Geldanamycin inhibits in vivo and in vitro chick skeletal myogenesis.

Dev Biol

Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil. Electronic address:

Published: March 2025

During skeletal muscle development catabolic and anabolic events are finely orchestrated by several heat shock proteins (HSP). HSP90 are molecular chaperones which play an essential role in maintaining cellular homeostasis. Although HSP90 proteins have been widely studied in cancer cells, their role during skeletal myogenesis has not been completely explored. Here, we studied the role of HSP90 during in vivo and in vitro development of embryonic chick muscle fibers. First, we analyzed the effects of the inhibition of HSP90 by geldanamycin in skeletal muscle tissues in chick embryos in vivo. Geldanamycin was applied to E2 chicken embryos in vivo, and six days later, we observed a reduction in desmin-positive cells in the pectoral muscle. To deeper analyze the role of HSP90 during myogenesis, we used primary cultures of chick pectoral muscle cells which contain myoblasts, myotubes and muscle fibroblasts. We observed an intense accumulation of HSP90 in the perinuclear region of myoblasts and myotubes, but not in muscle fibroblasts. In myotubes, besides the perinuclear localization, HSP90 was found colocalized with myofibers, whereas in myoblasts and fibroblasts HSP90 was found as a mesh of small filaments and aggregates in the cytoplasm. Fibroblasts showed lower HSP90 expression, as compared to myoblasts and myotubes. Inhibition of HSP90 by geldanamycin reduced the size of myotubes, the number of nuclei within myotubes and myoblast fusion index, indicating an inhibition of myogenesis. Furthermore, geldanamycin induces both an increase in the number of fibroblasts and the formation of giant binucleated fibroblasts, suggesting that HSP90 inhibition induces cytokinesis block in muscle fibroblasts by interfering in actin and myosin activity. The collection of our results shows that the inhibition of HSP90 hinders in vivo and in vitro chick skeletal myogenesis, and differentially affects muscle and non-muscle cells, underlying different functions of HSP90 in different cell types.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.ydbio.2025.02.018DOI Listing

Publication Analysis

Top Keywords

hsp90
13
vivo vitro
12
skeletal myogenesis
12
inhibition hsp90
12
myoblasts myotubes
12
muscle fibroblasts
12
muscle
9
vitro chick
8
chick skeletal
8
skeletal muscle
8

Similar Publications

Chronic inflammation is a critical mechanism contributing to the aging process; however, research specifically addressing chronic inflammation in skin biology remains limited. This study investigates the protective mechanism of Rosa roxburghii Tratt. (RRT) extract against UVB-induced inflammaging.

View Article and Find Full Text PDF

Two-thirds of patients with Fabry disease suffer debilitating pain attacks triggered by exercise, fever, and exposure to environmental heat. These patients face endure even greater risk of heat-related episodic pain in the face of global climate change. Almost nothing is known about the biological mechanisms underlying heat-induced pain crises in Fabry disease, and there is no preclinical model available for to study Fabry crises.

View Article and Find Full Text PDF

Unlabelled: RXLR effectors are pathogenic factors secreted from oomycetes to manipulate the immunity of the host. Typical RXLR effectors contain an RXLR-dEER motif at the N-terminus, whereas atypical RXLRs show variations on this motif. The oomycete is known to infect over 200 plant species, resulting in significant agricultural economic losses.

View Article and Find Full Text PDF

Geldanamycin inhibits in vivo and in vitro chick skeletal myogenesis.

Dev Biol

March 2025

Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil. Electronic address:

During skeletal muscle development catabolic and anabolic events are finely orchestrated by several heat shock proteins (HSP). HSP90 are molecular chaperones which play an essential role in maintaining cellular homeostasis. Although HSP90 proteins have been widely studied in cancer cells, their role during skeletal myogenesis has not been completely explored.

View Article and Find Full Text PDF

Physiological analysis and transcriptome sequencing revealed that HSPA1 was involved in response to heat stress in thick-shell mussels, Mytilus coruscus.

Comp Biochem Physiol Part D Genomics Proteomics

March 2025

Marine Science and Technology College, Zhejiang Ocean University, Zhoushan 316022, PR China; National Engineering Research Center of Marine Facilities Aquaculture, Zhejiang Ocean University, Zhoushan 316022, PR China. Electronic address:

Mytilus coruscus, being sensitive to temperature variations, has developed a protective mechanism against heat stress through the upregulation of genes encoding heat shock proteins. Past research indicates that exposure to heat stress can activate HSPA1 expression for protection, yet the underlying regulatory mechanisms governing this response are not fully clear. Therefore, the emphasis of this study lies on regulating the expression of HSPA1 in mussels under high temperature stress.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!