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完整果蝇翅膀中线粒体的活体成像

Live Imaging of Mitochondria in the Intact Fly Wing.

作者信息

Mattedi Francesca, Maddison Daniel C, Smith Gaynor Ann, Vagnoni Alessio

机构信息

Department of Basic and Clinical Neurosciences, Maurice Wohl Clinical Neuroscience Institute, Institute of Psychiatry, Psychology and Neuroscience, King's College London, London SE5 9RX, United Kingdom.

UK Dementia Research Institute, School of Medicine, Cardiff University, Cardiff CF24 4HQ, United Kingdom.

出版信息

Cold Spring Harb Protoc. 2023 Feb 1;2023(2):106-111. doi: 10.1101/pdb.prot108052.

Abstract

Detailed mechanisms governing the transport of mitochondria in neurons have recently emerged, although it is still poorly understood how the regulation of transport is coordinated in space and time within the physiological context of an organism. Here, we provide a protocol to study the intracellular dynamics of mitochondria in the wing neurons of adult in situ. The mounting and imaging procedures that we describe are suitable for use on most microscopes, and they can be easily implemented in any laboratory. Our noninvasive mounting procedures, combined with the translucency of the wing cuticle in adult animals, makes the wing nervous system accessible to advanced microscopy studies in a physiological environment. Combining the powerful genetics of with time-lapse live imaging, users of this protocol will be able to analyze mitochondrial dynamics over time in a subset of sensory neurons in the wing. These cells extend long axons with a stereotypical plus-end-out microtubule orientation that represents a unique model to understand the logic of neuronal cargo transport, including the mitochondria. Finally, the neurons in this tissue respond to mechanical and chemical stimulation of the sensory organs of the wing, opening up the possibility of coupling the study of mitochondrial dynamics with the modulation of neuronal activity in aging We anticipate that the unique characteristics of this in vivo system will contribute to the discovery of novel mechanisms that regulate mitochondrial dynamics within an organismal context with relevant implications for the pathogenesis of age-dependent neurological disorders.

摘要

尽管在生物体的生理环境中,线粒体在神经元中的运输调节如何在空间和时间上进行协调仍知之甚少,但最近有关神经元中线粒体运输的详细机制已逐渐明晰。在此,我们提供了一种用于研究成年果蝇翅神经元中线粒体细胞内动力学的实验方案。我们所描述的固定和成像程序适用于大多数显微镜,并且可以在任何实验室轻松实施。我们的非侵入性固定程序,结合成年动物翅表皮的半透明性,使得在生理环境下对翅神经系统进行先进的显微镜研究成为可能。将果蝇强大的遗传学与延时实时成像相结合,本实验方案的使用者将能够分析翅中一部分感觉神经元中线粒体随时间的动态变化。这些细胞延伸出具有典型的正端向外微管取向的长轴突,这代表了一个独特的模型,可用于理解包括线粒体在内的神经元货物运输的逻辑。最后,该组织中的神经元对翅感觉器官的机械和化学刺激作出反应,这为将线粒体动态变化的研究与衰老过程中神经元活动的调节相结合提供了可能性。我们预计,这个体内系统的独特特性将有助于发现调节生物体中线粒体动态变化的新机制,这对于年龄依赖性神经疾病的发病机制具有相关意义。

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