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Structural basis of chimpanzee APOBEC3H dimerization stabilized by double-stranded RNA

机译:双链RNA稳定黑猩猩Apobec3H二聚化的结构基础

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摘要

APOBEC3H (A3H) is a mammal-specific cytidine deaminase that potently restricts the replication of retroviruses. Primate A3Hs are known to exert key selective pressures against the cross-species transmission of primate immunodeficiency viruses from chimpanzees to humans. Despite recent advances, the molecular structures underlying the functional mechanisms of primate A3Hs have not been fully understood. Here, we reveal the 2.20-angstrom crystal structure of the chimpanzee A3H (cpzA3H) dimer bound to a short double-stranded RNA (dsRNA), which appears to be similar to two recently reported structures of pig-tailedmacaque A3H and human A3H. In the structure, the dsRNA-binding interface forms a specialized architecture with unique features. The analysis of the dsRNA nucleotides in the cpzA3H complex revealed the GC-rich palindrome-like sequence preference for dsRNA interaction, which is largely determined by arginine residues in loop 1. In cells, alterations of the cpzA3H residues critical for the dsRNA interaction severely reduce intracellular protein stability due to proteasomal degradation. This suggests that cpzA3H stability is regulated by the dsRNA-mediated dimerization as well as by unknown cellular machinery through proteasomal degradation in cells. Taken together, these findings highlight unique structural features of primate A3Hs that are important to further understand their cellular functions and regulation.
机译:apobec3h(a3h)是一种哺乳动物特异性胞苷脱氨酶,其效果地限制了逆转录病毒的复制。已知灵长类动物A3Hs对从黑猩猩与人类的灵长类动物免疫缺陷病毒的跨物种传播施加关键选择性压力。尽管最近的进步,但灵长类动物A3Hs功能机制的分子结构尚未得到完全理解。在这里,我们揭示了与短的双链RNA(DSRNA)结合的黑猩猩A3H(CPZA3H)二聚体的2.20埃晶体结构,这似乎类似于最近报告的猪尾性A3H和人A3h的两个结构。在该结构中,DSRNA绑定界面形成具有独特功能的专用架构。 CPZA3H复合物中的DSRNA核苷酸的分析显示了对DSRNA相互作用的富含GC的回文样序列偏好,这主要通过环路1中的精氨酸残基确定。在细胞中,对于DSRNA相互作用至关重要的CPZA3H残基的改变严重减少由于蛋白酶体降解导致的细胞内蛋白质稳定性。这表明CPZA3H稳定性受到DSRNA介导的二聚化以及通过细胞中的蛋白酶体降解的未知细胞机制来调节。总之,这些发现突出了灵长类动物A3HS的独特结构特征,这对于进一步了解其蜂窝功能和调节很重要。

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  • 来源
    《Nucleic Acids Research》 |2018年第19期|共12页
  • 作者单位

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Nagoya Univ Synchrotron Radiat Res Ctr Nagoya Aichi 4648603 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Nagoya Univ Grad Sch Engn Dept Biotechnol Nagoya Aichi 4648603 Japan;

    Nagoya Univ Grad Sch Engn Dept Biotechnol Nagoya Aichi 4648603 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

    Nagoya Univ Grad Sch Engn Dept Biotechnol Nagoya Aichi 4648603 Japan;

    Natl Hosp Org Nagoya Med Ctr Clin Res Ctr Nagoya Aichi 4600001 Japan;

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  • 正文语种 eng
  • 中图分类 生物化学;
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