Hartman K A, McDonald-Ordzie P E, Kaper J M, Prescott B, Thomas G J
Biochemistry. 1978 May 30;17(11):2118-23. doi: 10.1021/bi00604a015.
Laser-Raman spectroscopy of the turnip yellow mosaic virus (TYMV) and its capsid indicate the following features of the structure and assembly of the virion. The secondary structure of coat-protein molecules in TYMV is comprised of 9 +/- 5% alpha-helix, 43 +/- 6% beta-sheet, and 48 +/- 6% irregular conformation and is not altered by the removal of the RNA from the capsid. Introduction of as many as 200 chain scissions per RNA molecule also does not affect the overall secondary structure of the encapsulated RNA, which is 77 +/- 5% in the A-helix form. Tryptophan and cysteine residues of the coat protein appear to be in contact with the solvent, while only one of three tyrosines per coat protein is available for hydrogen bonding of its p-hydroxyl group with H2O molecules. Both cytosine and adenine residues of TYMV RNA are protonated in substantial numbers near pH 4.5, suggesting elevation of their respective pKa values within the virion. The Raman data are consistent with chemical evidence favoring interaction between protonated bases of RNA and amino acid side chains of coat protein in TYMV.
芜菁黄花叶病毒(TYMV)及其衣壳的激光拉曼光谱揭示了病毒粒子结构和组装的以下特征。TYMV中衣壳蛋白分子的二级结构由9±5%的α-螺旋、43±6%的β-折叠和48±6%的不规则构象组成,并且从衣壳中去除RNA后其结构并未改变。每个RNA分子引入多达200个链断裂也不会影响被包裹RNA的整体二级结构,其呈A-螺旋形式的比例为77±5%。衣壳蛋白的色氨酸和半胱氨酸残基似乎与溶剂接触,而每个衣壳蛋白的三个酪氨酸中只有一个可用于其对羟基与水分子的氢键形成。TYMV RNA的胞嘧啶和腺嘌呤残基在pH 4.5附近大量质子化,表明它们在病毒粒子内各自的pKa值升高。拉曼数据与支持TYMV中RNA质子化碱基与衣壳蛋白氨基酸侧链之间相互作用的化学证据一致。