Konda Naoko, Saeki Noritaka, Nishino Shingo, 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.
Histochem Cell Biol. 2017 Mar;147(3):317-339. doi: 10.1007/s00418-016-1494-8. Epub 2016 Sep 24.
We previously established a J774.1 monocyte/macrophage subline expressing a truncated EphA2 construct lacking the kinase domain. We demonstrated that following ephrin-A1 stimulation, endogenous EphA2 promotes cell adhesion through interaction with integrins and integrin ligands such as ICAM1 and that truncated EphA2 potentiates the adhesion and becomes associated with the integrin/integrin ligand complex. Based on these findings, we hypothesized that the EphA/ephrin-A system, particularly EphA2/ephrin-A1, regulates transendothelial migration/tissue infiltration of monocytes/macrophages, because ephrin-A1 is widely recognized to be upregulated in inflammatory vasculatures. To evaluate whether this hypothesis is applicable in the spleen, we screened for EphA2/ephrin-A1 expression and reexamined the cellular properties of the J774.1 subline. We found that ephrin-A1 was expressed in the vasculature of the marginal zone and the red pulp and that its expression was upregulated in response to phagocyte depletion; further, CD115, F4/80, and CXCR4 were expressed in J774.1 cells, which serve as a usable substitute for monocytes/macrophages. Moreover, following ephrin-A1 stimulation, truncated EphA2 did not detectably interfere with the phosphorylation of endogenous EphA2, and it potentiated cell adhesion possibly through modulation of integrin avidity. Accordingly, by intravenously injecting mice with equal numbers of J774.1 and the subline cells labeled with distinct fluorochromes, we determined that truncated EphA2 markedly potentiated preferential cell infiltration into the red pulp and the marginal zone. Thus, modulation of EphA2 signaling might contribute to effective transplantation of tissue-specific resident macrophages and/or monocytes.
我们之前建立了一个J774.1单核细胞/巨噬细胞亚系,该亚系表达一种缺少激酶结构域的截短型EphA2构建体。我们证明,在ephrin-A1刺激后,内源性EphA2通过与整合素及整合素配体(如ICAM1)相互作用促进细胞黏附,并且截短型EphA2增强了黏附作用,并与整合素/整合素配体复合物相关联。基于这些发现,我们推测EphA/ephrin-A系统,尤其是EphA2/ephrin-A1,调节单核细胞/巨噬细胞的跨内皮迁移/组织浸润,因为ephrin-A1在炎症血管中被广泛认为是上调的。为了评估这一假设是否适用于脾脏,我们筛选了EphA2/ephrin-A1的表达,并重新检查了J774.1亚系的细胞特性。我们发现ephrin-A1在边缘区和红髓的血管中表达,并且其表达在吞噬细胞耗竭后上调;此外,CD115、F4/80和CXCR4在J774.1细胞中表达,这些细胞可作为单核细胞/巨噬细胞的可用替代物。此外,在ephrin-A1刺激后,截短型EphA2未检测到对内源性EphA2磷酸化的干扰,并且它可能通过调节整合素亲和力增强细胞黏附。因此,通过向小鼠静脉注射等量的用不同荧光染料标记的J774.1细胞和亚系细胞,我们确定截短型EphA2显著增强了细胞向红髓和边缘区的优先浸润。因此,EphA2信号的调节可能有助于组织特异性驻留巨噬细胞和/或单核细胞的有效移植。