首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structures of respiratory syncytial virus nucleocapsid protein from two crystal forms: details of potential packing interactions in the native helical form
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Structures of respiratory syncytial virus nucleocapsid protein from two crystal forms: details of potential packing interactions in the native helical form

机译:两种晶体形式的呼吸道合胞病毒核衣壳蛋白的结构:天然螺旋形式潜在的包装相互作用的详细信息

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摘要

Respiratory syncytial virus (RSV) is a frequent cause of respiratory illness in infants, but there is currently no vaccine nor effective drug treatment against this virus. The RSV RNA genome is encapsidated and protected by a nucleocapsid protein; this RNA–nucleocapsid complex serves as a template for viral replication. Interest in the nucleocapsid protein has increased owing to its recent identification as the target site for novel anti-RSV compounds. The crystal structure of human respiratory syncytial virus nucleocapsid (HRSVN) was determined to 3.6 Å resolution from two crystal forms belonging to space groups P212121 and P1, with one and four decameric rings per asymmetric unit, respectively. In contrast to a previous structure of HRSVN, the addition of phosphoprotein was not required to obtain diffraction-quality crystals. The HRSVN structures reported here, although similar to the recently published structure, present different molecular packing which may have some biological implications. The positions of the monomers are slightly shifted in the decamer, confirming the adaptability of the ring structure. The details of the inter-ring contacts in one crystal form revealed here suggest a basis for helical packing and that the stabilization of native HRSVN is via mainly ionic interactions.
机译:呼吸道合胞病毒(RSV)是婴儿引起呼吸道疾病的常见原因,但是目前尚无针对该病毒的疫苗或有效的药物治疗方法。 RSV RNA基因组被核衣壳蛋白包裹和保护。这种RNA-核衣壳复合物可作为病毒复制的模板。由于最近将其鉴定为新型抗RSV化合物的靶位点,对核衣壳蛋白的兴趣增加了。从属于空间群P212121和P1的两种晶体形式确定了人类呼吸道合胞病毒核衣壳(HRSVN)的晶体结构,分辨率为3.6Å,每个不对称单元分别具有一个和四个十聚体环。与HRSVN的先前结构相反,不需要磷蛋白即可获得衍射级晶体。此处报道的HRSVN结构虽然与最近发表的结构相似,但呈现出不同的分子堆积,可能具有某些生物学意义。单体的位置在十聚体中略微移位,从而证实了环结构的适应性。这里揭示的一种晶体形式的环间接触的细节为螺旋堆积提供了基础,并且天然HRSVN的稳定化主要是通过离子相互作用。

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