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Martinez-Illescas, N. G.

Publications and source records attributed to Martinez-Illescas, N. G..

2 recordsLinked to original sources

miR-203 drives breast cancer cell differentiation

A hallmark of many malignant tumors is dedifferentiated (immature) cells bearing slight or no resemblance to the normal cells from which the cancer originated. Tumor dedifferentiated cells exhibit a higher capacity to survive to chemo and radiotherapies and have the ability to incite tumor relapse. Inducing cancer cell differentiation would abolish their self-renewal and invasive capacity and could be combined with the current standard of care, especially in poorly differentiated and aggressive tumors (with worst prognosis). However, differentiation therapy is still in its early stages and the intrinsic complexity of solid tumor heterogeneity demands innovative approaches in order to be efficiently translated into the clinic. We demonstrate here that microRNA 203, a potent driver of differentiation in pluripotent stem cells (ESCs and iPSCs), promotes the differentiation of mammary gland tumor cells. Combining mouse in vivo approaches and both mouse and human-derived tridimensional organoid cultures, we report here that miR-203 influences the self-renewal capacity, plasticity and differentiation potential of breast cancer cells, and prevents tumor cell growth in vivo. Our work sheds light on differentiation-based antitumor therapies and offers miR-203 as a promising tool for directly confronting the tumor-maintaining and regeneration capability of cancer cells.

cancer biology↗

Size-Dependent Expression of the Fission Yeast Cdc13 Cyclin is Conferred by Translational Regulation

The major fission yeast cyclin, Cdc13, has been shown to increase in concentration in correlation with cell size, and has been proposed to thereby regulate cell size at division. However, the mechanism of its cell-size regulation has been unknown. Here, we show that Cdc13 is regulated post-transcriptionally. Its transcript is not expressed in a size-dependent manner, rather a size-dependent concentration of protein is expressed from a size-independent concentration of mRNA. Moreover, we show that the expression of Cdc13 is, in fact, size dependent, as opposed to simply size-correlated due to time-dependent expression. We identify a 20-amino-acid motif, which includes the APC D-box degron, as necessary and sufficient for size-dependent expression, which allowed us to construct a size-independent allele of cdc13. Using this allele, we show that size-dependent expression of Cdc13 is not required for size control in fission yeast cells.

cell biology↗