Yoshioka Norie, Wang Li, Kishimoto Koji, Tsuji Takanori, Hu Guo-fu
Center for Biochemical and Biophysical Sciences and Medicine, Department of Pathology, Harvard Medical School, 77 Avenue Louis Pasteur, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2006 Sep 26;103(39):14519-24. doi: 10.1073/pnas.0606708103. Epub 2006 Sep 13.
Human angiogenin is progressively up-regulated in the prostate epithelial cells during the development of prostate cancer from prostate intraepithelial neoplasia (PIN) to invasive adenocarcinoma. Mouse angiogenin is the most up-regulated gene in AKT-induced PIN in prostate-restricted AKT transgenic mice. These results prompted us to study the role that angiogenin plays in prostate cancer. Here, we report that, in addition to its well established role in mediating angiogenesis, angiogenin also directly stimulates prostate cancer cell proliferation. Angiogenin undergoes nuclear translocation in PC-3 human prostate cancer cells grown both in vitro and in mice. Thus, knocking down angiogenin expression in PC-3 human prostate adenocarcinoma cells inhibits ribosomal RNA transcription, in vitro cell proliferation, colony formation in soft agar, and xenograft growth in athymic mice. Blockade of nuclear translocation of angiogenin by the aminoglycoside antibiotic neomycin inhibited PC-3 cell tumor growth in athymic mice and was accompanied by a decrease in both cancer cell proliferation and angiogenesis. These results suggest that angiogenin has a dual effect, angiogenesis and cancer cell proliferation, in prostate cancer and may serve as a molecular target for drug development. Blocking nuclear translocation of angiogenin could have a combined benefit of antiangiogenesis and chemotherapy in treating prostate cancer.
在前列腺癌从前列腺上皮内瘤变(PIN)发展到浸润性腺癌的过程中,人血管生成素在前列腺上皮细胞中逐渐上调。在前列腺特异性AKT转基因小鼠中,小鼠血管生成素是AKT诱导的PIN中上调最明显的基因。这些结果促使我们研究血管生成素在前列腺癌中所起的作用。在此,我们报告,血管生成素除了在介导血管生成方面已确立的作用外,还直接刺激前列腺癌细胞增殖。血管生成素在体外培养的和小鼠体内的PC-3人前列腺癌细胞中发生核转位。因此,敲低PC-3人前列腺腺癌细胞中血管生成素的表达可抑制核糖体RNA转录、体外细胞增殖、软琼脂中的集落形成以及无胸腺小鼠体内的异种移植瘤生长。氨基糖苷类抗生素新霉素对血管生成素核转位的阻断抑制了无胸腺小鼠体内PC-3细胞肿瘤的生长,并伴随着癌细胞增殖和血管生成的减少。这些结果表明,血管生成素在前列腺癌中具有血管生成和癌细胞增殖的双重作用,可能成为药物开发的分子靶点。阻断血管生成素的核转位在治疗前列腺癌方面可能具有抗血管生成和化疗的联合益处。