Published in

The Company of Biologists, Biology Open, 2017

DOI: 10.1242/bio.023952

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Xenopus laevis Kif18A is a highly processive kinesin required for meiotic spindle integrity

Journal article published in 2017 by Martin M. Möckel ORCID, Andreas Heim, Thomas Tischer, Thomas U. Mayer ORCID
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

The assembly and functionality of the mitotic spindle depends on the coordinated activities of microtubule-associated motor-proteins of the dynein and kinesin superfamily. Our current understanding of the function of motor-proteins is significantly shaped by studies using Xenopus laevis egg extract as its open structure allows complex experimental manipulations hardly feasible in other model systems. Yet, the Kinesin-8 orthologue of human Kif18A has not been described in Xenopus laevis so far. Here, we report the cloning and characterization of Xenopus laevis (Xl) Kif18A. Xenopus Kif18A is expressed during oocyte maturation and its depletion from meiotic egg extract results in severe spindle defects. These defects can be rescued by wildtype Kif18A, but not Kif18A lacking motor-activity or the C-terminus. Single molecule microscopy assays revealed that Xl_Kif18A possesses high processivity, which depends on an additional C-terminal microtubule-binding site. Human tissue culture cells depleted of endogenous Kif18A display mitotic defects, which can be rescued by wildtype, but not tail-less Xl_Kif18A. Thus, Xl_Kif18A is the functional orthologue of human Kif18A whose activity is essential for the correct function of meiotic spindles in Xenopus oocytes.