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Bap1/SMN axis in Dpp4+ skeletal muscle mesenchymal cells regulates the neuromuscular system
Ji-Hoon Kim, Jong-Seol Kang, Kyusang Yoo, Jinguk Jeong, Inkuk Park, Jong Ho Park, Joonwoo Rhee, Shin Jeon, Young-Woo Jo, Sang-Hyeon Hann, Minji Seo, Seungtae Moon, Soo-Jong Um, Rho Hyun Seong, Young-Yun Kong
Ji-Hoon Kim, Jong-Seol Kang, Kyusang Yoo, Jinguk Jeong, Inkuk Park, Jong Ho Park, Joonwoo Rhee, Shin Jeon, Young-Woo Jo, Sang-Hyeon Hann, Minji Seo, Seungtae Moon, Soo-Jong Um, Rho Hyun Seong, Young-Yun Kong
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Research Article Cell biology Muscle biology

Bap1/SMN axis in Dpp4+ skeletal muscle mesenchymal cells regulates the neuromuscular system

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Abstract

The survival of motor neuron (SMN) protein is a major component of the pre-mRNA splicing machinery and is required for RNA metabolism. Although SMN has been considered a fundamental gene for the central nervous system, due to its relationship with neuromuscular diseases, such as spinal muscular atrophy, recent studies have also revealed the requirement of SMN in non-neuronal cells in the peripheral regions. Here, we report that the fibro-adipogenic progenitor subpopulation expressing Dpp4 (Dpp4+ FAPs) is required for the neuromuscular system. Furthermore, we also reveal that BRCA1-associated protein-1 (Bap1) is crucial for the stabilization of SMN in FAPs by preventing its ubiquitination-dependent degradation. Inactivation of Bap1 in FAPs decreased SMN levels and accompanied degeneration of the neuromuscular junction, leading to loss of motor neurons and muscle atrophy. Overexpression of the ubiquitination-resistant SMN variant, SMNK186R, in Bap1-null FAPs completely prevented neuromuscular degeneration. In addition, transplantation of Dpp4+ FAPs, but not Dpp4– FAPs, completely rescued neuromuscular defects. Our data reveal the crucial role of Bap1-mediated SMN stabilization in Dpp4+ FAPs for the neuromuscular system and provide the possibility of cell-based therapeutics to treat neuromuscular diseases.

Authors

Ji-Hoon Kim, Jong-Seol Kang, Kyusang Yoo, Jinguk Jeong, Inkuk Park, Jong Ho Park, Joonwoo Rhee, Shin Jeon, Young-Woo Jo, Sang-Hyeon Hann, Minji Seo, Seungtae Moon, Soo-Jong Um, Rho Hyun Seong, Young-Yun Kong

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Figure 6

Identification of the neuroprotective Dpp4+ subpopulation within FAPs.

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Identification of the neuroprotective Dpp4+ subpopulation within FAPs.
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(A) Uniform manifold approximation and projection (UMAP) plot showing distinct subpopulations (Dpp4+ or Cxcl14+) within Bap1WT versus Bap1ΔMPC FAPs. (B) Heatmap of top 100 differentially expressed genes in Bap1WT versus Bap1ΔMPC FAPs. (C) Heatmap showing expression of marker genes used to distinguish the 2 subpopulations in each cluster. (D) GO analysis using statistical overrepresentation test on DEGs selected from comparing Bap1WT versus Bap1ΔMPC FAPs in each subpopulation. (E) Representative FACS plots of Dpp4+ versus Dpp4– FAPs isolated from 4-week-old tdTomato reporter mice. (F) Quantification of immobility time during tail suspension test. Bap1ΔMPC mice transplanted with PBS, Dpp4+ FAPs, or Dpp4– FAPs were compared with Bap1WT mice. n = 5 animals for each group; data are mean ± SEM; Tukey’s pairwise comparison test after 1-way ANOVA; **P < 0.01. (G and H) Representative IHC images of ChAT (scale bars: 50 μm) (G) and quantifications of MN number stained with ChAT on the ventral horn region of L5 spinal cord in Dpp4+ FAP– or Dpp4– FAP–transplanted Bap1ΔMPC mice (H). n = 5 animals for each group. Mean ± SEM; unpaired t test; ***P < 0.001.

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