Literature DB >> 32065259

Fiber-specific and whole-muscle LRP130 expression in rested, exercised, and fasted human skeletal muscle.

Hashim Islam1, Andrew Ma2, Alessandra Amato1, Alexanne Cuillerier3, Yan Burelle3, Craig A Simpson1, Joe Quadrilatero2, Brendon J Gurd4.   

Abstract

Leucine-rich pentatricopeptide repeat motif-containing protein (LRP130) is implicated in the control of mitochondrial gene expression and oxidative phosphorylation in the liver, partly due to its interaction with peroxisome proliferator-activated receptor gamma co-activator 1-alpha (PGC-1α). To investigate LRP130's role in healthy human skeletal muscle, we examined LRP130's fiber-type distribution and subcellular localization (n = 6), as well as LRP130's relationship with PGC-1α protein and citrate synthase (CS) maximal activity (n = 33) in vastus lateralis samples obtained from young males. The impact of an acute bout of exercise (endurance [END] and sprint interval training [SIT]) and fasting (8 h) on LRP130 and PGC-1α expression was also determined (n = 10). LRP130 protein content paralleled fiber-specific succinate dehydrogenase activity (I > IIA) and strongly correlated with the mitochondrially localized protein apoptosis-inducing factor in type I (r = 0.75) and type IIA (r = 0.85) fibers. Whole-muscle LRP130 protein content was positively related to PGC-1α protein (r = 0.49, p < 0.01) and CS maximal activity (r = 0.42, p < 0.01). LRP130 mRNA expression was unaltered (p > 0.05) following exercise, despite ~ 6.6- and ~ 3.8-fold increases (p < 0.01) in PGC-1α mRNA expression after END and SIT, respectively. Although unchanged at the group level (p > 0.05), moderate-to-strong positive correlations were apparent between individual changes in LRP130 and PGC-1α expression at the mRNA (r = 0.63, p < 0.05) and protein (r = 0.59, p = 0.07) level in response to fasting. Our findings support a potential role for LRP130 in the maintenance of basal mitochondrial phenotype in human skeletal muscle. LRP130's importance for mitochondrial remodeling in exercised and fasted human skeletal muscle requires further investigation.

Entities:  

Keywords:  Endurance exercise; Exercise-induced gene expression; LRPPRC; Mitochondrial biogenesis; PGC-1α; Sprint interval training

Mesh:

Substances:

Year:  2020        PMID: 32065259     DOI: 10.1007/s00424-020-02359-4

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  34 in total

1.  Contribution of central and peripheral adaptations to changes in maximal oxygen uptake following 4 weeks of sprint interval training.

Authors:  James P Raleigh; Matthew D Giles; Hashim Islam; Matthew Nelms; Robert F Bentley; Joshua H Jones; J Alberto Neder; Kristen Boonstra; Joe Quadrilatero; Craig A Simpson; Michael E Tschakovsky; Brendon J Gurd
Journal:  Appl Physiol Nutr Metab       Date:  2018-10       Impact factor: 2.665

2.  Sequential changes in the signal transduction responses of skeletal muscle following food deprivation.

Authors:  Pieter de Lange; Paola Farina; Maria Moreno; Maurizio Ragni; Assunta Lombardi; Elena Silvestri; Lavinia Burrone; Antonia Lanni; Fernando Goglia
Journal:  FASEB J       Date:  2006-10-25       Impact factor: 5.191

3.  Defects in energy homeostasis in Leigh syndrome French Canadian variant through PGC-1alpha/LRP130 complex.

Authors:  Marcus P Cooper; Lishu Qu; Lindsay M Rohas; Jiandie Lin; Wenli Yang; Hediye Erdjument-Bromage; Paul Tempst; Bruce M Spiegelman
Journal:  Genes Dev       Date:  2006-10-18       Impact factor: 11.361

4.  Sirtuin-3 (Sirt3) regulates skeletal muscle metabolism and insulin signaling via altered mitochondrial oxidation and reactive oxygen species production.

Authors:  Enxuan Jing; Brice Emanuelli; Matthew D Hirschey; Jeremie Boucher; Kevin Y Lee; David Lombard; Eric M Verdin; C Ronald Kahn
Journal:  Proc Natl Acad Sci U S A       Date:  2011-08-22       Impact factor: 11.205

5.  Nutrient sensing by the mitochondrial transcription machinery dictates oxidative phosphorylation.

Authors:  Lijun Liu; Minwoo Nam; Wei Fan; Thomas E Akie; David C Hoaglin; Guangping Gao; John F Keaney; Marcus P Cooper
Journal:  J Clin Invest       Date:  2014-01-16       Impact factor: 14.808

6.  LRP130, a pentatricopeptide motif protein with a noncanonical RNA-binding domain, is bound in vivo to mitochondrial and nuclear RNAs.

Authors:  Stavroula Mili; Serafín Piñol-Roma
Journal:  Mol Cell Biol       Date:  2003-07       Impact factor: 4.272

7.  SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation.

Authors:  Matthew D Hirschey; Tadahiro Shimazu; Eric Goetzman; Enxuan Jing; Bjoern Schwer; David B Lombard; Carrie A Grueter; Charles Harris; Sudha Biddinger; Olga R Ilkayeva; Robert D Stevens; Yu Li; Asish K Saha; Neil B Ruderman; James R Bain; Christopher B Newgard; Robert V Farese; Frederick W Alt; C Ronald Kahn; Eric Verdin
Journal:  Nature       Date:  2010-03-04       Impact factor: 49.962

8.  Tissue-specific responses to the LRPPRC founder mutation in French Canadian Leigh Syndrome.

Authors:  Florin Sasarman; Tamiko Nishimura; Hana Antonicka; Woranontee Weraarpachai; Eric A Shoubridge
Journal:  Hum Mol Genet       Date:  2014-09-11       Impact factor: 6.150

9.  Loss of hepatic LRPPRC alters mitochondrial bioenergetics, regulation of permeability transition and trans-membrane ROS diffusion.

Authors:  Alexanne Cuillerier; Shamisa Honarmand; Virgilio J J Cadete; Matthieu Ruiz; Anik Forest; Sonia Deschênes; Claudine Beauchamp; Guy Charron; John D Rioux; Christine Des Rosiers; Eric A Shoubridge; Yan Burelle
Journal:  Hum Mol Genet       Date:  2017-08-15       Impact factor: 6.150

10.  Rapid determination of myosin heavy chain expression in rat, mouse, and human skeletal muscle using multicolor immunofluorescence analysis.

Authors:  Darin Bloemberg; Joe Quadrilatero
Journal:  PLoS One       Date:  2012-04-18       Impact factor: 3.240

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