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Crystallization and preliminary X-ray analysis of the human respiratory syncytial virus nucleocapsid protein

机译:人类呼吸道合胞病毒核衣壳蛋白的结晶和初步X射线分析

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摘要

Human respiratory syncytial virus (HRSV) has a nonsegmented negative-stranded RNA genome which is encapsidated by the HRSV nucleocapsid protein (HRSVN) that is essential for viral replication. HRSV is a common cause of respiratory infection in infants, yet no effective antiviral drugs to combat it are available. Recent data from an experimental anti-HRSV compound, RSV-604, indicate that HRSVN could be the target site for drug action. Here, the expression, purification and preliminary data collection of decameric HRSVN as well as monomeric N-terminally truncated HRSVN mutants are reported. Two different crystal forms of full-length seleno­methionine-labelled HRSVN were obtained that diffracted to 3.6 and ∼5 Å resolution and belonged to space group P212121, with unit-cell parameters a = 133.6, b = 149.9, c = 255.1 Å, and space group P21, with unit-cell parameters a = 175.1, b = 162.6, c = 242.8 Å, β = 90.1°, respectively. For unlabelled HRSVN, only crystals belonging to space group P21 were obtained that diffracted to 3.6 Å. A self-rotation function using data from the orthorhombic crystal form confirmed the presence of tenfold noncrystallographic symmetry, which is in agreement with a reported electron-microscopic reconstruction of HRSVN. Monomeric HRSVN generated by N-terminal truncation was designed to assist in structure determination by reducing the size of the asymmetric unit. Whilst such HRSVN mutants were monomeric in solution and crystallized in a different space group, the size of the asymmetric unit was not reduced.
机译:人类呼吸道合胞病毒(HRSV)具有不分段的负链RNA基因组,该基因组被HRSV核衣壳蛋白(HRSVN)包裹,这对于病毒复制至关重要。 HRSV是婴儿呼吸道感染的常见原因,但尚无有效的抗病毒药物来对抗婴儿。来自实验性抗HRSV化合物RSV-604的最新数据表明HRSVN可能是药物作用的靶位点。在此,报道了十聚体HRSVN以及单体N端截短的HRSVN突变体的表达,纯化和初步数据收集。获得了全长硒代蛋氨酸标记的HRSVN的两种不同晶体形式,衍射至3.6和〜5Å分辨率,属于空间群P212121,其晶胞参数a = 133.6,b = 149.9,c = 255.1,和空间P21组,其晶胞参数分别为a = 175.1,b = 162.6,c = 242.8Å,β= 90.1°。对于未标记的HRSVN,仅获得衍射到3.6的属于空间群P21的晶体。使用来自正交晶体的数据的自旋转函数证实了十倍的非晶体对称性的存在,这与报道的HRSVN的电子显微镜重建相符。通过N端截短生成的单体HRSVN被设计为通过减小不对称单元的大小来帮助确定结构。尽管此类HRSVN突变体在溶液中呈单体形式且在不同的空间群中结晶,但不对称单元的大小并未减少。

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