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Structural insights into mitotic-centrosome assembly

Mohamad, N.; Wong, S.-S.; Majumdar, A.; Wainman, A.; Holland-Kaye, I.; Hubatsch, L.; Novak, Z.; Pozniakovsky, A.; Ruer-Gruss, M.; Haensele, A. F. M.; Caballe, A.; Johnson, S.; Lea, S. M.; Hyman, A.; Raff, J. W.

2025-10-27 cell biology
10.1101/2025.10.03.680336 bioRxiv
Show abstract

Centrosomal material assembles rapidly in mitosis. In Drosophila, the coiled-coil protein Cnn forms a scaffold that recruits PCM clients; in C.elegans, SPD-5 plays an analogous role. Here we show that full-length Cnn and SPD-5 can both form spherical condensates in vitro, but that the interactions driving their assembly into scaffolds inside cells appear to diverge. We show that the Cnn PReM adopts a helical hairpin fold that autoinhibits CM2 binding but that phosphorylation appears to increase hairpin breathing to permit CM2 engagement and robust scaffold assembly. Phospho-blocking mutations prevent PReM-CM2 interactions and scaffold formation, whereas phospho-mimetic substitutions partially restore function. The human homologue CDK5RAP2 contains a CM2 domain that can partially substitute for fly CM2 in vivo and we identify a candidate CDK5RAP2 PReM region that forms macromolecular networks with human CM2 in vitro. By contrast, the putative PReM and CM2 regions of SPD-5 cannot substitute for their equivalent fly domains and they do not interact detectably, suggesting a distinct assembly mechanism in worms despite conserved PLK1-dependent control of PCM growth.

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