Macrophages promote matrix protrusive and invasive function of breast cancer cells via MIP-1β dependent upregulation ofMYO3Agene in breast cancer cells

肿瘤微环境 癌症研究 转移 癌细胞 生物 乳腺癌 癌症 间质细胞 遗传学 肿瘤细胞
作者
Khemraj Singh Baghel,Brij Nath Tewari,Richa Shrivastava,Showkat Ahmad Malik,Mehraju Din Lone,Nem Kumar Jain,Chakrapani Tripathi,Ranjana Kanchan,Sameer Dixit,Kavita Singh,Kalyan Mitra,Mahendra Pal Singh Negi,Mukesh Srivastava,Sanjeev Misra,Madan Lal Brahma Bhatt,Smrati Bhadauria
出处
期刊:OncoImmunology [Informa]
卷期号:5 (7): e1196299-e1196299 被引量:35
标识
DOI:10.1080/2162402x.2016.1196299
摘要

The potential of a tumor cell to metastasize profoundly depends on its microenvironment, or "niche" interactions with local components. Tumor-associated-macrophages (TAMs) are the most abundant subpopulation of tumor stroma and represent a key component of tumor microenvironment. The dynamic interaction of cancer cells with neighboring TAMs actively drive cancer progression and metastatic transformation through intercellular signaling networks that need better elucidation. Thus, current study was planned for discerning paracrine communication networks operational between TAMs, and breast cancer cells with special reference to cancer cell invasion and dissemination to distant sites. Here, we report role of MIP-1β in enhancing invasive potential of metastatic breast cancer MDA-MB-231 and MDA-MB-468 cells. In addition, the poorly metastatic MCF-7 cells were also rendered invasive by MIP-1β. The MIP-1β-driven cancer cell invasion was dependent on upregulated expression levels of MYO3A gene, which encodes an unconventional myosin super-family protein harboring a kinase domain. Ex ovo study employing Chick-embryo-model and in vivo Syngenic 4T1/BALB/c mice-model further corroborated aforementioned in vitro findings, thereby substantiating their physiological relevance. Concordantly, human breast cancer specimen exhibited significant association between mRNA expression levels of MIP-1β and MYO3A. Both, MIP-1β and MYO3A exhibited positive correlation with MMP9, an established molecular determinant of cancer cell invasion. Higher expression of these genes correlated with poor survival of breast cancer patients. Collectively, these results point toward so far undisclosed MIP-1β/MYO3A axis being operational during metastasis, wherein macrophage-derived MIP-1β potentiated cancer cell invasion and metastasis via up regulation of MYO3A gene within cancer cells. Our study exposes opportunities for devising potential anti-metastatic strategies for efficient clinical management of breast cancer.
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