy are highly evolutionarily conserved and the role of autophagy has been characterized during various stages of Drosophila development as well as following starvation. Studies in Drosophila have revealed novel insights into the role of distinct components of the autophagy machinery. This chapter describes protocols for examining autophagy during Drosophila development. A crucial step in the induction of autophagy is the incorporation of Atg8a into the autophagosome. This can be measured as autophagic puncta using live fluorescent imaging, immunostaining, or immunoblot analysis of LC3/Atg8a processing. The level of autophagy can also be examined using other specific components of the autophagy pathway as markers detected by immunofluorescent imaging. Based on the distinct morphology of autophagy, it can also be examined by transmission electron microscopy. In addition, one of the advantages of using Drosophila as a model is the ability to undertake genetic analysis of individual components of the autophagy machinery. Current approaches that can be used to monitor autophagy, including the overall flux and individual steps in Drosophila melanogaster, will be discussed.

摘要

由于遗传试剂的可用性以及进行体内细胞生物学分析的机会,果蝇是研究动物发育过程中自噬的优秀模型系统。自噬的调控和机制在进化上高度保守,并且自噬在果蝇发育的各个阶段以及饥饿后的作用已得到表征。对果蝇的研究揭示了自噬机制不同组分作用的新见解。本章描述了在果蝇发育过程中检测自噬的实验方案。自噬诱导的关键步骤是Atg8a并入自噬体。这可以通过实时荧光成像、免疫染色或对LC3/Atg8a加工过程进行免疫印迹分析,将其测定为自噬斑点。自噬水平也可以使用自噬途径的其他特定组分作为通过免疫荧光成像检测的标志物来进行检测。基于自噬独特的形态,也可以通过透射电子显微镜进行检测。此外,使用果蝇作为模型的优点之一是能够对自噬机制的各个组分进行遗传分析。将讨论目前可用于监测果蝇中自噬的方法,包括整体通量和各个步骤。

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