MICAL3 flavoprotein monooxygenase forms a complex with centralspindlin and regulates cytokinesis

Publication date

2016-08-15

Authors

Liu, Q.ISNI 0000000506026196
Liu, FanISNI 0000000506024414
Yu, Ka LouISNI 0000000493228038
Tas, Roderick P.ISNI 0000000493299741
Grigoriev, IlyaISNI 0000000492860971
Remmelzwaal, Sanne
Afonso Serra Marques, A.M.ISNI 0000000506826062
Kapitein, Lukas CISNI 0000000389218112
Heck, A.J.R.ORCID 0000-0002-2405-4404ISNI 0000000393921118
Akhmanova, AnnaISNI 0000000390996464

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Abstract

During cytokinesis, the antiparallel array of microtubules forming the central spindle organizes the midbody, a structure that anchors the ingressed cleavage furrow and guides the assembly of abscission machinery. Here, we identified a role for the flavoprotein monooxygenase MICAL3, an actin disassembly factor, in organizing midbody-associated protein complexes. By combining cell biological assays with cross-linking mass spectrometry, we show that MICAL3 is recruited to the central spindle and the midbody through a direct interaction with the centralspindlin component MKLP1. Knockout of MICAL3 leads to an increased frequency of cytokinetic failure and a delayed abscission. In a mechanism independent of its enzymatic activity, MICAL3 targets the adaptor protein ELKS and Rab8A-positive vesicles to the midbody, and the depletion of ELKS and Rab8A also leads to cytokinesis defects. We propose that MICAL3 acts as a midbody-associated scaffold for vesicle targeting, which promotes maturation of the intercellular bridge and abscission.

Keywords

Cytokinesis, actin, microtubule, protein cross-linking, mass spectrometry (MS), midbody, centralspindlin, vesicle transport, flavoprotein monooxygenase

Citation

Liu, Q, Liu, F, Yu, K L, Tas, R, Grigoriev, I, Remmelzwaal, S, Marques, A, Kapitein, L C, Heck, A J R & Akhmanova, A 2016, 'MICAL3 flavoprotein monooxygenase forms a complex with centralspindlin and regulates cytokinesis', Journal of Biological Chemistry. https://doi.org/10.1074/jbc.M116.748186