Literature DB >> 33654874

Isolation and Transcriptomic Profiling of Single Myofibers from Mice.

Francesco Chemello1, Enrico Alessio1, Lisa Buson1, Beniamina Pacchioni1,2, Caterina Millino1,2, Gerolamo Lanfranchi1,2,3, Stefano Cagnin1,2,3.   

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 soleus and Extensor Digitorum Longus (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.
Copyright © 2019 The Authors; exclusive licensee Bio-protocol LLC.

Entities:  

Keywords:  Non-coding RNAs; Regulatory network; Single myofiber; Skeletal muscle; Transcriptomic analysis; miRNAs

Year:  2019        PMID: 33654874      PMCID: PMC7853945          DOI: 10.21769/BioProtoc.3378

Source DB:  PubMed          Journal:  Bio Protoc        ISSN: 2331-8325


  25 in total

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5.  Transcriptomic Analysis of Single Isolated Myofibers Identifies miR-27a-3p and miR-142-3p as Regulators of Metabolism in Skeletal Muscle.

Authors:  Francesco Chemello; Francesca Grespi; Alessandra Zulian; Pasqua Cancellara; Etienne Hebert-Chatelain; Paolo Martini; Camilla Bean; Enrico Alessio; Lisa Buson; Martina Bazzega; Andrea Armani; Marco Sandri; Ruggero Ferrazza; Paolo Laveder; Graziano Guella; Carlo Reggiani; Chiara Romualdi; Paolo Bernardi; Luca Scorrano; Stefano Cagnin; Gerolamo Lanfranchi
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10.  Single cell analysis reveals the involvement of the long non-coding RNA Pvt1 in the modulation of muscle atrophy and mitochondrial network.

Authors:  Enrico Alessio; Lisa Buson; Francesco Chemello; Caterina Peggion; Francesca Grespi; Paolo Martini; Maria L Massimino; Beniamina Pacchioni; Caterina Millino; Chiara Romualdi; Alessandro Bertoli; Luca Scorrano; Gerolamo Lanfranchi; Stefano Cagnin
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1.  Single-Cell RNAseq Analysis of lncRNAs.

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