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Updated: Mar 15, 2026

Simultaneous Study of the Recruitment of Monocyte Subpopulations Under Flow In Vitro
Published on: November 26, 2018
Molecular association of CD98, CD29, and CD147 critically mediates monocytic U937 cell adhesion
1School of Systems Biomedical Science, Soongsil University, Seoul 06978, Korea.
Insights
Monocyte adhesion, crucial for inflammation, involves beta-1 integrin CD29. This study reveals CD29 associates with CD98 and CD147, modulating cell adhesion via the actin cytoskeleton.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Monocyte adhesion is a key inflammatory process regulated by chemokines.
- Beta-1 integrin CD29 is a critical adhesion molecule for leukocyte migration.
- The precise molecular interactions between CD29 and its regulators, CD98 and CD147, remain unclear.
Purpose of the Study:
- To investigate the functional, biochemical, and cell-biological associations between CD29, CD98, and CD147.
- To elucidate the role of these molecules in monocyte adhesion and aggregation.
Main Methods:
- Utilized monocytic U937 cells.
- Employed aggregation-stimulating and blocking antibodies.
- Applied enzyme inhibitors.
- Confirmed molecular associations using confocal microscopy and immunoprecipitation.
Main Results:
- Surface expression of CD29, CD98, and CD147 increased upon stimulation.
- Activation of CD29, CD98, and CD147 induced cell-cell adhesion.
- CD29, CD98, and CD147 exhibited similar sensitivities to enzyme inhibitors and blocking antibodies.
- Confirmed molecular association between CD29, CD98, CD147, and the actin cytoskeleton.
Conclusions:
- CD29, CD98, and CD147 are functionally and biochemically associated in U937 cells.
- These molecules play a role in monocyte aggregation and adhesion.
- The actin cytoskeleton is involved in mediating the interactions between CD29, CD98, and CD147.
Abstract:
Adhesion events of monocytes represent an important step in inflammatory responses induced by chemokines. The β1-integrin CD29 is a major adhesion molecule regulating leukocyte migration and extravasation. Although several adhesion molecules have been known as regulators of CD29, the molecular interactions between CD29 and its regulatory adhesion molecules (such as CD98 and CD147) have not been fully elucidated. Therefore, in this study, we examined whether these molecules are functionally, biochemically, and cell-biologically associated using monocytic U937 cells treated with aggregation-stimulating and blocking antibodies, as well as enzyme inhibitors. The surface levels of CD29, CD98, and CD147 (but not CD43, CD44, and CD82) were increased. The activation of CD29, CD98, and CD147 by ligation of them with aggregation-activating antibodies triggered the induction of cell-cell adhesion, and sensitivity to various enzyme inhibitors and aggregation-blocking antibodies was similar for CD29-, CD98-, and CD147-induced U937 cell aggregation. Molecular association between these molecules and the actin cytoskeleton was confirmed by confocal microscopy and immunoprecipitation. These results strongly suggest that CD29 might be modulated by its biochemical and cellular regulators, including CD98 and CD147, via the actin cytoskeleton.
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