Structural basis for the assembly of the mitotic motor Kinesin-5 into bipolar tetramers

Author:

Scholey Jessica E1,Nithianantham Stanley1,Scholey Jonathan M1,Al-Bassam Jawdat1

Affiliation:

1. Department of Molecular and Cellular Biology, University of California, Davis, Davis, United States

Abstract

Chromosome segregation during mitosis depends upon Kinesin-5 motors, which display a conserved, bipolar homotetrameric organization consisting of two motor dimers at opposite ends of a central rod. Kinesin-5 motors crosslink adjacent microtubules to drive or constrain their sliding apart, but the structural basis of their organization is unknown. In this study, we report the atomic structure of the bipolar assembly (BASS) domain that directs four Kinesin-5 subunits to form a bipolar minifilament. BASS is a novel 26-nm four-helix bundle, consisting of two anti-parallel coiled-coils at its center, stabilized by alternating hydrophobic and ionic four-helical interfaces, which based on mutagenesis experiments, are critical for tetramerization. Strikingly, N-terminal BASS helices bend as they emerge from the central bundle, swapping partner helices, to form dimeric parallel coiled-coils at both ends, which are offset by 90°. We propose that BASS is a mechanically stable, plectonemically-coiled junction, transmitting forces between Kinesin-5 motor dimers during microtubule sliding.

Funder

National Institutes of Health

University of California Cancer Coordinating committee

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference48 articles.

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4. 9-Angstrom structure of a microtubule-bound mitotic motor;Bodey;Journal of Molecular Biology,2009

5. Kinesin-5-dependent poleward flux and spindle length control in Drosophila embryo mitosis;Brust-Mascher;Molecular Biology of the Cell,2009

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