Burnette W N, Mitchell W M
J Virol. 1978 May;26(2):522-31. doi: 10.1128/JVI.26.2.522-531.1978.
The major internal structural protein (p30(gag)) of the Moloney leukemia virus and the endogenous Y-1 murine oncornavirus was examined for biochemical and biophysical manifestations of interstrain antigenic variation. Although the two viral proteins share murine group-specific antigenic determinants, the Y-1 virus p30 appeared to have both a lower relative number of such determinants and a decreased affinity at the cross-reactive sites for Moloney virus p30 monospecific antibodies. Further, immunological analysis indicated the presence of unique antigenic sites on the Moloney virus p30 not shared by the analogous Y-1 virus molecule. The two polypeptides copurified and had similar isoelectric points (pH 6.2 to 6.3) and sedimentation coefficients (2.47S). However, equilibrium sedimentation yielded a significant mass difference between the two proteins, 28,300 +/- 600 and 31,000 +/- 300 daltons for the Moloney and Y-1 virus molecules, respectively. Amino acid analysis indicated a concomitant increase in total residues for the Y-1 virus p30, although a number of residues appeared to have been conserved between the two viral proteins. Conformational studies and hydrodynamic calculations demonstrated marked secondary and tertiary structural differences; with the Y-1 virus p30 being an asymmetric prolate ellipsoid containing 27 to 28% alpha-helix and Moloney virus p30 being somewhat more spherical and possessing an alpha-helical content of 50 to 55%. Two-dimensional mapping of (125)I-labeled tryptic peptides of each p30 suggested that considerable sequence heterogeneity is responsible for many of the biophysical, biochemical, and immunochemical differences in these two analogous structural proteins.
对莫洛尼白血病病毒和内源性Y-1鼠类肿瘤病毒的主要内部结构蛋白(p30(gag))进行了研究,以探讨株间抗原变异的生化和生物物理表现。尽管这两种病毒蛋白具有鼠类群特异性抗原决定簇,但Y-1病毒p30的此类决定簇相对数量似乎较少,且在交叉反应位点与莫洛尼病毒p30单特异性抗体的亲和力降低。此外,免疫分析表明莫洛尼病毒p30上存在独特的抗原位点,而类似的Y-1病毒分子并不具备。这两种多肽可共同纯化,且具有相似的等电点(pH 6.2至6.3)和沉降系数(2.47S)。然而,平衡沉降显示这两种蛋白质之间存在显著的质量差异,莫洛尼病毒和Y-1病毒分子的分子量分别为28,300±600和31,000±300道尔顿。氨基酸分析表明,Y-1病毒p30的总残基数量随之增加,尽管这两种病毒蛋白之间有一些残基似乎是保守的。构象研究和流体动力学计算表明存在明显的二级和三级结构差异;Y-1病毒p30是一种不对称的长椭球体,含有27%至28%的α-螺旋,而莫洛尼病毒p30则更接近球形,α-螺旋含量为50%至55%。对每种p30的(125)I标记胰蛋白酶肽进行二维图谱分析表明,相当大的序列异质性是这两种类似结构蛋白在生物物理、生化和免疫化学方面存在诸多差异的原因。