Popchock Andrew R, Larson Joshua D, Dubrulle Julien, Asbury Charles L, Biggins Sue
Howard Hughes Medical Institute, Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle, WA 98109, USA.
Department of Physiology and Biophysics, University of Washington, Seattle, WA, USA.
bioRxiv. 2023 May 17:2023.01.20.524981. doi: 10.1101/2023.01.20.524981.
Eukaryotic chromosome segregation requires the kinetochore, a megadalton-sized machine that forms on specialized centromeric chromatin containing CENP-A, a histone H3 variant. CENP-A deposition requires a chaperone protein HJURP that targets it to the centromere, but it has remained unclear whether HJURP has additional functions beyond CENP-A targeting and why high AT DNA content, which disfavors nucleosome assembly, is widely conserved at centromeres. To overcome the difficulties of studying nucleosome formation in vivo, we developed a microscopy assay that enables direct observation of de novo centromeric nucleosome recruitment and maintenance with single molecule resolution. Using this assay, we discover that CENP-A can arrive at centromeres without its dedicated centromere-specific chaperone HJURP, but stable incorporation depends on HJURP and additional DNA-binding proteins of the inner kinetochore. We also show that homopolymer AT runs in the yeast centromeres are essential for efficient CENP-A deposition. Together, our findings reveal requirements for stable nucleosome formation and provide a foundation for further studies of the assembly and dynamics of native kinetochore complexes.
真核生物染色体分离需要动粒,这是一种在含有CENP-A(一种组蛋白H3变体)的特殊着丝粒染色质上形成的兆道尔顿大小的机器。CENP-A的沉积需要伴侣蛋白HJURP将其靶向着丝粒,但尚不清楚HJURP除了靶向CENP-A之外是否还有其他功能,以及为什么不利于核小体组装的高AT含量DNA在着丝粒处广泛保守。为了克服在体内研究核小体形成的困难,我们开发了一种显微镜检测方法,能够以单分子分辨率直接观察从头着丝粒核小体的募集和维持。使用这种检测方法,我们发现CENP-A可以在没有其专用的着丝粒特异性伴侣HJURP的情况下到达着丝粒,但稳定整合依赖于HJURP和动粒内部的其他DNA结合蛋白。我们还表明,酵母着丝粒中的同聚物AT序列对于有效的CENP-A沉积至关重要。总之,我们的发现揭示了稳定核小体形成的要求,并为进一步研究天然动粒复合物的组装和动力学提供了基础。