Neutzner Melanie, Lopez Theresa, Feng Xu, Bergmann-Leitner Elke S, Leitner Wolfgang W, Udey Mark C
Dermatology Branch and Basic Research Laboratory, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Cancer Res. 2007 Jul 15;67(14):6777-85. doi: 10.1158/0008-5472.CAN-07-0165.
The relevance of angiogenesis in tumor biology and as a therapeutic target is well established. MFG-E8 (also termed lactadherin) and developmental endothelial locus 1 (Del1) constitute a two-gene family of alpha(v)beta(3)/beta(5) ligands that regulate angiogenesis. After detecting MFG-E8 mRNA in murine tumor cell lines, we sought to determine if MFG-E8 influenced tumorigenesis in Rip1-Tag2 transgenic mice, a cancer model in which angiogenesis is critical. MFG-E8 mRNA and protein were increased in angiogenic islets and tumors in Rip1-Tag2 mice compared with normal pancreas. Frequencies of angiogenic islets and tumor burdens were decreased in MFG-E8-deficient Rip1-Tag2 mice compared with those in control Rip1-Tag2 mice. Invasive carcinomas were modestly underrepresented in MFG-E8-deficient mice, but tumor frequencies and survivals were comparable in these two strains. Absence of MFG-E8 also led to decreases in tumor vascular permeability without obvious changes in vascular morphology. Decreased proliferation was noted in angiogenic islets and increases in apoptotic cells were detected in islets and tumors. Compensatory increases in mRNA encoding proangiogenic proteins, including FGF2, in angiogenic islets, and Del1, in angiogenic islets and tumors, were also detected in MFG-E8-deficient mice. MFG-E8 and its homologue Del1 may represent relevant targets in cancer and other diseases in which angiogenesis is prominent.
血管生成在肿瘤生物学中的相关性以及作为治疗靶点已得到充分证实。MFG-E8(也称为乳粘连蛋白)和发育性内皮位点1(Del1)构成了一个调节血管生成的α(v)β(3)/β(5)配体双基因家族。在检测到小鼠肿瘤细胞系中的MFG-E8 mRNA后,我们试图确定MFG-E8是否影响Rip1-Tag2转基因小鼠的肿瘤发生,Rip1-Tag2转基因小鼠是一种血管生成至关重要的癌症模型。与正常胰腺相比,Rip1-Tag2小鼠血管生成的胰岛和肿瘤中MFG-E8 mRNA和蛋白增加。与对照Rip1-Tag2小鼠相比,MFG-E8缺陷型Rip1-Tag2小鼠血管生成胰岛的频率和肿瘤负荷降低。在MFG-E8缺陷型小鼠中,浸润性癌的比例略有降低,但这两种品系的肿瘤发生率和存活率相当。MFG-E8的缺失还导致肿瘤血管通透性降低,而血管形态无明显变化。血管生成的胰岛中增殖减少,胰岛和肿瘤中检测到凋亡细胞增加。在MFG-E8缺陷型小鼠的血管生成胰岛中,还检测到编码促血管生成蛋白(包括FGF2)的mRNA代偿性增加,在血管生成胰岛和肿瘤中检测到Del1增加。MFG-E8及其同源物Del1可能是癌症和其他血管生成突出的疾病中的相关靶点。