4.3 Article

Integrin beta-like 1 protein (ITGBL1) promotes cell migration by preferentially inhibiting integrin-ECM binding at the trailing edge

期刊

GENES & GENOMICS
卷 44, 期 4, 页码 405-413

出版社

SPRINGER
DOI: 10.1007/s13258-021-01204-x

关键词

ITGBL1; Integrin; Cell migration; Trailing edge; Focal adhesion

资金

  1. Korea National Research Foundation [2019M3E5D5067273, 2021R1A2B5B02002285]
  2. National Research Foundation of Korea [2021R1A2B5B02002285, 2019M3E5D5067273] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

ITGBL1 facilitates directional cell migration by inhibiting integrin activity at the trailing edges. Depletion of ITGBL1 leads to increased focal adhesions at the trailing edges, preventing retraction. Overexpression of ITGBL1 promotes directional cell migration by promoting disassembly of the focal adhesion complex at the trailing edges.
Background Cell migration is a basic cellular behavior involved in multiple phenomena in the human body such as embryonic development, wound healing, immune reactions, and cancer metastasis. For proper cell migration, integrin and the ECM binding complex must be disassembled for the retraction of trailing edges. Objective Integrin must be differentially regulated at leading edges or trailing edges during cell migration. Previously, we showed that ITGBL1 was a secreted protein and inhibits integrin activity. Therefore, we examined the function of ITGBL1 on the retraction of trailing edges during cell migration. Methods To examined the function of ITGBL1 on cell migration, we knocked-down or overexpressed ITGBL1 by using ITGBL1 siRNA or ITGBL1 plasmid DNA in human chondrocytes or ATDC5 cells. We then characterized cellular migration and directionality by performing wound healing assays. Also, to analyze leading-edge formation and trailing-edge retraction, we labeled cell membranes with membrane-GFP and performed live imaging of migrating cells and. Finally, we specifically detected active forms of integrin, FAK and Vinculin using specific antibodies upon ITGBL1 depletion or overexpression. Result In this study, ITGBL1 preferentially inhibited integrin activity at the trailing edges to promote cell migration. ITGBL1-depleted cells showed increased focal adhesions at the membranous traces of trailing edges to prevent the retraction of trailing edges. In contrast, overexpression of ITGBL1 upregulated directional cell migration by promoting focal adhesion disassembly at the trailing edges. Conclusion ITGBL1 facilitates directional cell migration by promoting disassembly of the trailing edge focal adhesion complex.

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