High mobility group box 1 (HMGB1) is an abundant chromatin protein that acts as a cytokine when released in the extracellular milieu by necrotic and inflammatory cells. Here, we show that extracellular HMGB1 and its receptor for advanced glycation end products (RAGE) induce both migration and proliferation of vessel-associated stem cells (mesoangioblasts), and thus may play a role in muscle tissue regeneration. In vitro, HMGB1 induces migration and proliferation of both adult and embryonic mesoangioblasts, and disrupts the barrier function of endothelial monolayers. In living mice, mesoangioblasts injected into the femoral artery migrate close to HMGB1-loaded heparin-Sepharose beads implanted in healthy muscle, but are unresponsive to control beads. Interestingly, α-sarcoglycan null dystrophic muscle contains elevated levels of HMGB1; however, mesoangioblasts migrate into dystrophic muscle even if their RAGE receptor is disabled. This implies that the HMGB1–RAGE interaction is sufficient, but not necessary, for mesoangioblast homing; a different pathway might coexist. Although the role of endogenous HMGB1 in the reconstruction of dystrophic muscle remains to be clarified, injected HMGB1 may be used to promote tissue regeneration.
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2 February 2004
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January 26 2004
Extracellular HMGB1, a signal of tissue damage, induces mesoangioblast migration and proliferation
Roberta Palumbo,
Roberta Palumbo
1Department of Molecular Biology and Functional Genomics
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Maurilio Sampaolesi,
Maurilio Sampaolesi
2Stem Cell Research Institute,
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Francesco De Marchis,
Francesco De Marchis
1Department of Molecular Biology and Functional Genomics
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Rossana Tonlorenzi,
Rossana Tonlorenzi
2Stem Cell Research Institute,
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Sara Colombetti,
Sara Colombetti
3Cancer Immunotherapy and Gene Therapy Program, San Raffaele Research Institute, 20132 Milan, Italy
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Anna Mondino,
Anna Mondino
3Cancer Immunotherapy and Gene Therapy Program, San Raffaele Research Institute, 20132 Milan, Italy
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Giulio Cossu,
Giulio Cossu
2Stem Cell Research Institute,
4Institute of Cell Biology and Tissue Engineering, San Raffaele Biomedical Science Park of Rome, 00128 Rome, Italy
5Department of Histology and Medical Embryology, University La Sapienza, 00161 Rome, Italy
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Marco E. Bianchi
Marco E. Bianchi
6San Raffaele University, 20132 Milan, Italy
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Roberta Palumbo
1Department of Molecular Biology and Functional Genomics
Maurilio Sampaolesi
2Stem Cell Research Institute,
Francesco De Marchis
1Department of Molecular Biology and Functional Genomics
Rossana Tonlorenzi
2Stem Cell Research Institute,
Sara Colombetti
3Cancer Immunotherapy and Gene Therapy Program, San Raffaele Research Institute, 20132 Milan, Italy
Anna Mondino
3Cancer Immunotherapy and Gene Therapy Program, San Raffaele Research Institute, 20132 Milan, Italy
Giulio Cossu
2Stem Cell Research Institute,
4Institute of Cell Biology and Tissue Engineering, San Raffaele Biomedical Science Park of Rome, 00128 Rome, Italy
5Department of Histology and Medical Embryology, University La Sapienza, 00161 Rome, Italy
Marco E. Bianchi
6San Raffaele University, 20132 Milan, Italy
Address correspondence to Marco E. Bianchi, San Raffaele University, via Olgettina 58, 20132 Milan, Italy. Tel.: 39-3477975788. Fax: 39-0226434861. email: [email protected]
R. Palumbo and M. Sampaolesi contributed equally to this paper.
Abbreviations used in this paper: α-SG, α-sarcoglycan; DiI, 1,1′-dioctadecyl-3,3,3′,3′-tetramethylindocarbocyanine perchlorate; dnRAGE, dominant-negative mutant of RAGE; HMGB1, high mobility group box 1; lin−, murine lineage negative; LPS, lipopolysaccharide; RAGE, receptor for advanced glycation end products.
Received:
April 24 2003
Accepted:
December 23 2003
Online ISSN: 1540-8140
Print ISSN: 0021-9525
The Rockefeller University Press
2004
J Cell Biol (2004) 164 (3): 441–449.
Article history
Received:
April 24 2003
Accepted:
December 23 2003
Citation
Roberta Palumbo, Maurilio Sampaolesi, Francesco De Marchis, Rossana Tonlorenzi, Sara Colombetti, Anna Mondino, Giulio Cossu, Marco E. Bianchi; Extracellular HMGB1, a signal of tissue damage, induces mesoangioblast migration and proliferation . J Cell Biol 2 February 2004; 164 (3): 441–449. doi: https://doi.org/10.1083/jcb.200304135
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