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Effect of coat protein mutations in bacteriophage fd studied by sedimentation analysis

机译:沉淀分析研究外壳蛋白突变对噬菌体fd的影响

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摘要

(a) Bacteriophage fd is a filamentous virus that has previously been well characterized. (b) Earlier work using point mutagenesis indicated that a lysine residue at position 48 in the major coat protein plays a crucial role in interacting with the DNA and governing the assembly into an intact virion. (c) In this study the sedimentation properties (sedimentation velocity and equilibrium) of wild-type fd and two mutants substituted at lysine-48 (K48Q and K48A) were compared. (d) Both mutants are similar to each other [Mr ≃ (19.5 ± 1.5) × 106] but somewhat bigger than the wild-type [Mr ≃ (15.1 ± 1.5) × 106]. The value for the wild-type is consistent with earlier published values. (e) By combining these data with sedimentation coefficient data, it is possible to compare the contour lengths and relative flexibilities of the mutants with those of the wild-type virion. (f) The mutants are shown hydrodynamically to have larger contour lengths (as also observed by electron microscopy): the ∼20% difference in values obtained assuming rigid particle hydrodynamics with those obtained from electron microscopy is strongly suggestive of some difference in flexibility between the wild-type and mutants.
机译:(a)噬菌体fd是一种丝状病毒,以前已被很好地鉴定。 (b)早期使用点诱变的工作表明,主要外壳蛋白中第48位的赖氨酸残基在与DNA相互作用和控制组装成完整病毒体中起着至关重要的作用。 (c)在这项研究中,比较了野生型fd和两个被赖氨酸48取代的突变体(K48Q和K48A)的沉降特性(沉降速度和平衡)。 (d)两个突变体彼此相似[Mr≃(19.5±1.5)×10 6 ],但比野生型[Mr≃(15.1±1.5)×10 ]大一些6 ]。野生型的值与早期发布的值一致。 (e)通过将这些数据与沉降系数数据结合起来,可以将突变体与野生型病毒体的轮廓长度和相对柔韧性进行比较。 (f)突变体在流体力学上显示出更大的轮廓长度(也可以通过电子显微镜观察到):假定刚性颗粒的流体动力学与通过电子显微镜获得的值具有大约20%的差异,这强烈暗示了两者之间的柔性差异。野生型和突变体。

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