DOI: 10.1113/jp288658 ISSN: 0022-3751

Development of a protein synthesis network at the sarco/endoplasmic reticulum in adult cardiac myocytes

Christoph Sandmann, Sören Brandenburg, Dennis Uhlenkamp, Bianca Meyer, Clara Sandmann, Nicole Herzog, Julia Groß, Charlotta Funaya, Hugo A. Katus, Stephan E. Lehnart, Christopher C. Glembotski, Mirko Völkers, Shirin Doroudgar

Abstract

The endoplasmic reticulum (ER) is the primary site for the synthesis and folding of membrane and secretory proteins, which together comprise a large fraction of the total protein output in mammalian cells. Striated muscle cells contain a specialized membrane system, the sarcoplasmic reticulum (SR), which regulates calcium homeostasis and contraction. However, the biochemical and physiological relationship between the ER and SR, as well as the extent to which both compartments contribute to protein synthesis, remain incompletely understood. Quantification of ER‐ and SR‐associated proteins in isolated ventricular cardiac myocytes revealed that the relative abundance of ER/SR‐resident protein quality control components and ribosomes decreased during postnatal maturation, whereas SR‐associated Ca 2 + ‐handling proteins increased. Immunocytochemistry revealed that the membrane compartment prominent in early postnatal stages exhibits predominantly ER characteristics and diminishes during postnatal development. In adult cardiac myocytes, the SR becomes the dominant membrane network throughout the cell, while ER markers remain enriched in the perinuclear region. Immunocytochemistry further indicated that the ER and SR perform overlapping yet distinct specialized functions, with excitation–contraction coupling localized to the SR, and initiation of secretion concentrated within the ER. In adult ventricular cardiac myocytes, ribosomes and mRNA localize adjacent to both the ER and SR, indicating their roles as direct sites of localized protein synthesis and homeostasis. These findings demonstrate that molecular differentiation and structural organization of the ER/SR during cardiac muscle development culminate in a specialized protein synthesis network within the sarco/endoplasmic reticulum of adult myocytes. image

Key points

Although the sarcoplasmic reticulum (SR) is the established centre for calcium regulation in striated muscle, its role in membrane and secreted protein synthesis has remained unknown.

It has remained unclear whether the endoplasmic reticulum (ER) and SR coexist as distinct membrane networks in cardiac myocytes or whether they form a single system that fulfills both calcium‐handling and protein synthesis functions.

We found that postnatal cardiac maturation involves a major reorganization in which the centralized, ER‐dominant network of neonatal myocytes is replaced by an expansive, SR‐dominant network in the adult cell periphery, while ER markers become largely confined to the perinuclear region.

Using stimulated emission depletion super resolution microscopy and electron microscopy, we demonstrated that active ribosomes and mRNA associate with the longitudinal SR but are spatially excluded from ryanodine receptor 2‐rich junctional zones.

Our results establish that the SR functions as a specialized, distributed protein synthesis network that enables adult cardiac myocytes to maintain their highly organized cellular architecture through localized translation.

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