Using fluorescence to study actomyosin in yeasts.

Q2 Medicine
Daniel P Mulvihill
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引用次数: 0

Abstract

This year marks the 30th anniversary of the first description of the cellular distribution of actin within a yeast cell. Since then advances in both molecular genetics and imaging technologies have ensured research within these simple model organisms has blazed a trail in the field of actomyosin research. Many yeast proteins and their functions are functionally conserved in human cells. This, combined with experimental speed, minimal cost and ease of use make the yeasts extremely attractive model organisms for researching diverse cellular processes, including those involving actomyosin. In this chapter, current state-of-the-art fluorescence methodologies being applied to yeast actomyosin research, together with an honest appraisal of their limitations, such as the pitfalls that should be considered when fluorescently labelling proteins interacting within a dynamic cytoskeleton, will be discussed. Papers describing the established techniques developed for yeast localisation studies will be highlighted. This will provide the reader with an informed overview of the arsenal of imaging techniques available to the yeast actomyosin researcher and encourage them to consider novel ways these simple unicellular eukaryotes could be used to address their own research questions.

用荧光法研究酵母中的肌动球蛋白。
今年是首次描述肌动蛋白在酵母细胞内的细胞分布的30周年。从那时起,分子遗传学和成像技术的进步确保了对这些简单模式生物的研究在肌动球蛋白研究领域开辟了一条道路。许多酵母蛋白及其功能在人类细胞中是功能保守的。这一点,再加上实验速度快、成本低和易于使用,使酵母成为研究各种细胞过程(包括涉及肌动球蛋白的细胞过程)极具吸引力的模式生物。在本章中,将讨论当前应用于酵母肌动球蛋白研究的最先进的荧光方法,以及对其局限性的诚实评估,例如在动态细胞骨架内相互作用的荧光标记蛋白质时应考虑的陷阱。将重点介绍为酵母定位研究开发的已建立的技术。这将为读者提供一个知情的概述,可用于酵母肌动球蛋白研究人员的成像技术库,并鼓励他们考虑这些简单的单细胞真核生物的新方法,可用于解决他们自己的研究问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Experientia supplementum (2012)
Experientia supplementum (2012) Medicine-Medicine (all)
CiteScore
3.30
自引率
0.00%
发文量
24
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