A new perspective on microtubule dynamics: destruction by molecular motors and self-repair
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Publisher
Cellule MathDoc/CEDRAM
Subject
Ocean Engineering,Safety, Risk, Reliability and Quality
Link
https://comptes-rendus.academie-sciences.fr/biologies/item/10.5802/crbiol.59.pdf
Reference14 articles.
1. [1] Schaedel, L.; Triclin, S.; Chrétien, D.; Abrieu, A.; Aumeier, C.; Gaillard, J.; Blanchoin, L.; Théry, M.; John, K. Lattice defects induce microtubule self-renewal, Nat. Phys., Volume 15 (2019), pp. 830-838
2. [2] Triclin, S.; Inoue, D.; Gaillard, J.; Htet, Z. M.; DeSantis, M. E.; Portran, D.; Derivery, E.; Aumeier, C.; Schaedel, L.; John, K.; Leterrier, C.; Reck-Peterson, S. L.; Blanchoin, L.; Théry, M. Self-repair protects microtubules from destruction by molecular motors, Nat. Mater., Volume 20 (2021), pp. 883-891
3. [3] Drummond, D. R. Regulation of microtubule dynamics by kinesins, Semin. Cell Dev. Biol., Volume 22 (2011), pp. 927-934
4. [4] Howard, J.; Hudspeth, A. J.; Vale, R. D. Movement of microtubules by single kinesin molecules, Nature, Volume 342 (1989), pp. 154-158
5. [5] Vale, R. D.; Funatsu, T.; Pierce, D. W.; Romberg, L.; Harada, Y.; Yanagida, T. Direct observation of single kinesin molecules moving along microtubules, Nature, Volume 380 (1996), pp. 451-453
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