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Basal lamina remodeling at the skeletal muscle stem cell niche mediates stem cell self-renewal.


ABSTRACT: A central question in stem cell biology is the relationship between stem cells and their niche. Although previous reports have uncovered how signaling molecules released by niche cells support stem cell function, the role of the extra-cellular matrix (ECM) within the niche is unclear. Here, we show that upon activation, skeletal muscle stem cells (satellite cells) induce local remodeling of the ECM and the deposition of laminin-?1 and laminin-?5 into the basal lamina of the satellite cell niche. Genetic ablation of laminin-?1, disruption of integrin-?6 signaling or blocking matrix metalloproteinase activity impairs satellite cell expansion and self-renewal. Collectively, our findings establish that remodeling of the ECM is an integral process of stem cell activity to support propagation and self-renewal, and may explain the effect laminin-?1-containing supports have on embryonic and adult stem cells, as well as the regenerative activity of exogenous laminin-111 therapy.

SUBMITTER: Rayagiri SS 

PROVIDER: S-EPMC5852002 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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Basal lamina remodeling at the skeletal muscle stem cell niche mediates stem cell self-renewal.

Rayagiri Shantisree Sandeepani SS   Ranaldi Daniele D   Raven Alexander A   Mohamad Azhar Nur Izzah Farhana NIF   Lefebvre Olivier O   Zammit Peter S PS   Borycki Anne-Gaëlle AG  

Nature communications 20180314 1


A central question in stem cell biology is the relationship between stem cells and their niche. Although previous reports have uncovered how signaling molecules released by niche cells support stem cell function, the role of the extra-cellular matrix (ECM) within the niche is unclear. Here, we show that upon activation, skeletal muscle stem cells (satellite cells) induce local remodeling of the ECM and the deposition of laminin-α1 and laminin-α5 into the basal lamina of the satellite cell niche.  ...[more]

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