首页> 美国卫生研究院文献>Journal of Virology >Note: Effects of Substituting Granulin or a Granulin-Polyhedrin Chimera for Polyhedrin on Virion Occlusion and Polyhedral Morphology in Autographa californica Multinucleocapsid Nuclear Polyhedrosis Virus
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Note: Effects of Substituting Granulin or a Granulin-Polyhedrin Chimera for Polyhedrin on Virion Occlusion and Polyhedral Morphology in Autographa californica Multinucleocapsid Nuclear Polyhedrosis Virus

机译:注意:用颗粒蛋白或颗粒蛋白-多面体嵌合体代替多角体蛋白对加州苜蓿根结线虫多核衣壳核多角体病毒的病毒闭塞和多面体形态的影响

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摘要

Substitution of granulin from the Trichoplusia ni granulosis virus (TnGV) for polyhedrin of the Autographa californica multinucleocapsid nuclear polyhedrosis virus (AcMNPV) yielded a few very large (2 to 5 μm) cuboidal inclusions in the cytoplasm and nucleus of infected cells. These polyhedra lacked the beveled edges characteristic of wild-type AcMNPV polyhedra, contained fractures, and occluded few virions. Placing a nuclear localization signal (KRKK) in granulin directed more granulin to the nucleus and resulted in more structurally uniform cuboidal inclusions in which no virions were observed. A granulin-polyhedrin chimera produced tetrahedral occlusions with more virions than granulin inclusions but many fewer than wild-type polyhedra. Despite the unusual structure of the granulin and granulin-polyhedrin inclusions, they interacted with AcMNPV p10 fibrillar structures and electron-dense spacers that are precursors of the polyhedral calyx. The change in inclusion shape obtained with the granulin-polyhedrin chimera demonstrates that the primary amino acid sequence affects occlusion body shape, but the large cuboidal inclusions formed by granulin indicate that the amino acid sequence is not the only determinant. The failure of granulin or the granulin-polyhedrin chimera to properly occlude AcMNPV virions suggests that specific interactions occur between polyhedrin and other viral proteins which facilitate normal virion occlusion and occlusion body assembly and shape in baculoviruses.
机译:用Trichoplusia ni肉芽肿病毒(TnGV)的颗粒蛋白代替加利福尼亚州产的Autographa加州多核衣壳核多角体病毒(AcMNPV)的多角体蛋白,在感染细胞的细胞质和细胞核中产生了一些非常大的立方体包裹体(2至5μm)。这些多面体缺少野生型AcMNPV多面体的斜角边缘,包含裂缝并且几乎没有毒粒。在颗粒蛋白中放置核定位信号(KRKK)将更多颗粒蛋白引导至细胞核,并导致结构更均匀的立方体包裹体,其中未观察到病毒体。颗粒蛋白多面体嵌合体产生的四面体咬合具有比颗粒蛋白内含物更多的病毒体,但比野生型多面体少。尽管颗粒蛋白和颗粒蛋白-多面体夹杂物具有不同寻常的结构,但它们仍与AcMNPV p10的原纤维结构和作为多面体花萼的前体的电子致密间隔子相互作用。颗粒蛋白-多面体嵌合体获得的内含物形状的变化表明,主要氨基酸序列会影响咬合体的形状,但是由颗粒蛋白形成的较大的立方内含物表明氨基酸序列不是唯一的决定因素。颗粒蛋白或颗粒蛋白-多角体嵌合体未能正确地阻塞AcMNPV病毒颗粒,这表明多角体蛋白与其他病毒蛋白之间发生特异性相互作用,从而促进杆状病毒的正常病毒体闭合和闭合体组装和形状。

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