Department of Physiology and Pathophysiology, Shanghai Medical College, Shanghai, China.
Cancer Sci. 2010 Dec;101(12):2561-9. doi: 10.1111/j.1349-7006.2010.01733.x. Epub 2010 Sep 28.
Ecto-5'-nucleotidase (CD73), a cell surface protein that hydrolyzes extracellular AMP into adenosine and phosphate, is overexpressed in many solid tumors. In this study, we tested the hypothesis that increased CD73 may promote tumor progression by examining the effect of CD73 suppression via RNA interference and CD73 overexpression on tumor growth in vivo and in vitro. Using digitized whole-body images, plate clone forming assay and TUNEL assay in frozen tissue sections, we found that the cell growth rate was significantly lower in vivo and in vitro after CD73 suppression and late apoptosis was much higher in xenograft tumors developed from the CD73-siRNA transfected MB-MDA-231 clone (P1). By flow cytometry, the P1 cell cycle was arrested in the G0/G1 phase. Moreover, Bcl-2 was downregulated, while Bax and caspase-3 were upregulated with CD73 suppression. CD73 inhibitor α,β-methylene adenosine-5'-disphosphate (APCP) functioned similarly with RNAi-mediated CD73 suppression. In addition, in transfected MCF-7 cells, we found that CD73 overexpression increased cell viability and promoted cell cycle progression, depending on its enzyme activity. More intriguingly, CD73 overexpression in MCF-7 breast cancer cells produces a tumorigenic phenotype. We conclude that CD73 plays an important role in breast cancer growth by affecting cell cycle progression and apoptosis.
外核苷酸酶(CD73)是一种细胞表面蛋白,可将细胞外 AMP 水解为腺苷和磷酸盐,在许多实体瘤中过度表达。在这项研究中,我们通过 RNA 干扰抑制 CD73 和过表达 CD73 来检测 CD73 增加是否可能通过促进肿瘤进展的假设,检验了 CD73 对体内和体外肿瘤生长的影响。通过数字化全身图像、平板克隆形成测定和冷冻组织切片中的 TUNEL 测定,我们发现 CD73 抑制后体内和体外的细胞生长速度明显降低,并且来自 CD73-siRNA 转染 MB-MDA-231 克隆(P1)的异种移植肿瘤中晚期凋亡明显更高(P1)。通过流式细胞术,P1 细胞周期被阻滞在 G0/G1 期。此外,Bcl-2 下调,而 Bax 和 caspase-3 上调与 CD73 抑制。CD73 抑制剂α,β-亚甲基腺苷-5'-二磷酸(APCP)与 RNAi 介导的 CD73 抑制具有相似的功能。此外,在转染的 MCF-7 细胞中,我们发现 CD73 过表达增加了细胞活力并促进了细胞周期进程,这取决于其酶活性。更有趣的是,CD73 在 MCF-7 乳腺癌细胞中的过表达产生了致瘤表型。我们得出结论,CD73 通过影响细胞周期进程和细胞凋亡在乳腺癌生长中发挥重要作用。