4.7 Article

The crystal structure of drosophila NLP-core provides insight into pentamer formation and histone binding

期刊

STRUCTURE
卷 11, 期 2, 页码 175-186

出版社

CELL PRESS
DOI: 10.1016/S0969-2126(03)00007-8

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chromatin; dNLP; histone chaperone; nucleoplasmin; X-ray crystallography

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The nucleoplasmin-like protein from Drosophila (dNLP) functions as a chaperone for core histones and may remodel chromatin in embryos. We now report the crystal structure of a dNLP-core pentamer at 1.5 Angstrom resolution. The monomer has an eight-stranded, beta barrel topology that is similar to nucleoplasmin (Np). However, a signature beta hairpin is tucked in along the lateral surface of the dNLP-core pentamer, while it extends outward in the Np-core decamer. Drosophila NLP and Np both assemble histone octamers. This process may require each chaperone to form a decamer, which would create symmetric binding sites for the histones. Conformational differences between dNLP and Np may reflect their different oligomeric states, while a conserved, nonpolar subunit interface may allow conformational plasticity during histone binding.

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