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The nucleosomal surface as a docking station for Kaposi's sarcoma herpesvirus LANA.

机译:核小体表面作为卡波济氏肉瘤疱疹病毒LANA的停靠站。

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Kaposi's sarcoma-associated herpesvirus (KSHV) latency-associated nuclear antigen (LANA) mediates viral genome attachment to mitotic chromosomes. We find that N-terminal LANA docks onto chromosomes by binding nucleosomes through the folded region of histones H2A-H2B. The same LANA residues were required for both H2A-H2B binding and chromosome association. Further, LANA did not bind Xenopus sperm chromatin, which is deficient in H2A-H2B; chromatin binding was rescued after assembly of nucleosomes containing H2A-H2B. We also describe the 2.9-angstrom crystal structure of a nucleosome complexed with the first 23 LANA amino acids. The LANA peptide forms a hairpin that interacts exclusively with an acidic H2A-H2B region that is implicated in the formation of higher order chromatin structure. Our findings present a paradigm for how nucleosomes may serve as binding platforms for viral and cellular proteins and reveal a previously unknown mechanism for KSHV latency.
机译:卡波济氏肉瘤相关疱疹病毒(KSHV)潜伏期相关核抗原(LANA)介导病毒基因组与有丝分裂染色体的附着。我们发现,N末端LANA通过通过组蛋白H2A-H2B的折叠区域结合核小体而对接在染色体上。 H2A-H2B结合和染色体缔合都需要相同的LANA残基。此外,LANA不结合非洲爪蟾精子染色质,后者缺乏H2A-H2B。组装含有H2A-H2B的核小体后,染色质结合得以恢复。我们还描述了与前23个LANA氨基酸复合的核小体的2.9埃晶体结构。 LANA肽形成发夹,该发夹仅与酸性H2A-H2B区相互作用,这与形成更高阶的染色质结构有关。我们的发现为核小体如何充当病毒和细胞蛋白的结合平台提供了范例,并揭示了KSHV潜伏期的未知机制。

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