RRC ID 60896
著者 Reimann L, Schwäble AN, Fricke AL, Mühlhäuser WWD, Leber Y, Lohanadan K, Puchinger MG, Schäuble S, Faessler E, Wiese H, Reichenbach C, Knapp B, Peikert CD, Drepper F, Hahn U, Kreutz C, van der Ven PFM, Radziwill G, Djinović-Carugo K, Fürst DO, Warscheid B.
タイトル Phosphoproteomics identifies dual-site phosphorylation in an extended basophilic motif regulating FILIP1-mediated degradation of filamin-C.
ジャーナル Commun Biol
Abstract The PI3K/Akt pathway promotes skeletal muscle growth and myogenic differentiation. Although its importance in skeletal muscle biology is well documented, many of its substrates remain to be identified. We here studied PI3K/Akt signaling in contracting skeletal muscle cells by quantitative phosphoproteomics. We identified the extended basophilic phosphosite motif RxRxxp[S/T]xxp[S/T] in various proteins including filamin-C (FLNc). Importantly, this extended motif, located in a unique insert in Ig-like domain 20 of FLNc, is doubly phosphorylated. The protein kinases responsible for this dual-site phosphorylation are Akt and PKCα. Proximity proteomics and interaction analysis identified filamin A-interacting protein 1 (FILIP1) as direct FLNc binding partner. FILIP1 binding induces filamin degradation, thereby negatively regulating its function. Here, dual-site phosphorylation of FLNc not only reduces FILIP1 binding, providing a mechanism to shield FLNc from FILIP1-mediated degradation, but also enables fast dynamics of FLNc necessary for its function as signaling adaptor in cross-striated muscle cells.
巻・号 3(1)
ページ 253
公開日 2020-5-22
DOI 10.1038/s42003-020-0982-5
PII 10.1038/s42003-020-0982-5
PMID 32444788
PMC PMC7244511
MeSH Amino Acid Motifs Carrier Proteins / metabolism* Cytoskeletal Proteins / metabolism* Filamins / metabolism* HEK293 Cells Humans Muscle Development Muscle Fibers, Skeletal / cytology Muscle Fibers, Skeletal / metabolism* Phosphatidylinositol 3-Kinases / metabolism Phosphoproteins / metabolism* Phosphorylation Protein Binding Proteolysis Proteome / analysis Proteome / metabolism* Proto-Oncogene Proteins c-akt / metabolism Signal Transduction
IF 4.165
引用数 0
リソース情報
遺伝子材料 NRCD human cDNA clones (RDB06607) ARi57A02 (HKR182802)