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◇ bioRxiv2026-08-15· cell biology

The centromere localization domain of kinetoplastid kinetochore protein KKT2 recognizes the free N-terminus of histone H3

A. Ciszek, P. Ludzia, G. Marciano, W. Allen, M. Ishii, S. Forsyth, C. W. Wood, C. Redfield, B. Akiyoshi

原始摘要(英文原文)· Original abstract
Kinetochores are multiprotein complexes that drive chromosome segregation in eukaryotes. Kinetoplastids, a group of early-diverging eukaryotes that lack canonical kinetochore components, have a unique set of kinetochore proteins. How their kinetochores are assembled specifically at centromeres in the absence of a centromere-specific histone H3 variant CENP-A remains unknown. Here, we demonstrate that the centromere localization (CL) domain of KKT2 has similarities to a ZZ domain. An invariant aspartate present in histone H3-binding ZZ domains is conserved in the KKT2 CL domain. Using nuclear magnetic resonance (NMR) spectroscopy and isothermal titration calorimetry (ITC), we show that Trypanosoma brucei KKT2 CL binds the N-terminus of histone H3. Strikingly, even mono-methylation of the N-terminal amino group of histone H3 abolishes the binding. Our study raises a possibility that centromere-specific kinetochore assembly in T. brucei is ensured by abundant N-terminal methylations of histone H3 in non-centromeric regions.
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The centromere localization domain of kinetoplastid kinetochore protein KKT2 recognizes the free N-terminus of histone H3 — 科研速览 Science Skim