Department of Regenerative and Cancer Cell Biology, Albany Medical College, 47 New Scotland Ave., Albany, NY 12208, USA.
Cells. 2022 Feb 26;11(5):816. doi: 10.3390/cells11050816.
Endothelial cells engage extracellular matrix and basement membrane components through integrin-mediated adhesion to promote angiogenesis. Angiogenesis involves the sprouting of endothelial cells from pre-existing vessels, their migration into surrounding tissue, the upregulation of angiogenesis-associated genes, and the formation of new endothelial tubes. To determine whether the endothelial laminin-binding integrins, α6β4, and α3β1 contribute to these processes, we employed RNAi technology in organotypic angiogenesis assays, as well in migration assays, in vitro. The endothelial depletion of either α6β4 or α3β1 inhibited endothelial sprouting, indicating that these integrins have non-redundant roles in this process. Interestingly, these phenotypes were accompanied by overlapping and distinct changes in the expression of angiogenesis-associated genes. Lastly, depletion of α6β4, but not α3β1, inhibited migration. Taken together, these results suggest that laminin-binding integrins regulate processes associated with angiogenesis by distinct and overlapping mechanisms.
内皮细胞通过整合素介导的黏附作用与细胞外基质和基底膜成分结合,促进血管生成。血管生成涉及内皮细胞从前体血管中发芽、迁移到周围组织、血管生成相关基因的上调以及新的内皮管的形成。为了确定内皮细胞层粘连素结合整合素α6β4 和 α3β1 是否有助于这些过程,我们在器官样血管生成测定和体外迁移测定中使用了 RNAi 技术。内皮细胞中 α6β4 或 α3β1 的耗竭抑制了内皮细胞的发芽,表明这些整合素在该过程中具有非冗余的作用。有趣的是,这些表型伴随着血管生成相关基因表达的重叠和不同变化。最后,α6β4 的耗竭而不是 α3β1 的耗竭抑制了迁移。总之,这些结果表明,层粘连素结合整合素通过不同和重叠的机制调节与血管生成相关的过程。