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Pereira, A. L., Pereira, A. J., Maia, A. R. R., Drabek, K., et al. (2006). Mammalian CLASP1 and CLASP2 cooperate to ensure mitotic fidelity by regulating spindle and kinetochore function. Molecular Biology of the Cell, 17(10), 4526 - 4542.
Pereira, A. J., & Maiato, H. (2012). Maturation of the kinetochore-microtubule interface and the meaning of metaphase. Chromosome Research, 20(5), 563 - 577.
Maiato, H., Gomes, A. M., Sousa, F., & Barisic, M. (2017). Mechanisms of chromosome congression during mitosis. Biology, 6(1).
Moutinho-Pereira, S., Debec, A., & Maiato, H. (2009). Microtubule cytoskeleton remodeling by acentriolar microtubule-organizing centers at the entry and exit from mitosis in Drosophila somatic cells. Molecular Biology of the Cell, 20(11), 2796 - 2808.
Barisic, M., Silva E Sousa, R., Tripathy, S. K., Magiera, M. M., et al. (2015). Microtubule detyrosination guides chromosomes during mitosis. Science, 348(6236), 799 - 803.
Drabek, K., Gutiérrez, L., Vermeij, M., Clapes, T., et al. (2012). The Microtubule Plus-End Tracking Protein CLASP2 Is Required for Hematopoiesis and Hematopoietic Stem Cell Maintenance. Cell Reports, 2(4), 781 - 788.
Maiato, H., Sampaio, P., & Sunkel, C. E. (2004). Microtubule-associated proteins and their essential roles during mitosis. International Review of Cytology (Vol. 241, pp. 53 - 153).
Maiato, H. (2016). Miguel Mota (1922–2016)—the kinetochore engine(er). Chromosome Research, 24(2), 281 - 283.
Williams, B., Leung, G., Maiato, H., Wong, A., et al. (2007). Mitch - A rapidly evolving component of the Ndc80 kinetochore complex required for correct chromosome segregation in Drosophila. Journal of Cell Science, 120(20), 3522 - 3533.
Maiato, H. (2010). Mitosis: Wisdom, knowledge, and information. Cellular and Molecular Life Sciences, 67(13), 2141 - 2143.
Maia, A. R. R., Zhu, X., Miller, P., Gu, G., et al. (2013). Modulation of Golgi-associated microtubule nucleation throughout the cell cycle. Cytoskeleton, 70(1), 32 - 43.
Maiato, H., & Logarinho, E. (2011). Motor-dependent and -independent roles of CENP-E at kinetochores: The cautionary tale of UA62784. Chemistry and Biology, 18(6), 679 - 680.
Maffini, S., Maia, A. R. R., Manning, A. L., Maliga, Z., et al. (2009). Motor-Independent Targeting of CLASPs to Kinetochores by CENP-E Promotes Microtubule Turnover and Poleward Flux. Current Biology, 19(18), 1566 - 1572.

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