O'Kelly James, Chung Alice, Lemp Nathan, Chumakova Katya, Yin Dong, Wang He-Jing, Said Jonathan, Gui Dorina, Miller Carl W, Karlan Beth Y, Koeffler H Phillip
Division of Hematology/Oncology, Cedars-Sinai Medical Center, UCLA School of Medicine, Los Angeles, CA, USA.
Int J Oncol. 2008 Jul;33(1):59-67.
CCN1 plays diverse roles in cellular proliferation, survival, migration and angiogenesis. We determined the relationship between CCN1 protein expression and clinical factors that are important for the classification of breast cancer. CCN1 contains four functional domains; the contribution of each of the structural domains to the biological properties of CCN1 in breast cancer was investigated. We performed immunohistochemistry for CCN1 on a breast cancer tissue array, and conducted a detailed statistical analysis on the relationship between CCN1 protein expression and clinical factors that are important for the classification of breast cancer. The structure-function relationship was examined using four mutant constructs in which one of the modules (DM1-DM4) had been deleted. MCF-7 breast cancer cells were stably transfected with these constructs and their biological activity was tested in comparison to full-length CCN1. Staining of CCN1 in tumors was positively correlated with AJCC disease stage. A strong association also was found between lymph node involvement and high CCN1 expression in patients with invasive breast cancer; there was a significant increase in the breast cancer expression of CCN1 in patients with positive lymph nodes (P=0.004), and the levels of CCN1 correlated with the number of positive lymph nodes (P=0.0006). Deletion of module 4 rendered CCN1 unable to either bind heparin or associate with the extracellular matrix. Furthermore, MCF-7/DM4 cells demonstrated reduced cell spreading, migration and proliferation, indicating that module 4 of the protein is important for its ability to promote these activities. These findings indicate that CCN1 is involved throughout the clinical progression of breast cancer to an invasive phenotype. The multimodular structure of CCN1 enables it to fulfill multiple functions that may contribute to the different stages of cancer development, raising the prospect that specific regions of CCN1 could be targeted for therapeutic benefit to inhibit particular aspects of malignancy in breast cancer.
CCN1在细胞增殖、存活、迁移和血管生成中发挥着多种作用。我们确定了CCN1蛋白表达与对乳腺癌分类很重要的临床因素之间的关系。CCN1包含四个功能域;研究了每个结构域对CCN1在乳腺癌中的生物学特性的贡献。我们在乳腺癌组织芯片上对CCN1进行了免疫组织化学分析,并对CCN1蛋白表达与对乳腺癌分类很重要的临床因素之间的关系进行了详细的统计分析。使用删除了其中一个模块(DM1-DM4)的四种突变体构建体来研究结构-功能关系。用这些构建体稳定转染MCF-7乳腺癌细胞,并与全长CCN1相比测试其生物学活性。肿瘤中CCN1的染色与美国癌症联合委员会(AJCC)疾病分期呈正相关。在浸润性乳腺癌患者中,还发现淋巴结受累与CCN1高表达之间存在密切关联;淋巴结阳性患者的乳腺癌中CCN1表达显著增加(P=0.004),且CCN1水平与阳性淋巴结数量相关(P=0.0006)。模块4的缺失使CCN1无法结合肝素或与细胞外基质结合。此外,MCF-7/DM4细胞表现出细胞铺展、迁移和增殖减少,表明该蛋白的模块4对其促进这些活动的能力很重要。这些发现表明CCN1参与了乳腺癌向浸润性表型的整个临床进展过程。CCN1的多模块结构使其能够履行多种功能,这些功能可能有助于癌症发展的不同阶段,这增加了针对CCN1的特定区域进行治疗以抑制乳腺癌恶性肿瘤特定方面的前景。