Core histones, synthesized and processed in the cytoplasm, must be chaperoned as they are transported into the nucleus for nucleosome assembly. The importin Kap114 transports H2A-H2B into the yeast nucleus, where RanGTP facilitates histone release. Kap114 and H2A-H2B also bind the histone chaperone Nap1, but how Nap1 and Kap114 cooperate in transport and nucleosome assembly remains unclear. Here, biochemical and structural analyses show that Kap114, H2A-H2B, and a Nap1 dimer (Nap12) associate in the absence and presence of RanGTP to form equimolar complexes. A previous study had shown that RanGTP reduces Kap114's ability to chaperone H2A-H2B, but a new cryo-EM structure of the Nap12â¢H2A-H2Bâ¢Kap114â¢RanGTP complex explains how both Kap114 and Nap12 interact with H2A-H2B, restoring its chaperoning within the assembly while effectively depositing it into nucleosomes. Together, our results suggest that Kap114 and Nap12 provide a sheltered path that facilitates the transfer of H2A-H2B from Kap114 to Nap12, ultimately directing its specific deposition into nucleosomes.
Nap1 and Kap114 co-chaperone H2A-H2B and facilitate targeted histone release in the nucleus.
Nap1 和 Kap114 辅助 H2A-H2B 并促进细胞核内靶向组蛋白的释放
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作者:Fung Ho Yee Joyce, Jiou Jenny, Niesman Ashley B, Bernardes Natalia E, Chook Yuh Min
| 期刊: | Journal of Cell Biology | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 Jan 6; 224(1):e202408193 |
| doi: | 10.1083/jcb.202408193 | 研究方向: | 细胞生物学 |
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