Microtubule minus-end regulation at spindle poles by an ASPM–katanin complex

被引:0
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作者
Kai Jiang
Lenka Rezabkova
Shasha Hua
Qingyang Liu
Guido Capitani
A. F. Maarten Altelaar
Albert J. R. Heck
Richard A. Kammerer
Michel O. Steinmetz
Anna Akhmanova
机构
[1] Cell Biology,Department of Biology
[2] Faculty of Science,Division of Biology and Chemistry
[3] Utrecht University,undefined
[4] Laboratory of Biomolecular Research,undefined
[5] Paul Scherrer Institut,undefined
[6] Biomolecular Mass Spectrometry and Proteomics,undefined
[7] Bijvoet Center for Biomolecular Research,undefined
[8] Utrecht Institute for Pharmaceutical Sciences and The Netherlands Proteomics Centre,undefined
[9] Utrecht University,undefined
来源
Nature Cell Biology | 2017年 / 19卷
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摘要
ASPM (known as Asp in fly and ASPM-1 in worm) is a microcephaly-associated protein family that regulates spindle architecture, but the underlying mechanism is poorly understood. Here, we show that ASPM forms a complex with another protein linked to microcephaly, the microtubule-severing ATPase katanin. ASPM and katanin localize to spindle poles in a mutually dependent manner and regulate spindle flux. X-ray crystallography revealed that the heterodimer formed by the N- and C-terminal domains of the katanin subunits p60 and p80, respectively, binds conserved motifs in ASPM. Reconstitution experiments demonstrated that ASPM autonomously tracks growing microtubule minus ends and inhibits their growth, while katanin decorates and bends both ends of dynamic microtubules and potentiates the minus-end blocking activity of ASPM. ASPM also binds along microtubules, recruits katanin and promotes katanin-mediated severing of dynamic microtubules. We propose that the ASPM–katanin complex controls microtubule disassembly at spindle poles and that misregulation of this process can lead to microcephaly.
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页码:480 / 492
页数:12
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