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Macrophage-released ADAMTS1 promotes muscle stem cell activation.


ABSTRACT: Coordinated activation of muscle stem cells (known as satellite cells) is critical for postnatal muscle growth and regeneration. The muscle stem cell niche is central for regulating the activation state of satellite cells, but the specific extracellular signals that coordinate this regulation are poorly understood. Here we show that macrophages at sites of muscle injury induce activation of satellite cells via expression of Adamts1. Overexpression of Adamts1 in macrophages in vivo is sufficient to increase satellite cell activation and improve muscle regeneration in young mice. We demonstrate that NOTCH1 is a target of ADAMTS1 metalloproteinase activity, which reduces Notch signaling, leading to increased satellite cell activation. These results identify Adamts1 as a potent extracellular regulator of satellite cell activation and have significant implications for understanding the regulation of satellite cell activity and regeneration after muscle injury.Satellite cells are crucial for growth and regeneration of skeletal muscle. Here the authors show that in response to muscle injury, macrophages secrete Adamts1, which induces satellite cell activation by modulating Notch1 signaling.

SUBMITTER: Du H 

PROVIDER: S-EPMC5610267 | biostudies-other | 2017 Sep

REPOSITORIES: biostudies-other

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Macrophage-released ADAMTS1 promotes muscle stem cell activation.

Du Hongqing H   Shih Chung-Hsuan CH   Wosczyna Michael N MN   Mueller Alisa A AA   Cho Joonseok J   Aggarwal Abhishek A   Rando Thomas A TA   Feldman Brian J BJ  

Nature communications 20170922 1


Coordinated activation of muscle stem cells (known as satellite cells) is critical for postnatal muscle growth and regeneration. The muscle stem cell niche is central for regulating the activation state of satellite cells, but the specific extracellular signals that coordinate this regulation are poorly understood. Here we show that macrophages at sites of muscle injury induce activation of satellite cells via expression of Adamts1. Overexpression of Adamts1 in macrophages in vivo is sufficient  ...[more]

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