首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Kaposi Sarcoma Herpesvirus Latency-associated Nuclear Antigen DNA Binding Domain Dorsal Positive Electrostatic Patch Facilitates DNA Replication and Episome Persistence
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The Kaposi Sarcoma Herpesvirus Latency-associated Nuclear Antigen DNA Binding Domain Dorsal Positive Electrostatic Patch Facilitates DNA Replication and Episome Persistence

机译:卡波西氏肉瘤疱疹病毒潜伏期相关的核抗原DNA结合域背面阳性静电补丁促进DNA复制和附加体持久性。

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摘要

Kaposi sarcoma-associated herpesvirus (KSHV) has a causative role in several human malignancies. KSHV latency-associated nuclear antigen (LANA) mediates persistence of viral episomes in latently infected cells. LANA mediates KSHV DNA replication and segregates episomes to progeny nuclei. The structure of the LANA DNA binding domain was recently solved, revealing a positive electrostatic patch opposite the DNA binding surface, which is the site of BET protein binding. Here we investigate the functional role of the positive patch in LANA-mediated episome persistence. As expected, LANA mutants with alanine or glutamate substitutions in the central, peripheral, or lateral portions of the positive patch maintained the ability to bind DNA by EMSA. However, all of the substitution mutants were deficient for LANA DNA replication and episome maintenance. Mutation of the peripheral region generated the largest deficiencies. Despite these deficiencies, all positive patch mutants concentrated to dots along mitotic chromosomes in cells containing episomes, similar to LANA. The central and peripheral mutants, but not the lateral mutants, were reduced for BET protein interaction as assessed by co-immunoprecipitation. However, defects in BET protein binding were independent of episome maintenance function. Overall, the reductions in episome maintenance closely correlated with DNA replication deficiencies, suggesting that the replication defects account for the reduced episome persistence. Therefore, the electrostatic patch exerts a key role in LANA-mediated DNA replication and episome persistence and may act through a host cell partner(s) other than a BET protein or by inducing specific structures or complexes.
机译:卡波西氏肉瘤相关疱疹病毒(KSHV)在几种人类恶性肿瘤中具有致病作用。 KSHV潜伏期相关的核抗原(LANA)介导病毒附加体在潜伏感染细胞中的持久性。 LANA介导KSHV DNA复制,并将附加体分离到子代核。最近解决了LANA DNA结合域的结构,揭示了与DNA结合表面相对的正性静电斑,该表面是BET蛋白结合的位点。在这里,我们研究了在LANA介导的附加体持久性中阳性补丁的功能作用。如所期望的,在阳性补丁的中央,外围或侧面部分具有丙氨酸或谷氨酸取代的LANA突变体保持了通过EMSA结合DNA的能力。但是,所有替代突变体都缺乏LANA DNA复制和附加体维持。外围区域的突变产生最大的缺陷。尽管存在这些不足,但所有阳性补丁突变体都在包含附加体的细胞中沿着有丝分裂染色体沿点状染色体集中到点,类似于LANA。如通过共免疫沉淀法所评估的,中心和外围突变体而不是横向突变体的BET蛋白相互作用降低。但是,BET蛋白结合中的缺陷与附加体维持功能无关。总体而言,附加体维持的减少与DNA复制缺陷密切相关,这表明复制缺陷导致附加体持久性降低。因此,静电贴片在LANA介导的DNA复制和附加体持久性中起关键作用,并可能通过BET蛋白以外的宿主细胞伴侣或通过诱导特定结构或复合物起作用。

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