Literature DB >> 34426497

Identification of a KLF5-dependent program and drug development for skeletal muscle atrophy.

Lin Liu1,2, Hiroyuki Koike1, Takehito Ono3, Shinichiro Hayashi4, Fujimi Kudo5, Atsushi Kaneda6, Hiroyuki Kagechika7, Ichiro Manabe5, Tomoki Nakashima3, Yumiko Oishi8.   

Abstract

Skeletal muscle atrophy is caused by various conditions, including aging, disuse related to a sedentary lifestyle and lack of physical activity, and cachexia. Our insufficient understanding of the molecular mechanism underlying muscle atrophy limits the targets for the development of effective pharmacologic treatments and preventions. Here, we identified Krüppel-like factor 5 (KLF5), a zinc-finger transcription factor, as a key mediator of the early muscle atrophy program. KLF5 was up-regulated in atrophying myotubes as an early response to dexamethasone or simulated microgravity in vitro. Skeletal muscle-selective deletion of Klf5 significantly attenuated muscle atrophy induced by mechanical unloading in mice. Transcriptome- and genome-wide chromatin accessibility analyses revealed that KLF5 regulates atrophy-related programs, including metabolic changes and E3-ubiquitin ligase-mediated proteolysis, in coordination with Foxo1. The synthetic retinoic acid receptor agonist Am80, a KLF5 inhibitor, suppressed both dexamethasone- and microgravity-induced muscle atrophy in vitro and oral Am80 ameliorated disuse- and dexamethasone-induced atrophy in mice. Moreover, in three independent sets of transcriptomic data from human skeletal muscle, KLF5 expression significantly increased with age and the presence of sarcopenia and correlated positively with the expression of the atrophy-related ubiquitin ligase genes FBXO32 and TRIM63 These findings demonstrate that KLF5 is a key transcriptional regulator mediating muscle atrophy and that pharmacological intervention with Am80 is a potentially preventive treatment.

Entities:  

Keywords:  KLF; RAR ligand; muscle atrophy

Mesh:

Substances:

Year:  2021        PMID: 34426497      PMCID: PMC8536343          DOI: 10.1073/pnas.2102895118

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  73 in total

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2.  An image analysis method for the precise selection and quantitation of fluorescently labeled cellular constituents: application to the measurement of human muscle cells in culture.

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Journal:  J Histochem Cytochem       Date:  2012-04-17       Impact factor: 2.479

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Journal:  Cell Metab       Date:  2011-02-02       Impact factor: 27.287

4.  Akt/mTOR pathway is a crucial regulator of skeletal muscle hypertrophy and can prevent muscle atrophy in vivo.

Authors:  S C Bodine; T N Stitt; M Gonzalez; W O Kline; G L Stover; R Bauerlein; E Zlotchenko; A Scrimgeour; J C Lawrence; D J Glass; G D Yancopoulos
Journal:  Nat Cell Biol       Date:  2001-11       Impact factor: 28.824

5.  Synthetic retinoid Am80 suppresses smooth muscle phenotypic modulation and in-stent neointima formation by inhibiting KLF5.

Authors:  Katsuhito Fujiu; Ichiro Manabe; Atsushi Ishihara; Yumiko Oishi; Hiroshi Iwata; Go Nishimura; Takayuki Shindo; Koji Maemura; Hiroyuki Kagechika; Koichi Shudo; Ryozo Nagai
Journal:  Circ Res       Date:  2005-10-13       Impact factor: 17.367

6.  Simple combinations of lineage-determining transcription factors prime cis-regulatory elements required for macrophage and B cell identities.

Authors:  Sven Heinz; Christopher Benner; Nathanael Spann; Eric Bertolino; Yin C Lin; Peter Laslo; Jason X Cheng; Cornelis Murre; Harinder Singh; Christopher K Glass
Journal:  Mol Cell       Date:  2010-05-28       Impact factor: 17.970

Review 7.  Mammalian Krüppel-like factors in health and diseases.

Authors:  Beth B McConnell; Vincent W Yang
Journal:  Physiol Rev       Date:  2010-10       Impact factor: 37.312

8.  An integrated encyclopedia of DNA elements in the human genome.

Authors: 
Journal:  Nature       Date:  2012-09-06       Impact factor: 49.962

9.  Rejuvenation of the muscle stem cell population restores strength to injured aged muscles.

Authors:  Benjamin D Cosgrove; Penney M Gilbert; Ermelinda Porpiglia; Foteini Mourkioti; Steven P Lee; Stephane Y Corbel; Michael E Llewellyn; Scott L Delp; Helen M Blau
Journal:  Nat Med       Date:  2014-02-16       Impact factor: 53.440

10.  Specific uptake of retinoids into human promyelocytic leukemia cells HL-60 by retinoid-specific binding protein: possibly the true retinoid receptor.

Authors:  Y Hashimoto; H Kagechika; E Kawachi; K Shudo
Journal:  Jpn J Cancer Res       Date:  1988-04
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  4 in total

1.  Changes of Gene Expression Patterns of Muscle Pathophysiology-Related Transcription Factors During Denervated Muscle Atrophy.

Authors:  Xiaoming Yang; Ming Li; Yanan Ji; Yinghao Lin; Lai Xu; Xiaosong Gu; Hualin Sun; Wei Wang; Yuntian Shen; Hua Liu; Jianwei Zhu
Journal:  Front Physiol       Date:  2022-06-24       Impact factor: 4.755

2.  Krüppel-Like Factor 5 Regulates CFTR Expression Through Repression by Maintaining Chromatin Architecture Coupled with Direct Enhancer Activation.

Authors:  Alekh Paranjapye; Monali NandyMazumdar; Ann Harris
Journal:  J Mol Biol       Date:  2022-03-24       Impact factor: 6.151

3.  VDR regulates simulated microgravity-induced atrophy in C2C12 myotubes.

Authors:  Ryo Yuzawa; Hiroyuki Koike; Ichiro Manabe; Yumiko Oishi
Journal:  Sci Rep       Date:  2022-01-26       Impact factor: 4.379

4.  Targeting Hydrogen Sulfide Modulates Dexamethasone-Induced Muscle Atrophy and Microvascular Rarefaction, through Inhibition of NOX4 and Induction of MGF, M2 Macrophages and Endothelial Progenitors.

Authors:  Mohamed Adel; Hassan Reda Hassan Elsayed; Mohammad El-Nablaway; Shereen Hamed; Amira Eladl; Samah Fouad; Eman Mohamad El Nashar; Mohammed Lafi Al-Otaibi; Mohammed R Rabei
Journal:  Cells       Date:  2022-08-11       Impact factor: 7.666

  4 in total

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