The tumor cell-secreted matricellular protein WISP1 drives pro-metastatic collagen linearization

肿瘤细胞分泌的基质细胞蛋白 WISP1 驱动促转移胶原线性化

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作者:Hong Jia, Jagadeesh Janjanam, Sharon C Wu, Ruishan Wang, Glendin Pano, Marina Celestine, Ophelie Martinot, Hannah Breeze-Jones, Georgia Clayton, Cecile Garcin, Abbas Shirinifard, Ana Maria Zaske, David Finkelstein, Myriam Labelle

Abstract

Collagen linearization is a hallmark of aggressive tumors and a key pathogenic event that promotes cancer cell invasion and metastasis. Cell-generated mechanical tension has been proposed to contribute to collagen linearization in tumors, but it is unknown whether other mechanisms play prominent roles in this process. Here, we show that the secretome of cancer cells is by itself able to induce collagen linearization independently of cell-generated mechanical forces. Among the tumor cell-secreted factors, we find a key role in this process for the matricellular protein WISP1 (CCN4). Specifically, WISP1 directly binds to type I collagen to promote its linearization in vitro (in the absence of cells) and in vivo in tumors. Consequently, WISP1-induced type I collagen linearization facilitates tumor cell invasion and promotes spontaneous breast cancer metastasis, without significantly affecting gene expression. Furthermore, higher WISP1 expression in tumors from cancer patients correlates with faster progression to metastatic disease and poor prognosis. Altogether, these findings reveal a conceptually novel mechanism whereby pro-metastatic collagen linearization critically depends on a cancer cell-secreted factor.

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