Taxanes convert regions of perturbed microtubule growth into rescue sites

Publication date

2020-03

Authors

Rai, AnkitISNI 0000000492957298
Liu, Tianyang
Glauser, Simon
Katrukha, Eugene A.ISNI 0000000492896501
Estévez-Gallego, JuanISNI 0000000518165900
Rodríguez-García, RuddiISNI 000000050604794X
Fang, Wei-Shuo
Díaz, J Fernando
Steinmetz, Michel O
Altmann, Karl-Heinz

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Microtubules are polymers of tubulin dimers, and conformational transitions in the microtubule lattice drive microtubule dynamic instability and affect various aspects of microtubule function. The exact nature of these transitions and their modulation by anticancer drugs such as Taxol and epothilone, which can stabilize microtubules but also perturb their growth, are poorly understood. Here, we directly visualize the action of fluorescent Taxol and epothilone derivatives and show that microtubules can transition to a state that triggers cooperative drug binding to form regions with altered lattice conformation. Such regions emerge at growing microtubule ends that are in a pre-catastrophe state, and inhibit microtubule growth and shortening. Electron microscopy and in vitro dynamics data indicate that taxane accumulation zones represent incomplete tubes that can persist, incorporate tubulin dimers and repeatedly induce microtubule rescues. Thus, taxanes modulate the material properties of microtubules by converting destabilized growing microtubule ends into regions resistant to depolymerization.

Keywords

Taverne

Citation

Rai, A, Liu, T, Glauser, S, Katrukha, E A, Estévez-Gallego, J, Rodríguez-García, R, Fang, W-S, Díaz, J F, Steinmetz, M O, Altmann, K-H, Kapitein, L C, Moores, C A & Akhmanova, A 2020, 'Taxanes convert regions of perturbed microtubule growth into rescue sites', Nature Materials, vol. 19, no. 3, pp. 1-11. https://doi.org/10.1038/s41563-019-0546-6