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利用果蝇进行中间丝的研究。

Using Drosophila for Studies of Intermediate Filaments.

作者信息

Bohnekamp Jens, Cryderman Diane E, Thiemann Dylan A, Magin Thomas M, Wallrath Lori L

机构信息

Institute of Biology and Translational Center for Regenerative Medicine, University of Leipzig, Leipzig, Germany.

Department of Biochemistry, University of Iowa, Iowa City, Iowa, USA.

出版信息

Methods Enzymol. 2016;568:707-26. doi: 10.1016/bs.mie.2015.08.028. Epub 2015 Oct 24.

Abstract

Drosophila melanogaster is a useful organism for determining protein function and modeling human disease. Drosophila offers a rapid generation time and an abundance of genomic resources and genetic tools. Conservation in protein structure, signaling pathways, and developmental processes make studies performed in Drosophila relevant to other species, including humans. Drosophila models have been generated for neurodegenerative diseases, muscular dystrophy, cancer, and many other disorders. Recently, intermediate filament protein diseases have been modeled in Drosophila. These models have revealed novel mechanisms of pathology, illuminated potential new routes of therapy, and make whole organism compound screens feasible. The goal of this chapter is to outline steps to study intermediate filament function and model intermediate filament-associated diseases in Drosophila. The steps are general and can be applied to study the function of almost any protein. The protocols outlined here are for both the novice and experienced Drosophila researcher, allowing the rich developmental and cell biology that Drosophila offers to be applied to studies of intermediate filaments.

摘要

黑腹果蝇是一种用于确定蛋白质功能和模拟人类疾病的有用生物。果蝇具有较短的世代时间以及丰富的基因组资源和遗传工具。蛋白质结构、信号通路和发育过程中的保守性使得在果蝇中进行的研究与包括人类在内的其他物种相关。已经建立了针对神经退行性疾病、肌肉萎缩症、癌症和许多其他疾病的果蝇模型。最近,中间丝蛋白疾病已在果蝇中得到模拟。这些模型揭示了新的病理机制,阐明了潜在的新治疗途径,并使全生物体化合物筛选成为可能。本章的目标是概述在果蝇中研究中间丝功能和模拟中间丝相关疾病的步骤。这些步骤具有普遍性,几乎可应用于研究任何蛋白质的功能。这里概述的方案适用于新手和有经验的果蝇研究人员,使果蝇所提供的丰富的发育和细胞生物学知识能够应用于中间丝的研究。

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