Prescott B, Sitaraman K, Argos P, Thomas G J
Biochemistry. 1985 Feb 26;24(5):1226-31. doi: 10.1021/bi00326a026.
Raman difference spectroscopy of the belladonna mottle virus (BDMV) and its separated RNA and protein components indicates that molecular interaction occurs between the single-stranded RNA genome and capsid subunits. The molecular interactions that stabilize the virion at pH 5.0 are altered or eliminated at pH 8.0, even though release of the RNA from the capsid is prevented by the addition of divalent metal cations (Ca2+). From the perturbations that occur to Raman lines of cytosine and adenine rings of the encapsidated RNA molecule between pH values of 5.0 and 8.0, it is concluded that cytosines are protonated in significant numbers at the conditions which maintain the native virus structure and that the stacking of adenines is altered by changes in pH. The degree of protonation of RNA bases can be reduced by elevation of the pH to 8.0 for encapsidated RNA or by release of the RNA from the capsid at pH 5.0. Although the protein groups that interact with the viral RNA cannot be identified unambiguously from the Raman spectra, it is apparent that the molecular environments of aromatic amino acid side chains are altered with the same changes in pH (from 5.0 to 8.0) that perturb the cytosine and adenine ring structures. No significant change in secondary structures of the capsid subunit can be detected with changes in pH or with RNA release. On the other hand, the characteristic Raman lines of the phosphate groups of packaged RNA differ from those of naked RNA at all pH values examined, most likely as a result of specific electrostatic binding of divalent cations to RNA phosphates within the virus shell.
颠茄斑驳病毒(BDMV)及其分离出的RNA和蛋白质成分的拉曼差光谱表明,单链RNA基因组与衣壳亚基之间发生了分子相互作用。尽管通过添加二价金属阳离子(Ca2+)可防止RNA从衣壳中释放出来,但在pH 5.0时稳定病毒粒子的分子相互作用在pH 8.0时会发生改变或消除。从衣壳化RNA分子在pH值5.0和8.0之间时胞嘧啶和腺嘌呤环的拉曼谱线所发生的扰动可以得出结论,在维持天然病毒结构的条件下,大量胞嘧啶被质子化,并且腺嘌呤的堆积会因pH值的变化而改变。对于衣壳化RNA,将pH值升高到8.0或在pH 5.0时使RNA从衣壳中释放出来,均可降低RNA碱基的质子化程度。虽然无法从拉曼光谱中明确鉴定出与病毒RNA相互作用的蛋白质基团,但很明显,芳香族氨基酸侧链的分子环境会随着pH值(从5.0到8.0)的相同变化而改变,而这种变化会扰乱胞嘧啶和腺嘌呤环的结构。随着pH值的变化或RNA的释放,未检测到衣壳亚基二级结构有明显变化。另一方面,在所有检测的pH值下,包装RNA的磷酸基团的特征拉曼谱线与裸露RNA的不同,这很可能是由于二价阳离子与病毒壳内RNA磷酸基团发生特异性静电结合的结果。