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Δευτέρα 26 Νοεμβρίου 2018

Stathmin is required for normal mouse mammary gland development and {Delta}16HER2-driven tumorigenesis

Post-natal development of the mammary gland relies on the maintenance of oriented cell division and apico-basal polarity, both of which are often deregulated in cancer. The microtubule (MT) network contributes to control these processes, however very little is known about the impact of altered MT dynamics in the development of a complex organ and on the role played by MT-interacting proteins such as stathmin. In this study, we report that female stathmin knock-out (STM KO) mice are unable to nurse their litters due to frank impairment of mammary gland development. In mouse mammary epithelial cells, loss of stathmin compromised the trafficking of polarized proteins and the achievement of proper apico-basal polarity. In particular, prolactin receptor internalization and localization was altered in STM KO mammary epithelial cells, leading to decreased protein stability and downmodulation of the Prl/PrlR/STAT5 signaling pathway. Absence of stathmin induced alterations in mitotic spindle orientation, accumulation of mitotic defects, and apoptosis, overall contributing to tissue disorganization and further decreasing the expansion of the mammary epithelial compartment. Loss of stathmin in MMTV-Δ16HER2 transgenic mice decreased the incidence and increased the latency of these very aggressive mammary carcinomas. Collectively, these data identify the essential mammary protein stathmin as pro-tumorigenic and suggest it may serve as a potential therapeutic target in breast cancer.

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