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Takenoshita, Y.

Publications and source records attributed to Takenoshita, Y..

2 recordsLinked to original sources

Molecular details and phospho-regulation of the CENP-T-Mis12 complex interaction during mitosis in DT40 cells

To establish bi-polar attachments of microtubules to sister chromatids, an inner kinetochore subcomplex, the constitutive centromere-associated network (CCAN), is assembled on centromeric chromatin and recruits the microtubule-binding subcomplex called the KMN network. Although it is important to characterize the interaction between CCAN and KMN, it is difficult to evaluate the significance of each interaction in cells, since CCAN proteins CENP-C and CENP-T independently bind to the Mis12 complex (Mis12C) of KMN. Here, we demonstrate molecular details of the CENP-T-Mis12C interaction using chicken DT40 cells lacking CENP-C-Mis12C interaction. Based on AlphaFold2 predictions, we identified two binding surfaces for the CENP-T-Mis12C interaction, demonstrating that each surface is critical for Mis12C recruitment and cell viability. This interaction via two interaction surfaces is cooperatively regulated by dual phosphorylation of Dsn1 (a Mis12C component) and CENP-T, ensuring robust CENP-T-Mis12C interaction and proper mitotic progression. These findings deepen our understanding of kinetochores assembly in cells.

cell biology↗

CENP-C-Mis12 complex establishes a regulatory loop through Aurora B for chromosome segregation

Establishing the correct kinetochore-microtubule attachment is crucial for faithful chromosome segregation. The kinetochore has various regulatory mechanisms for establishing correct bipolar attachment. However, how the regulations are coupled is not fully understood. Here, we demonstrate a regulatory loop between the kinetochore protein CENP-C and Aurora B kinase, which is critical for the error correction of kinetochore-microtubule attachment. This regulatory loop is mediated through the binding of CENP-C to the outer kinetochore Mis12 complex (Mis12C). Although the Mis12C binding region of CENP-C is dispensable for mouse development and proliferation in human RPE-1 cells, those cells lacking this region display increased mitotic defects. The CENP-C-Mis12C interaction facilitates the centromeric recruitment of Aurora B and the mitotic error correction in human cells. Given that Aurora B reinforces the CENP-C-Mis12C interaction, our findings reveal a positive regulatory loop between Aurora B recruitment and the CENP-C-Mis12C interaction, which ensures chromosome bi-orientation for accurate chromosome segregation.

cell biology↗