Matches in SemOpenAlex for { <https://semopenalex.org/work/W3201380212> ?p ?o ?g. }
- W3201380212 endingPage "1416" @default.
- W3201380212 startingPage "1398" @default.
- W3201380212 abstract "Fascin is crucial for cancer cell filopodium formation and tumor metastasis, and is functionally regulated by post-translational modifications. However, whether and how Fascin is regulated by acetylation remains unclear. This study explored the regulation of Fascin acetylation and its corresponding roles in filopodium formation and tumor metastasis.Immunoprecipitation and glutathione-S-transferase pull-down assays were performed to examine the interaction between Fascin and acetyltransferase P300/CBP-associated factor (PCAF), and immunofluorescence was used to investigate their colocalization. An in vitro acetylation assay was performed to identify Fascin acetylation sites by using mass spectrometry. A specific antibody against acetylated Fascin was generated and used to detect the PCAF-mediated Fascin acetylation in esophageal squamous cell carcinoma (ESCC) cells using Western blotting by overexpressing and knocking down PCAF expression. An in vitro cell migration assay was performed, and a xenograft model was established to study in vivo tumor metastasis. Live-cell imaging and fluorescence recovery after photobleaching were used to evaluate the function and dynamics of acetylated Fascin in filopodium formation. The clinical significance of acetylated Fascin and PCAF in ESCC was evaluated using immunohistochemistry.Fascin directly interacted and colocalized with PCAF in the cytoplasm and was acetylated at lysine 471 (K471) by PCAF. Using the specific anti-AcK471-Fascin antibody, Fascin was found to be acetylated in ESCC cells, and the acetylation level was consequently increased after PCAF overexpression and decreased after PCAF knockdown. Functionally, Fascin-K471 acetylation markedly suppressed in vitro ESCC cell migration and in vivo tumor metastasis, whereas Fascin-K471 deacetylation exhibited a potent oncogenic function. Moreover, Fascin-K471 acetylation reduced filopodial length and density, and lifespan of ESCC cells, while its deacetylation produced the opposite effect. In the filipodium shaft, K471-acetylated Fascin displayed rapid dynamic exchange, suggesting that it remained in its monomeric form owing to its weakened actin-bundling activity. Clinically, high levels of AcK471-Fascin in ESCC tissues were strongly associated with prolonged overall survival and disease-free survival of ESCC patients.Fascin interacts directly with PCAF and is acetylated at lysine 471 in ESCC cells. Fascin-K471 acetylation suppressed ESCC cell migration and tumor metastasis by reducing filopodium formation through the impairment of its actin-bundling activity." @default.
- W3201380212 created "2021-09-27" @default.
- W3201380212 creator A5000076774 @default.
- W3201380212 creator A5000808868 @default.
- W3201380212 creator A5001823999 @default.
- W3201380212 creator A5003230170 @default.
- W3201380212 creator A5003850660 @default.
- W3201380212 creator A5014606791 @default.
- W3201380212 creator A5017444620 @default.
- W3201380212 creator A5021080147 @default.
- W3201380212 creator A5023997325 @default.
- W3201380212 creator A5024067111 @default.
- W3201380212 creator A5028795568 @default.
- W3201380212 creator A5038387396 @default.
- W3201380212 creator A5048662881 @default.
- W3201380212 creator A5052541540 @default.
- W3201380212 creator A5057540608 @default.
- W3201380212 creator A5060120199 @default.
- W3201380212 creator A5063576180 @default.
- W3201380212 creator A5064001472 @default.
- W3201380212 creator A5065713996 @default.
- W3201380212 creator A5081721581 @default.
- W3201380212 date "2021-09-23" @default.
- W3201380212 modified "2023-10-17" @default.
- W3201380212 title "P300/CBP‐associated factor (PCAF)‐mediated acetylation of Fascin at lysine 471 inhibits its actin‐bundling activity and tumor metastasis in esophageal cancer" @default.
- W3201380212 cites W1487853058 @default.
- W3201380212 cites W1565966108 @default.
- W3201380212 cites W1597994956 @default.
- W3201380212 cites W1678047477 @default.
- W3201380212 cites W1914789347 @default.
- W3201380212 cites W1967972793 @default.
- W3201380212 cites W1980824787 @default.
- W3201380212 cites W1982270174 @default.
- W3201380212 cites W1982401690 @default.
- W3201380212 cites W1995926647 @default.
- W3201380212 cites W1997030377 @default.
- W3201380212 cites W2001674723 @default.
- W3201380212 cites W2004593278 @default.
- W3201380212 cites W2009826707 @default.
- W3201380212 cites W2018835039 @default.
- W3201380212 cites W2019843530 @default.
- W3201380212 cites W2023024480 @default.
- W3201380212 cites W2024230071 @default.
- W3201380212 cites W2024342524 @default.
- W3201380212 cites W2031496874 @default.
- W3201380212 cites W2038634187 @default.
- W3201380212 cites W2040498703 @default.
- W3201380212 cites W2046833816 @default.
- W3201380212 cites W2063220206 @default.
- W3201380212 cites W2067440113 @default.
- W3201380212 cites W2069839886 @default.
- W3201380212 cites W2075127308 @default.
- W3201380212 cites W2077335347 @default.
- W3201380212 cites W2113933820 @default.
- W3201380212 cites W2121588102 @default.
- W3201380212 cites W2140854963 @default.
- W3201380212 cites W2146295849 @default.
- W3201380212 cites W2154477609 @default.
- W3201380212 cites W2168145925 @default.
- W3201380212 cites W2292112495 @default.
- W3201380212 cites W2330509585 @default.
- W3201380212 cites W2544357312 @default.
- W3201380212 cites W2560331175 @default.
- W3201380212 cites W2593955106 @default.
- W3201380212 cites W2757260578 @default.
- W3201380212 cites W2758314825 @default.
- W3201380212 cites W2775559649 @default.
- W3201380212 cites W2800903821 @default.
- W3201380212 cites W2899030712 @default.
- W3201380212 cites W2967680982 @default.
- W3201380212 cites W894880941 @default.
- W3201380212 doi "https://doi.org/10.1002/cac2.12221" @default.
- W3201380212 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34555274" @default.
- W3201380212 hasPublicationYear "2021" @default.
- W3201380212 type Work @default.
- W3201380212 sameAs 3201380212 @default.
- W3201380212 citedByCount "13" @default.
- W3201380212 countsByYear W32013802122022 @default.
- W3201380212 countsByYear W32013802122023 @default.
- W3201380212 crossrefType "journal-article" @default.
- W3201380212 hasAuthorship W3201380212A5000076774 @default.
- W3201380212 hasAuthorship W3201380212A5000808868 @default.
- W3201380212 hasAuthorship W3201380212A5001823999 @default.
- W3201380212 hasAuthorship W3201380212A5003230170 @default.
- W3201380212 hasAuthorship W3201380212A5003850660 @default.
- W3201380212 hasAuthorship W3201380212A5014606791 @default.
- W3201380212 hasAuthorship W3201380212A5017444620 @default.
- W3201380212 hasAuthorship W3201380212A5021080147 @default.
- W3201380212 hasAuthorship W3201380212A5023997325 @default.
- W3201380212 hasAuthorship W3201380212A5024067111 @default.
- W3201380212 hasAuthorship W3201380212A5028795568 @default.
- W3201380212 hasAuthorship W3201380212A5038387396 @default.
- W3201380212 hasAuthorship W3201380212A5048662881 @default.
- W3201380212 hasAuthorship W3201380212A5052541540 @default.
- W3201380212 hasAuthorship W3201380212A5057540608 @default.
- W3201380212 hasAuthorship W3201380212A5060120199 @default.
- W3201380212 hasAuthorship W3201380212A5063576180 @default.
- W3201380212 hasAuthorship W3201380212A5064001472 @default.