Reynolds Nathan M, Mohammadalipour Amina, Hall Claire R, Asghari Adib Ali, Farnoud Amir M, Burdick Monica M
Biomedical Engineering Program, Russ College of Engineering and Technology, Ohio University, Athens, OH USA.
Translational Biomedical Science Program, The Graduate College, Ohio University, 1 Ohio University, Athens, OH 45701 USA.
Cell Mol Bioeng. 2017 Oct 24;11(1):37-52. doi: 10.1007/s12195-017-0512-9. eCollection 2018 Feb.
Invasion of other tissues during bloodborne metastasis in part requires adhesion of cancer cells to vascular endothelium by specific fluid shear-dependent receptor-ligand interactions. This study investigates the hypothesis that the adhesion is mediated by ligands shared between endothelial E-selectin and Galectin-1 (Gal-1), both of which are upregulated during inflammation and cancer.
Flow chamber adhesion and dynamic biochemical tissue analysis (DBTA) assays were used to evaluate whether Gal-1 modulates E-selectin adhesive interactions of breast cancer cells and tissues under dynamic flow conditions, while immunocytochemistry, immunohistochemistry, western blotting, and fluorescence anisotropy were used to study molecular interactions under static conditions.
Dynamic adhesion assays revealed a shear-dependent binding interaction between Gal-1hFc treated breast cancer cells and tissues and E-selectin-coated beads, causing ~ 300% binding increase of the beads compared to negative controls. Immunocyto- and immunohistochemical analyses showed that Gal-1 and E-selectin fluorescent signals colocalized on cells and tissues at ~ 75% for each assay. Immunoprecipitation and Western blotting of Mac-2BP from breast cancer cell lysates revealed that Gal-1 and E-selectin share Mac-2BP as a ligand, while fluorescence anisotropy and circulating tumor cell model systems exhibited competitive or antagonistic binding between Gal-1 and E-selectin for shared ligands, including Mac-2BP. Furthermore, Mac-2BP functional blockade inhibited the effects of Gal-1 on E-selectin binding.
In summary, this investigation reveals a shear-dependent interaction between E-selectin and Gal-1 that may be due to intermediation by a similar or shared ligand(s), including Mac-2BP, which may provide a rational basis for development of novel diagnostics or therapeutics for breast cancer.
血行转移过程中癌细胞侵袭其他组织部分需要通过特定的流体剪切力依赖性受体 - 配体相互作用使癌细胞与血管内皮细胞黏附。本研究探讨这样一种假说,即这种黏附是由内皮细胞E - 选择素和半乳糖凝集素 -1(Gal -1)之间共享的配体介导的,二者在炎症和癌症过程中均上调。
采用流动腔黏附试验和动态生化组织分析(DBTA)试验评估Gal -1在动态流动条件下是否调节乳腺癌细胞和组织的E - 选择素黏附相互作用,同时采用免疫细胞化学、免疫组织化学、蛋白质印迹法和荧光各向异性研究静态条件下的分子相互作用。
动态黏附试验显示,经Gal -1hFc处理的乳腺癌细胞和组织与E - 选择素包被的珠子之间存在剪切力依赖性结合相互作用,与阴性对照相比,珠子的结合增加了约300%。免疫细胞化学和免疫组织化学分析表明,Gal -1和E - 选择素荧光信号在细胞和组织上的共定位率在每次试验中约为75%。对乳腺癌细胞裂解物进行免疫沉淀和蛋白质印迹分析显示,Gal -1和E - 选择素共享Mac -2BP作为配体,而荧光各向异性和循环肿瘤细胞模型系统显示Gal -1和E - 选择素对包括Mac -2BP在内的共享配体存在竞争性或拮抗性结合。此外,Mac -2BP功能阻断抑制了Gal -1对E - 选择素结合的影响。
总之,本研究揭示了E - 选择素和Gal -1之间的剪切力依赖性相互作用,这可能是由于包括Mac -2BP在内的相似或共享配体介导的,这可能为开发乳腺癌新型诊断或治疗方法提供合理依据。