bioRxiv · 10.1101/754457
Architecture of the Mto1/2 microtubule nucleation complex
Abstract
Proteins that contain a Centrosomin Motif 1 (CM1) domain are key regulators of{gamma} -tubulin complex-dependent microtubule nucleation, but how they are organized in higher-order structures is largely unknown. Mto1[bonsai], a truncated functional version of the Schizosaccharomyces pombe CM1 protein Mto1, interacts with Mto2 to form an Mto1/2[bonsai] complex in vivo. Here we show that recombinant Mto1/2[bonsai] forms higher-order multimers in vitro and that Mto2 alone can also multimerize. We demonstrate that Mto2 multimerization involves two separate homodimerization domains, the near N-terminal domain (NND) and the twin-cysteine domain (TCD). The TCD crystal structure reveals a stable homodimer with a novel dimerization interface. While the NND homodimer is intrinsically less stable, using crosslinking mass spectrometry we show that within Mto1/2[bonsai] complexes, it can be reinforced by additional cooperative interactions involving both Mto2 and Mto1[bonsai]. We propose a model for Mto1/2[bonsai] complex architecture that is supported by functional analysis of mutants in vivo.
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Thakur, H. C., Lynch, E. M., Borek, W. E., Bao, X. X., Ashraf, S., Zou, J., Rappsilber, J., Cook, A. G., Sawin, K. E.. 2019-08-31. Architecture of the Mto1/2 microtubule nucleation complex. https://doi.org/10.1101/754457
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