Mechanisms Regulating Muscle Protein Synthesis in CKD

Author:

Zhang Liping,Chen Qin,Chen Zihong,Wang Ying,Gamboa Jorge L.,Ikizler Talat AlpORCID,Garibotto GiacomoORCID,Mitch William E.

Abstract

BackgroundCKD induces loss of muscle proteins partly by suppressing muscle protein synthesis. Muscles of mice with CKD have increased expression of nucleolar protein 66 (NO66), as do muscle biopsy specimens from patients with CKD or those undergoing hemodialysis. Inflammation stimulates NO66 expression and changes in NF-κB mediate the response.MethodsSubtotal nephrectomy created a mouse model of CKD with BUN >80 mg/dl. Crossing NO66flox/flox with MCK-Cre mice bred muscle-specific NO66 (MCK-NO66) knockout mice. Experiments assessed the effect of removing NO66.ResultsMuscle-specific NO66 knockout in mice blocks CKD-induced loss of muscle mass and improves protein synthesis. NO66 suppression of ribosomal biogenesis via demethylase activity is the mechanism behind these responses. In muscle cells, expression of NO66, but not of demethylase-dead mutant NO66, decreased H3K4me3 and H3K36me3 and suppressed pre-rRNA expression. Knocking out NO66 increased the enrichment of H3K4me3 and H3K36me3 on ribosomal DNA. In primary muscle cells and in muscles of mice without NO66, ribosomal RNA, pre-rRNA, and protein synthesis all increased.ConclusionsCKD suppresses muscle protein synthesis via epigenetic mechanisms that NO66 mediates. Blocking NO66 could suggest strategies that counter CKD-induced abnormal muscle protein catabolism.

Funder

National Institutes of Health

Center for Scientific Review

ADA Foundation

Norman S. Coplon

Dr. and Mrs. Harold Selzman

Abbott Nutrition

Fresenius Kabi

Publisher

American Society of Nephrology (ASN)

Subject

Nephrology,General Medicine

Reference51 articles.

1. Prevalence of protein-energy wasting syndrome and its association with mortality in haemodialysis patients in a centre in Spain;Gracia-Iguacel;Nefrologia,2013

2. Regulation of riboflavin intestinal uptake by protein kinase A: studies with Caco-2 cells

3. Chronic Kidney Disease Causes Defects in Signaling through the Insulin Receptor Substrate/Phosphatidylinositol 3-Kinase/Akt Pathway: Implications for Muscle Atrophy

4. Endogenous glucocorticoids and impaired insulin signaling are both required to stimulate muscle wasting under pathophysiological conditions in mice;Hu;J Clin Invest,2009

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