Department of Life and Environment Engineering, Faculty of Environmental Engineering, The University of Kitakyushu, 1-1 Hibikino, Wakamatsu, Kitakyushu, Fukuoka, 808-0135, Japan.
Vinmec Research Institute of Stem Cell and Gene Technology, Vinmec Health Care System, 458 Minh Khai, Hai Ba Trung, Hanoi, Vietnam.
Hum Cell. 2022 Jan;35(1):189-198. doi: 10.1007/s13577-021-00651-8. Epub 2021 Nov 24.
Surface stiffness is a unique indicator of various cellular states and events and needs to be tightly controlled. α-Mangostin, a natural compound with numerous bioactivities, reduces the mechanical stiffness of various cells; however, the mechanism by which it affects the actin cytoskeleton remains unclear. We aimed to elucidate the mechanism underlying α-mangostin activity on the surface stiffness of leukocytes. We treated spherical non-adherent myelomonocytic KG-1 cells with α-mangostin; it clearly reduced their surface stiffness and disrupted their microvilli. The α-mangostin-induced reduction in surface stiffness was inhibited by calyculin A, a protein phosphatase inhibitor. α-Mangostin also induced KG-1 cell adhesion to a fibronectin-coated surface. In KG-1 cells, a decrease in surface stiffness and the induction of cell adhesion are largely attributed to the dephosphorylation of ezrin/radixin/moesin proteins (ERMs); α-mangostin reduced the levels of phosphorylated ERMs. It further increased protein kinase C (PKC) activity. α-Mangostin-induced KG-1 cell adhesion and cell surface softness were inhibited by the PKC inhibitor GF109203X. The results of the present study suggest that α-mangostin decreases stiffness and induces adhesion of KG-1 cells via PKC activation and ERM dephosphorylation.
表面硬度是各种细胞状态和事件的独特指标,需要严格控制。α-倒捻子素是一种具有多种生物活性的天然化合物,可降低各种细胞的机械硬度;然而,其影响肌动蛋白细胞骨架的机制尚不清楚。我们旨在阐明α-倒捻子素对白细胞表面硬度的作用机制。我们用 α-倒捻子素处理球形非黏附性髓样单核细胞 KG-1 细胞;它明显降低了它们的表面硬度并破坏了它们的微绒毛。钙调神经磷酸酶抑制剂 calyculin A 抑制了 α-倒捻子素诱导的表面硬度降低。α-倒捻子素还诱导 KG-1 细胞黏附到纤维连接蛋白包被的表面。在 KG-1 细胞中,表面硬度的降低和细胞黏附的诱导主要归因于 ezrin/radixin/moesin 蛋白 (ERM) 的去磷酸化;α-倒捻子素降低了磷酸化 ERM 的水平。它进一步增加了蛋白激酶 C (PKC) 的活性。PKC 抑制剂 GF109203X 抑制了 α-倒捻子素诱导的 KG-1 细胞黏附和细胞表面柔软度。本研究的结果表明,α-倒捻子素通过 PKC 激活和 ERM 去磷酸化降低 KG-1 细胞的硬度并诱导其黏附。