Shire S J, McKay P, Leung D W, Cachianes G J, Jackson E, Wood W I, Raghavendra K, Khairallah L, Schuster T M
Department of Pharmaceutical Research and Development, Genetech, Inc., South San Francisco, California 94080.
Biochemistry. 1990 May 29;29(21):5119-26. doi: 10.1021/bi00473a017.
Recombinant DNA derived tobacco mosaic virus (vulgare strain) coat protein (r-TMVP) was obtained by cloning and expression in Escherichia coli and was purified by column chromatography, self-assembly polymerization, and precipitation. SDS-PAGE, amino terminal sequencing, and immunoblotting with polyclonal antibodies raised against TMVP confirmed the identify and purity of the recombinant protein. Isoelectric focusing in 8 M urea and fast atom bombardment mass spectrometry demonstrated that the r-TMVP is not acetylated at the amino terminus, unlike the wild-type protein isolated from the tobacco plant derived virus. The characterization of r-TMVP with regard to its self-assembly properties revealed reversible endothermic polymerization as studied by analytical ultracentrifugation, circular dichroism, and electron microscopy. However, the details of the assembly process differed from those of the wild-type protein. At neutral pH, low ionic strength, and 20 degrees C, TMVP forms a 20S two-turn helical rod that acts as a nucleus for further assembly with RNA and additional TMVP to form TMV. Under more acidic conditions, this 20S structure also acts as a nucleus for protein self-assembly to form viruslike RNA-free rods. The r-TMVP that is not acetylated carries an extra positive charge at the amino terminus and does not appear to form the 20S nucleus. Instead, it forms a 28S four-layer structure, which resembles in size and structure the dimer of the bilayer disk formed by the wild-type protein at pH 8.0, high ionic strength, and 20 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)
通过在大肠杆菌中克隆和表达获得了重组DNA衍生的烟草花叶病毒(普通株系)外壳蛋白(r-TMVP),并通过柱色谱、自组装聚合和沉淀进行纯化。SDS-PAGE、氨基末端测序以及用针对TMVP产生的多克隆抗体进行免疫印迹证实了重组蛋白的身份和纯度。在8M尿素中进行等电聚焦和快原子轰击质谱分析表明,与从烟草植物衍生病毒中分离的野生型蛋白不同,r-TMVP在氨基末端未被乙酰化。对r-TMVP自组装特性的表征显示,通过分析超速离心、圆二色性和电子显微镜研究,其发生可逆的吸热聚合。然而,组装过程的细节与野生型蛋白不同。在中性pH、低离子强度和20℃条件下,TMVP形成一个20S的两圈螺旋杆,作为与RNA和额外TMVP进一步组装形成烟草花叶病毒的核心。在更酸性条件下,这种20S结构也作为蛋白质自组装形成无RNA病毒样杆的核心。未被乙酰化的r-TMVP在氨基末端带有一个额外的正电荷,似乎不会形成20S核心。相反,它形成一个28S的四层结构,其大小和结构类似于野生型蛋白在pH 8.0、高离子强度和20℃条件下形成的双层盘二聚体。(摘要截短于250字)