4.0 Article

Human muscle satellite cells show age-related differential expression of S100B protein and RAGE

期刊

AGE
卷 33, 期 4, 页码 523-541

出版社

SPRINGER
DOI: 10.1007/s11357-010-9197-x

关键词

Muscle satellite cells; Aging; Proliferation; Differentiation; S100B; RAGE

资金

  1. Ministero dell'Universita e della Ricerca [2004054293, 2007LNKSYS, 2007AWZTHH_004, 2007AWZTHH_003]
  2. Association Francaise contre les Myopathies [12992]
  3. Associazione Italiana per la Ricerca sul Cancro [6021]
  4. Fondazione Cassa di Risparmio di Perugia [2004.0282.020, 2007.0218.020, 2009.020.0021]
  5. Regione Umbria POR FSE Asse II

向作者/读者索取更多资源

During aging, skeletal muscles show reduced mass and functional capacity largely due to loss of the regenerative ability of satellite cells (SCs), the quiescent stem cells located beneath the basal lamina surrounding each myofiber. While both the external environment and intrinsic properties of SCs appear to contribute to the age-related SC deficiency, the latter ones have been poorly investigated especially in humans. In the present work, we analyzed several parameters of SCs derived from biopsies of vastus lateralis muscle from healthy non-trained young (28.7 +/- 5.9 years; n = 10) and aged (77.3 +/- 6.4 years; n = 11) people. Compared with young SCs, aged SCs showed impaired differentiation when cultured in differentiation medium, and exhibited the following: (1) reduced proliferation; (2) higher expression levels of S100B, a negative regulator of myoblast differentiation; (3) undetectable levels in growth medium of full-length RAGE (receptor for advanced glycation end products), a multiligand receptor of the immunoglobulin superfamily, the engagement of which enhances myoblast differentiation; and (4) lower expression levels of the transcription factors, MyoD and Pax7. Also, either overexpression of full-length RAGE or knockdown of S100B in aged SCs resulted in enhanced differentiation, while overexpression of either a non-transducing mutant of RAGE (RAGE Delta cyto) or S100B in young SCs resulted in reduced differentiation compared with controls. Moreover, while aged SCs maintained the ability to respond to mitogenic factors (e.g., bFGF and S100B), they were no longer able to secrete these factors, unlike young SCs. These data support a role for intrinsic factors, besides the extracellular environment in the defective SC function in aged skeletal muscles.

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