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小鼠单根肌纤维的分离与转录组分析

Isolation and Transcriptomic Profiling of Single Myofibers from Mice.

作者信息

Chemello Francesco, Alessio Enrico, Buson Lisa, Pacchioni Beniamina, Millino Caterina, Lanfranchi Gerolamo, Cagnin Stefano

机构信息

Department of Biology, University of Padova, Padova, Italy.

CRIBI Biotechnology Center, University of Padova, Padova, Italy.

出版信息

Bio Protoc. 2019 Oct 5;9(19):e3378. doi: 10.21769/BioProtoc.3378.

Abstract

Skeletal muscle is composed of different cells and myofiber types, with distinct metabolic and structural features. Generally, transcriptomic analysis of skeletal muscle is performed using whole muscle, resulting in average information as all cells composing the organ contribute to the expression value detected for each gene with the loss of information about the distinctive features of each specific myofiber type. Since myofibers are the smallest complete contractile system of skeletal muscle influencing its contraction velocity and metabolism, it would be beneficial to have fiber-specific information about gene expression. Here, we describe a protocol for the isolation and the transcriptomic analysis of single individual myofibers. The protocol was set up using single myofibers isolated from and (EDL) muscles, but it can be applied to all skeletal muscles. Briefly, muscles are enzymatically dissociated and individually collected. Long RNAs (> 200 nt) and short RNAs (< 200 nt) are separately purified from each myofiber and used to produce libraries for microarray or sequencing analysis. Through this approach, myofiber-specific transcriptional profiles can be produced, free from transcripts from other non-contractile cell types, in order to identify mRNA-miRNA-lncRNA regulatory networks specific for each myofiber type.

摘要

骨骼肌由不同的细胞和肌纤维类型组成,具有独特的代谢和结构特征。一般来说,骨骼肌的转录组分析是使用整块肌肉进行的,由于构成该器官的所有细胞都对每个基因检测到的表达值有贡献,从而导致信息平均化,失去了关于每种特定肌纤维类型独特特征的信息。由于肌纤维是骨骼肌最小的完整收缩系统,影响其收缩速度和代谢,因此获得关于基因表达的纤维特异性信息将是有益的。在这里,我们描述了一种用于单个肌纤维分离和转录组分析的方案。该方案是使用从 和 (趾长伸肌)肌肉中分离出的单个肌纤维建立的,但它可以应用于所有骨骼肌。简而言之,肌肉经酶解后单独收集。从每个肌纤维中分别纯化长链RNA(>200 nt)和短链RNA(<200 nt),并用于制备微阵列或测序分析文库。通过这种方法,可以产生肌纤维特异性转录谱,不含其他非收缩性细胞类型的转录本,以便识别每种肌纤维类型特有的mRNA-miRNA-lncRNA调控网络。

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