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Targeted ablation of IKK2 improves skeletal muscle strength, maintains mass, and promotes regeneration

Foteini Mourkioti, Paschalis Kratsios, Tom Luedde, Yao-Hua Song, Patrice Delafontaine, Raffaella Adami, Valeria Parente, Roberto Bottinelli, Manolis Pasparakis, Nadia Rosenthal

Journal of Clinical Investigation · 2006 · ▲ 311 citations

Abstract

NF-kappaB is a major pleiotropic transcription factor modulating immune, inflammatory, cell survival, and proliferative responses, yet the relevance of NF-kappaB signaling in muscle physiology and disease is less well documented. Here we show that muscle-restricted NF-kappaB inhibition in mice, through targeted deletion of the activating kinase inhibitor of NF-kappaB kinase 2 (IKK2), shifted muscle fiber distribution and improved muscle force. In response to denervation, IKK2 depletion protected against atrophy, maintaining fiber type, size, and strength, increasing protein synthesis, and decreasing protein degradation. IKK2-depleted mice with a muscle-specific transgene expressing a local Igf-1 isoform (mIgf-1) showed enhanced protection against muscle atrophy. In response to muscle damage, IKK2 depletion facilitated skeletal muscle regeneration through enhanced satellite cell activation and reduced fibrosis. Our results establish IKK2/NF-kappaB signaling as an important modulator of muscle homeostasis and suggest a combined role for IKK inhibitors and growth factors in the therapy of muscle diseases.

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OpenAlex
DOI
10.1172/jci28721
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2026-06-07 MST

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APA
Mourkioti, F., Kratsios, P., Luedde, T., Song, Y., Delafontaine, P., Adami, R., Parente, V., Bottinelli, R., Pasparakis, M., &amp; Rosenthal, N. (2006). Targeted ablation of IKK2 improves skeletal muscle strength, maintains mass, and promotes regeneration. <em>Journal of Clinical Investigation</em>. https://doi.org/10.1172/jci28721
Vancouver
Mourkioti F, Kratsios P, Luedde T, Song Y, Delafontaine P, Adami R, et al. Targeted ablation of IKK2 improves skeletal muscle strength, maintains mass, and promotes regeneration. Journal of Clinical Investigation. 2006. doi:10.1172/jci28721.
BibTeX
@article{foteini2006Target, title = {Targeted ablation of IKK2 improves skeletal muscle strength, maintains mass, and promotes regeneration}, author = {Foteini Mourkioti and Paschalis Kratsios and Tom Luedde and Yao-Hua Song and Patrice Delafontaine and Raffaella Adami and Valeria Parente and Roberto Bottinelli and Manolis Pasparakis and Nadia Rosenthal}, journal = {Journal of Clinical Investigation}, year = {2006}, doi = {10.1172/jci28721}, }

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