An Analysis of Differentially Expressed Coding and Long Non-Coding RNAs in Multiple Models of Skeletal Muscle Atrophy

被引:9
作者
Hitachi, Keisuke [1 ]
Nakatani, Masashi [1 ,2 ]
Kiyofuji, Yuri [1 ]
Inagaki, Hidehito [3 ,4 ]
Kurahashi, Hiroki [3 ,4 ]
Tsuchida, Kunihiro [1 ]
机构
[1] Fujita Hlth Univ, Inst Comprehens Med Sci ICMS, Div Therapies Intractable Dis, Toyoake, Aichi 4701192, Japan
[2] Seijoh Univ, Fac Rehabil & Care, Tokai, Ibaraki 4760014, Japan
[3] Fujita Hlth Univ, Genome & Transcriptome Anal Ctr, Toyoake, Aichi 4701192, Japan
[4] Fujita Hlth Univ, Inst Comprehens Med Sci ICMS, Div Mol Genet, Toyoake, Aichi 4701192, Japan
关键词
long non-coding RNA; mRNA; skeletal muscle atrophy; RNA-sequencing; REGENERATION; SYSTEMS; ADULT; ROLES;
D O I
10.3390/ijms22052558
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The loss of skeletal muscle mass (muscle atrophy or wasting) caused by aging, diseases, and injury decreases quality of life, survival rates, and healthy life expectancy in humans. Although long non-coding RNAs (lncRNAs) have been implicated in skeletal muscle formation and differentiation, their precise roles in muscle atrophy remain unclear. In this study, we used RNA-sequencing (RNA-Seq) to examine changes in the expression of lncRNAs in four muscle atrophy conditions (denervation, casting, fasting, and cancer cachexia) in mice. We successfully identified 33 annotated lncRNAs and 18 novel lncRNAs with common expression changes in all four muscle atrophy conditions. Furthermore, an analysis of lncRNA-mRNA correlations revealed that several lncRNAs affected small molecule biosynthetic processes during muscle atrophy. These results provide novel insights into the lncRNA-mediated regulatory mechanism underlying muscle atrophy and may be useful for the identification of promising therapeutic targets.
引用
收藏
页码:1 / 15
页数:15
相关论文
共 66 条
[1]   Single cell analysis reveals the involvement of the long non-coding RNA Pvt1 in the modulation of muscle atrophy and mitochondrial network [J].
Alessio, Enrico ;
Buson, Lisa ;
Chemello, Francesco ;
Peggion, Caterina ;
Grespi, Francesca ;
Martini, Paolo ;
Massimino, Maria L. ;
Pacchioni, Beniamina ;
Millino, Caterina ;
Romualdi, Chiara ;
Bertoli, Alessandro ;
Scorrano, Luca ;
Lanfranchi, Gerolamo ;
Cagnin, Stefano .
NUCLEIC ACIDS RESEARCH, 2019, 47 (04) :1653-1670
[2]   Beyond the RNA-dependent function of LncRNA genes [J].
Ali, Tamer ;
Grote, Phillip .
ELIFE, 2020, 9 :1-14
[3]   Disease-Causing Mutations and Rearrangements in Long Non-coding RNA Gene Loci [J].
Aznaourova, Marina ;
Schmerer, Nils ;
Schmeck, Bernd ;
Schulte, Leon N. .
FRONTIERS IN GENETICS, 2020, 11
[4]   LncRNADisease 2.0: an updated database of long non-coding RNA-associated diseases [J].
Bao, Zhenyu ;
Yang, Zhen ;
Huang, Zhou ;
Zhou, Yiran ;
Cui, Qinghua ;
Dong, Dong .
NUCLEIC ACIDS RESEARCH, 2019, 47 (D1) :D1034-D1037
[5]   Muscle LIM protein plays both structural and functional roles in skeletal muscle [J].
Barash, IA ;
Mathew, L ;
Lahey, M ;
Greaser, ML ;
Lieber, RL .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2005, 289 (05) :C1312-C1320
[6]   STAT3 Activation in Skeletal Muscle Links Muscle Wasting and the Acute Phase Response in Cancer Cachexia [J].
Bonetto, Andrea ;
Aydogdu, Tufan ;
Kunzevitzky, Noelia ;
Guttridge, Denis C. ;
Khuri, Sawsan ;
Koniaris, Leonidas G. ;
Zimmers, Teresa A. .
PLOS ONE, 2011, 6 (07)
[7]   Spermine oxidase maintains basal skeletal muscle gene expression and fiber size and is strongly repressed by conditions that cause skeletal muscle atrophy [J].
Bongers, Kale S. ;
Fox, Daniel K. ;
Kunkel, Steven D. ;
Stebounova, Larissa V. ;
Murry, Daryl J. ;
Pufall, Miles A. ;
Ebert, Scott M. ;
Dyle, Michael C. ;
Bullard, Steven A. ;
Dierdorff, Jason M. ;
Adams, Christopher M. .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2015, 308 (02) :E144-E158
[8]   The regulation of muscle mass by endogenous glucocorticoids [J].
Braun, Theodore P. ;
Marks, Daniel L. .
FRONTIERS IN PHYSIOLOGY, 2015, 6
[9]  
Casas Caty, 2016, Brain Plast, V1, P159, DOI 10.3233/BPL-140001
[10]   Nur77 coordinately regulates expression of genes linked to glucose metabolism in skeletal muscle [J].
Chao, Lily C. ;
Zhang, Zidong ;
Pei, Liming ;
Saito, Tsugumichi ;
Tontonoz, Peter ;
Pilch, Paul F. .
MOLECULAR ENDOCRINOLOGY, 2007, 21 (09) :2152-2163