Molecular Pathway of Microtubule Organization at the Golgi Apparatus

Publication date

2016-10-10

Authors

Wu, J.
de Heus, Cecilia
Liu, Q.ISNI 0000000506026196
Bouchet, Benjamin P.ISNI 0000000436377512
Noordstra, I.ISNI 0000000436412437
Jiang, KaiISNI 0000000506013889
Hua, ShashaISNI 0000000523803268
Martin, Melissa JISNI 000000050602529X
Yang, ChaoISNI 0000000506297586
Grigoriev, IlyaISNI 0000000492860971

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Abstract

The Golgi apparatus controls the formation of non-centrosomal microtubule arrays important for Golgi organization, polarized transport, cell motility, and cell differentiation. Here, we show that CAMSAP2 stabilizes and attaches microtubule minus ends to the Golgi through a complex of AKAP450 and myomegalin. CLASPs stabilize CAMSAP2-decorated microtubules but are not required for their Golgi tethering. AKAP450 is also essential for Golgi microtubule nucleation, and myomegalin and CDK5RAP2 but not CAMSAP2 contribute to this function. In the absence of centrosomes, AKAP450- and CAMSAP2-dependent pathways of microtubule minus-end organization become dominant, and the presence of at least one of them is needed to maintain microtubule density. Strikingly, a compact Golgi can be assembled in the absence of both centrosomal and Golgi microtubules. However, CAMSAP2- and AKAP450-dependent Golgi microtubules facilitate Golgi reorientation and cell invasion in a 3D matrix. We propose that Golgi-anchored microtubules are important for polarized cell movement but not for coalescence of Golgi membranes.

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Citation

Wu, J, de Heus, C, Liu, Q, Bouchet, B P, Noordstra, I, Jiang, K, Hua, S, Martin, M, Yang, C, Grigoriev, I, Katrukha, E A, Altelaar, A F M, Hoogenraad, C C, Qi, R Z, Klumperman, J & Akhmanova, A 2016, 'Molecular Pathway of Microtubule Organization at the Golgi Apparatus', Developmental Cell, vol. 39, no. 1, pp. 44–60. https://doi.org/10.1016/j.devcel.2016.08.009