Merck
CN
  • Mechano-induced cell metabolism promotes microtubule glutamylation to force metastasis.

Mechano-induced cell metabolism promotes microtubule glutamylation to force metastasis.

Cell metabolism (2021-06-09)
Stéphanie Torrino, Eloise M Grasset, Stephane Audebert, Ilyes Belhadj, Caroline Lacoux, Meagan Haynes, Sabrina Pisano, Sophie Abélanet, Frederic Brau, Stephen Y Chan, Bernard Mari, William M Oldham, Andrew J Ewald, Thomas Bertero
摘要

Mechanical signals from the tumor microenvironment modulate cell mechanics and influence cell metabolism to promote cancer aggressiveness. Cells withstand external forces by adjusting the stiffness of their cytoskeleton. Microtubules (MTs) act as compression-bearing elements. Yet how cancer cells regulate MT dynamic in response to the locally constrained environment has remained unclear. Using breast cancer as a model of a disease in which mechanical signaling promotes disease progression, we show that matrix stiffening rewires glutamine metabolism to promote MT glutamylation and force MT stabilization, thereby promoting cell invasion. Pharmacologic inhibition of glutamine metabolism decreased MT glutamylation and affected their mechanical stabilization. Similarly, decreased MT glutamylation by overexpressing tubulin mutants lacking glutamylation site(s) decreased MT stability, thereby hampering cancer aggressiveness in vitro and in vivo. Together, our results decipher part of the enigmatic tubulin code that coordinates the fine-tunable properties of MT and link cell metabolism to MT dynamics and cancer aggressiveness.

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Sigma-Aldrich
G 418 二硫酸盐, powder, BioReagent, suitable for cell culture
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BPTES, ≥95% (HPLC)
Sigma-Aldrich
诺考达唑, Inhibitor of mitosis.
Sigma-Aldrich
抗-微管蛋白 α 兔抗, affinity isolated antibody
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嘌呤霉素,二盐酸盐,经细胞培养测试, Puromycin, CAS 58-58-2, is a protein synthesis inhibitor that causes premature release of nascent polypeptide chains.