| Literature DB >> 35066808 |
Dong Gil Jang1, Keun Yeong Kwon1, Eun Kyung Song2, Tae Joo Park3,4.
Abstract
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.Entities:
Keywords: Cell migration; Focal adhesion; ITGBL1; Integrin; Trailing edge
Mesh:
Substances:
Year: 2022 PMID: 35066808 PMCID: PMC8921176 DOI: 10.1007/s13258-021-01204-x
Source DB: PubMed Journal: Genes Genomics ISSN: 1976-9571 Impact factor: 1.839
Fig. 1Integrin β-like 1 (ITGBL1) regulates cellular migration and directionality. a Wound healing assay analysis of ITGBL1-depleted or -overexpressing cells. Total migration pathways of each cell during 12 h are indicated. Circular graphs show the trajectory of migrating cells from the origin. Scale bars: 100 µm. b Statistical analyses of total length of cell migration trajectory in a. Error bars represent the mean with the SD. P values were determined using the two-tailed t test (****P < 0.0001; ***P = 0.0005). c The angles between the origin and the final position of each cell were quantified and plotted. Cells on the right side of the scratch were assumed to be mirror images to match the angle between both sides of the wound. d Statistical analyses of the directionality of cell migration. The directionality was calculated using the ratio of distance from origin to the total length of the trajectory. Error bars represent the mean with SD. P values were determined using the two-tailed t test (*P = 0.0214; ***P = 0.0003)
Fig. 2Integrin β-like 1 (ITGBL1) regulates trailing edge retraction at the rear of migrating cells. a Leading edge behaviors over 4 h in migrating cells were indicated by different colors. Scale bars: 50 µm. b Trailing edge time-lapse live images of ITGBL1-depleted or overexpressed cells over 7 h. Scale bars: 10 µm. c Statistical analysis of the ratio of trailing edge areas to the cell boundary length, from which the trailing edge originates. Error bars represent the mean with SD. P values were determined using the two-tailed t test (*P < 0.05; **P < 0.01). d Statistical analyses of the trailing edge lengths. Error bars represent the mean with the SD. P values were determined using the two-tailed t-test (****P < 0.0001)
Fig.3Integrin β-like 1 (ITGBL1) regulates trailing edge retraction by inhibiting integrin activation. a Confocal images of total or active integrin β1 in ITGBL1-depleted or overexpressed cells. Enlarged inlet images are indicated by white rectangles. Scale bars: 50 µm. b Statistical analysis of total or active integrin. The area of fluorescent signals was normalized using the total areas of trailing edges. Error bars represent the mean with the SD. P values were determined using the two-tailed t test (****P < 0.0001; **P < 0.01)
Fig. 4Integrin β-like 1 (ITGBL1)-mediated-integrin inhibition is necessary for focal adhesion disassembly for trailing edge retraction. a Confocal images of phospho-FAK in ITGBL1-depleted or overexpressed cells. Enlarged inlet images are indicated by white rectangles. Scale bars: 50 µm b Statistical analysis of phospho-FAK. The areas of fluorescent signals were normalized using the total areas of trailing edges. Error bars are the mean with the SD. P values were determined using the two-tailed t test (*P = 0.0377; ****P < 0.0001). c Confocal images of total-FAK and vinculin in ITGBL1-depleted or overexpressed cells. Enlarged inlet images are indicated by white rectangles. Scale bars: 50 µm. d Statistical analysis of vinculin. The areas of fluorescent signals were normalized using the total areas of trailing edges. Error bars represent the mean with the SD. P values were determined using the two-tailed t test (***P = 0.0004; ****P < 0.0001)