Literature DB >> 26988155

The molecular mechanisms of calpains action on skeletal muscle atrophy.

Jiaru Huang1, Xiaoping Zhu.   

Abstract

Skeletal muscle atrophy is associated with a loss of muscle protein which may result from both increased proteolysis and decreased protein synthesis. Investigations on cell signaling pathways that regulate muscle atrophy have promoted our understanding of this complicated process. Emerging evidence implicates that calpains play key roles in dysregulation of proteolysis seen in muscle atrophy. Moreover, studies have also shown that abnormally activated calpain results muscle atrophy via its downstream effects on ubiquitin-proteasome pathway (UPP) and Akt phosphorylation. This review will discuss the role of calpains in regulation of skeletal muscle atrophy mainly focusing on its collaboration with either UPP or Akt in atrophy conditions in hope to stimulate the interest in development of novel therapeutic interventions for skeletal muscle atrophy.

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Year:  2016        PMID: 26988155     DOI: 10.33549/physiolres.933087

Source DB:  PubMed          Journal:  Physiol Res        ISSN: 0862-8408            Impact factor:   1.881


  21 in total

1.  Muscle-specific activation of calpain system in hindlimb unloading rats and hibernating Daurian ground squirrels: a comparison between artificial and natural disuse.

Authors:  Hui Chang; Tingyun Lei; Xiufeng Ma; Jie Zhang; Huiping Wang; Xingyuan Zhang; Yun-Fang Gao
Journal:  J Comp Physiol B       Date:  2018-07-23       Impact factor: 2.200

2.  Inhibition of mitochondrial and cytosolic calpain attenuates atrophy in myotubes co-cultured with colon carcinoma cells.

Authors:  Xianliang Zeng; Li Zhao; Sizeng Chen; Xiantao Li
Journal:  Oncol Lett       Date:  2020-12-17       Impact factor: 2.967

3.  Massage as a mechanotherapy promotes skeletal muscle protein and ribosomal turnover but does not mitigate muscle atrophy during disuse in adult rats.

Authors:  Marcus M Lawrence; Douglas W Van Pelt; Amy L Confides; Emily R Hunt; Zachary R Hettinger; Jaime L Laurin; Justin J Reid; Frederick F Peelor; Timothy A Butterfield; Esther E Dupont-Versteegden; Benjamin F Miller
Journal:  Acta Physiol (Oxf)       Date:  2020-03-17       Impact factor: 6.311

Review 4.  Diabetic sarcopenia: metabolic and molecular appraisal.

Authors:  Hayder A Giha; Osman A O Alamin; Mai S Sater
Journal:  Acta Diabetol       Date:  2022-04-16       Impact factor: 4.280

Review 5.  Pathophysiology of exercise-induced muscle damage and its structural, functional, metabolic, and clinical consequences.

Authors:  A Stožer; P Vodopivc; L Križančić Bombek
Journal:  Physiol Res       Date:  2020-07-16       Impact factor: 1.881

6.  Acylated and unacylated ghrelin inhibit atrophy in myotubes co-cultured with colon carcinoma cells.

Authors:  Xianliang Zeng; Sizeng Chen; Yang Yang; Zhao Ke
Journal:  Oncotarget       Date:  2017-08-24

Review 7.  Chaperones and the Proteasome System: Regulating the Construction and Demolition of Striated Muscle.

Authors:  Casey Carlisle; Kendal Prill; Dave Pilgrim
Journal:  Int J Mol Sci       Date:  2017-12-22       Impact factor: 5.923

8.  Interference with Ca2+-Dependent Proteolysis Does Not Alter the Course of Muscle Wasting in Experimental Cancer Cachexia.

Authors:  Fabrizio Pin; Valerio G Minero; Fabio Penna; Maurizio Muscaritoli; Roberta De Tullio; Francesco M Baccino; Paola Costelli
Journal:  Front Physiol       Date:  2017-04-19       Impact factor: 4.566

9.  Antioxidant Treatment Reduces Formation of Structural Cores and Improves Muscle Function in RYR1Y522S/WT Mice.

Authors:  Antonio Michelucci; Alessandro De Marco; Flavia A Guarnier; Feliciano Protasi; Simona Boncompagni
Journal:  Oxid Med Cell Longev       Date:  2017-09-10       Impact factor: 6.543

Review 10.  Muscle Atrophy Induced by Mechanical Unloading: Mechanisms and Potential Countermeasures.

Authors:  Yunfang Gao; Yasir Arfat; Huiping Wang; Nandu Goswami
Journal:  Front Physiol       Date:  2018-03-20       Impact factor: 4.566

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