| Literature DB >> 29158294 |
Takuma Matsubara1, Shoichiro Kokabu2, Chihiro Nakatomi2, Masayuki Kinbara3, Toshihiro Maeda3, Mitsuhiro Yoshizawa3, Hisataka Yasuda4, Teruko Takano-Yamamoto3, Roland Baron5, Eijiro Jimi2,6.
Abstract
Osteoclasts resorb bone by attaching on the bone matrix and forming a sealing zone. In Src-deficient mice, osteoclasts cannot form the actin ring, a characteristic actin structure that seals the resorbed area, and resorb hardly any bone as a result. However, the molecular mechanism underlying the role of Src in the regulation and organization of the actin ring is still unclear. We identified an actin-regulatory protein, protein phosphatase 1 regulatory subunit 18 (PPP1r18), as an Src-binding protein in an Src-, Yes-, and Fyn-deficient fibroblast (SYF) cell line overexpressing a constitutively active form of Src. PPP1r18 was localized in the nucleus and actin ring. PPP1r18 overexpression in osteoclasts inhibited terminal differentiation, actin ring formation, and bone-resorbing activity. A mutation of the protein phosphatase 1 (PP1)-binding domain of PPP1r18 rescued these phenotypes. In contrast, PPP1r18 knockdown promoted terminal differentiation and actin ring formation. In summary, we showed that PPP1r18 likely plays a role in podosome organization and bone resorption.Entities:
Keywords: bone resorption; cell adhesion; osteoclast
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Year: 2018 PMID: 29158294 PMCID: PMC5789032 DOI: 10.1128/MCB.00425-17
Source DB: PubMed Journal: Mol Cell Biol ISSN: 0270-7306 Impact factor: 4.272