← Volver atrás
Publicaciones

Mitochondria–sarcoplasmic reticulum crosstalk as a modulator of skeletal muscle mass

Autores

CASUSO PÉREZ, RAFAEL

Publicación externa

No

Medio

J. Physiol. Biochem.

Alcance

Review

Naturaleza

Científica

Cuartil JCR

1

Cuartil SJR

1

Fecha de publicacion

01/01/2026

ISI

001807630000001

Scopus Id

2-s2.0-105043460147

Abstract

Preservation of skeletal muscle mass and function is a key feature of healthy ageing and relies on the tight coordination between protein synthesis and breakdown to maintain proteostatic balance. These processes impose a substantial energetic demand, highlighting the importance of mitochondrial function in skeletal muscle homeostasis. Increasing evidence indicates that mitochondria and the sarcoplasmic reticulum are functionally interconnected. Effective crosstalk between these organelles contributes to the integration of bioenergetic supply, Ca²? handling, and proteostasis. Disruption of this communication network may impair adaptive stress responses, compromise protein quality control, and favour the development of anabolic resistance during ageing. This review synthesizes current evidence on mitochondria–sarcoplasmic reticulum communication. It further discusses how disruption of this crosstalk may promote anabolic resistance and skeletal muscle atrophy, with particular emphasis on its implications for age-related muscle decline. © The Author(s) 2026.

Palabras clave

Aging; Animals; Calcium; Energy Metabolism; Humans; Mitochondria, Muscle; Muscle, Skeletal; Proteostasis; Sarcopenia; Sarcoplasmic Reticulum; Unfolded Protein Response; calcium; calcium ion; calcium; aging; caloric demand; cell organelle; complication; endoplasmic reticulum; energy metabolism; healthy aging; homeostasis; human; mitochondrion; muscle atrophy; muscle mass; nonhuman; pharmacology; protein homeostasis; protein quality; protein synthesis; quality control; review; sarcopenia; sarcoplasmic reticulum; skeletal muscle; unfolded protein response; aging; animal; metabolism; muscle mitochondrion; pathology; unfolded protein response

Miembros de la Universidad Loyola