Mukai Midori, Suruga Norihiko, Saeki Noritaka, Ogawa Kazushige
Laboratory of Veterinary Anatomy, Graduate School of Life and Environmental Sciences, Osaka Prefecture University, 1-58 Rinku-Ourai-Kita, Izumisano, Osaka, 598-8531, Japan.
BMC Cell Biol. 2017 Aug 29;18(1):28. doi: 10.1186/s12860-017-0144-x.
Eph signaling is known to induce contrasting cell behaviors such as promoting and inhibiting cell adhesion/spreading by altering F-actin organization and influencing integrin activities. We have previously demonstrated that EphA2 stimulation by ephrin-A1 promotes cell adhesion through interaction with integrins and integrin ligands in two monocyte/macrophage cell lines. Although mature mononuclear leukocytes express several members of the EphA/ephrin-A subclass, their expression has not been examined in monocytes undergoing during differentiation and maturation.
Using RT-PCR, we have shown that EphA2, ephrin-A1, and ephrin-A2 expression was upregulated in murine bone marrow mononuclear cells during monocyte maturation. Moreover, EphA2 and EphA4 expression was induced, and ephrin-A4 expression was upregulated, in a human promyelocytic leukemia cell line, HL60, along with monocyte differentiation toward the classical CD14CD16 monocyte subset. Using RT-PCR and flow cytometry, we have also shown that expression levels of αL, αM, αX, and β2 integrin subunits were upregulated in HL60 cells along with monocyte differentiation while those of α4, α5, α6, and β1 subunits were unchanged. Using a cell attachment stripe assay, we have shown that stimulation by EphA as well as ephrin-A, likely promoted adhesion to an integrin ligand-coated surface in HL60 monocytes. Moreover, EphA and ephrin-A stimulation likely promoted the formation of protrusions in HL60 monocytes.
Notably, this study is the first analysis of EphA/ephrin-A expression during monocytic differentiation/maturation and of ephrin-A stimulation affecting monocyte adhesion to an integrin ligand-coated surface. Thus, we propose that monocyte adhesion via integrin activation and the formation of protrusions is likely promoted by stimulation of EphA as well as of ephrin-A.
已知Eph信号传导可诱导不同的细胞行为,如通过改变F-肌动蛋白组织和影响整合素活性来促进和抑制细胞粘附/铺展。我们之前已经证明,在两种单核细胞/巨噬细胞系中,ephrin-A1对EphA2的刺激通过与整合素及整合素配体相互作用来促进细胞粘附。尽管成熟的单核白细胞表达EphA/ephrin-A亚类的多个成员,但它们在单核细胞分化和成熟过程中的表达尚未得到研究。
利用逆转录聚合酶链反应(RT-PCR),我们发现EphA2、ephrin-A1和ephrin-A2在小鼠骨髓单核细胞单核细胞成熟过程中表达上调。此外,在人早幼粒细胞白血病细胞系HL60中,随着单核细胞向经典的CD14CD16单核细胞亚群分化,EphA2和EphA4的表达被诱导,ephrin-A4的表达上调。利用RT-PCR和流式细胞术,我们还发现,随着HL60细胞单核细胞分化,αL、αM、αX和β2整合素亚基的表达水平上调,而α4、α5、α6和β1亚基的表达水平未变。利用细胞附着条纹试验,我们发现EphA以及ephrin-A的刺激可能促进HL60单核细胞对整合素配体包被表面的粘附。此外,EphA和ephrin-A的刺激可能促进HL60单核细胞中突起的形成。
值得注意的是,本研究首次分析了单核细胞分化/成熟过程中EphA/ephrin-A的表达以及ephrin-A刺激对单核细胞与整合素配体包被表面粘附的影响。因此,我们提出,EphA以及ephrin-A的刺激可能通过整合素激活促进单核细胞粘附并促进突起的形成。