EB1 and EB3 regulate microtubule minus end organization and Golgi morphology

Publication date

2017-10-01

Authors

Yang, Chao
Wu, Jingchao
de Heus, Cecilia
Grigoriev, Ilya
Liv, NalanORCID 0000-0003-2654-9117
Yao, Yao
Smal, Ihor
Meijering, Erik
Klumperman, JudithORCID 0000-0003-4835-6228ISNI 0000000396051744
Qi, Robert Z

Editors

Advisors

Supervisors

Document Type

Article

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License

cc_by_nc_sa

Abstract

End-binding proteins (EBs) are the core components of microtubule plus end tracking protein complexes, but it is currently unknown whether they are essential for mammalian microtubule organization. Here, by using CRISPR/Cas9-mediated knockout technology, we generated stable cell lines lacking EB2 and EB3 and the C-terminal partner-binding half of EB1. These cell lines show only mild defects in cell division and microtubule polymerization. However, the length of CAMSAP2-decorated stretches at noncentrosomal microtubule minus ends in these cells is reduced, microtubules are detached from Golgi membranes, and the Golgi complex is more compact. Coorganization of microtubules and Golgi membranes depends on the EB1/EB3-myomegalin complex, which acts as membrane-microtubule tether and counteracts tight clustering of individual Golgi stacks. Disruption of EB1 and EB3 also perturbs cell migration, polarity, and the distribution of focal adhesions. EB1 and EB3 thus affect multiple interphase processes and have a major impact on microtubule minus end organization.

Keywords

Journal Article, Focal Adhesions/genetics, Muscle Proteins/genetics, Humans, Golgi Apparatus/genetics, Microtubule-Associated Proteins/genetics, Cell Polarity/physiology, Intracellular Membranes/metabolism, Cell Movement/physiology, Microtubules/genetics, HeLa Cells, Nuclear Proteins/genetics, Interphase/physiology, Cell Biology, Journal Article, Research Support, Non-U.S. Gov't

Citation

Yang, C, Wu, J, de Heus, C, Grigoriev, I, Liv, N, Yao, Y, Smal, I, Meijering, E, Klumperman, J, Qi, R Z & Akhmanova, A 2017, 'EB1 and EB3 regulate microtubule minus end organization and Golgi morphology', Journal of Cell Biology, vol. 216, no. 10, pp. 3179-3198. https://doi.org/10.1083/jcb.201701024