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光遗传学实现的肌肉收缩表型分析揭示了秀丽隐杆线虫中肌节成分的功能关系。

Muscle contraction phenotypic analysis enabled by optogenetics reveals functional relationships of sarcomere components in Caenorhabditis elegans.

作者信息

Hwang Hyundoo, Barnes Dawn E, Matsunaga Yohei, Benian Guy M, Ono Shoichiro, Lu Hang

机构信息

School of Chemical &Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA, USA.

Department of Pathology, Emory University, Atlanta, GA, USA.

出版信息

Sci Rep. 2016 Jan 29;6:19900. doi: 10.1038/srep19900.

Abstract

The sarcomere, the fundamental unit of muscle contraction, is a highly-ordered complex of hundreds of proteins. Despite decades of genetics work, the functional relationships and the roles of those sarcomeric proteins in animal behaviors remain unclear. In this paper, we demonstrate that optogenetic activation of the motor neurons that induce muscle contraction can facilitate quantitative studies of muscle kinetics in C. elegans. To increase the throughput of the study, we trapped multiple worms in parallel in a microfluidic device and illuminated for photoactivation of channelrhodopsin-2 to induce contractions in body wall muscles. Using image processing, the change in body size was quantified over time. A total of five parameters including rate constants for contraction and relaxation were extracted from the optogenetic assay as descriptors of sarcomere functions. To potentially relate the genes encoding the sarcomeric proteins functionally, a hierarchical clustering analysis was conducted on the basis of those parameters. Because it assesses physiological output different from conventional assays, this method provides a complement to the phenotypic analysis of C. elegans muscle mutants currently performed in many labs; the clusters may provide new insights and drive new hypotheses for functional relationships among the many sarcomere components.

摘要

肌节是肌肉收缩的基本单位,是由数百种蛋白质组成的高度有序的复合体。尽管进行了数十年的遗传学研究,但这些肌节蛋白在动物行为中的功能关系和作用仍不清楚。在本文中,我们证明了诱导肌肉收缩的运动神经元的光遗传学激活可以促进对线虫肌肉动力学的定量研究。为了提高研究的通量,我们将多条线虫并行捕获在微流控装置中,并进行光照以光激活通道视紫红质-2,从而诱导体壁肌肉收缩。利用图像处理技术,随着时间的推移对虫体大小的变化进行了量化。从光遗传学检测中提取了包括收缩和舒张速率常数在内的总共五个参数,作为肌节功能的描述符。为了在功能上潜在地关联编码肌节蛋白的基因,基于这些参数进行了层次聚类分析。由于该方法评估的生理输出不同于传统检测方法,因此它为目前许多实验室对线虫肌肉突变体进行的表型分析提供了补充;这些聚类可能为许多肌节成分之间的功能关系提供新的见解并推动新的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd10/4731793/c367044970a3/srep19900-f1.jpg

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