Defective protein persulfidation is involved in obesity associated skeletal muscle dysfunction: role of SIRT-1.

蛋白质过硫化缺陷与肥胖相关的骨骼肌功能障碍有关:SIRT-1 的作用

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作者:Smimmo M, Casale V, D'Andrea D, Bello I, Iaccarino N, Romano F, Brancaleone V, Panza E, d'Emmanuele di Villa Bianca R, Katsouda A, Mitidieri E, Antoniadou I, Papapetropoulos A, Maione F, Castaldo S, Friuli M, Romano A, Gaetani S, Sorrentino R, Randazzo A, Cirino G, Bucci M, Filipovic M, Vellecco V
Ectopic fat deposition in skeletal muscle (SKM) due to obesity leads to biochemical and morphological alterations that deteriorate SKM quality and performance. Here, we show that impaired MPST-derived hydrogen sulfide (H(2)S) signaling contributes to obesity-related SKM dysfunction. Muscle tissues from obese db/db mice exhibit reduced MPST expression, correlating with decreased protein persulfidation and muscle performance in vivo. Mpst(-/-) mice show similar deficits as db/db mice, confirming the role of MPST. H(2)S supplementation improves locomotor activity in db/db mice and restores protein persulfidation, including SIRT-1. Myotubes placed in an "obese environment" display a downregulation of MPST, coupled with a reduced SIRT-1 persulfidation leading to an inflammatory state. Exogenous H(2)S exerts beneficial effects recovering SIRT-1 persulfidation/activity. Finally, muscle biopsies from obese individuals show reduced MPST expression, underscoring the translational relevance to human SKM health. Our study unveils a crucial role for MPST-derived H(2)S in obesity-associated SKM dysfunction via SIRT-1 persulfidation, highlighting the importance of the MPST/H(2)S pathway in maintaining healthy SKM function.

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