Kung H J, Bailey J M, Davidson N, Nicolson M O, McAllister R M
J Virol. 1975 Aug;16(2):397-411. doi: 10.1128/JVI.16.2.397-411.1975.
The properties and subunit composition of the RNA extracted from RD-114 virions have been studied. The RNA extracted from the virion has a sedimentation coefficient of 52S in a nondenaturing aqueous electrolyte. The estimated molecular weight by sedimentation in nondenaturing and weakly denaturing media is in the range 5.7 X 10(6) to 7.0 X 10(6). By electron microscopy, under moderately denaturing conditions, the 52S molecule is seen to be an extended single strand with a contour length of about 4.0 mum corresponding to a molecular weight of 5.74 X 10(6). It contains two characteristic secondary structure features: (i) a central Y- or T-shaped structure (the rabbit ears) with a molecular weight of 0.3 X 10(6), (ii) two symmetreically disposed loops on each side of and at equal distance from the center. The 52S molecule consists of two half-size molecules, with molecular weight 2.8 X 10(6), joined together within the central rabbit ears feature. Melting of the rabbit ears with concomitant dissociation of the 52S molecule into subunits, has been caused by either one of two strongly denaturing treatments: incubation in a mixture of CH3HgOH and glyoxal at room temperature, or thermal dissociation in a urea-formamide solvent. When half-size molecules are quenched from denaturing temperatures, a new off-center secondary structure feature termed the branch-like structure is seen. The dissociation behavior of the 52S complex and the molecular weight of the subunits have been confirmed by gel electrophoresis studies. The loop structures melt at fairly low temperatures; the dissociation of the 52S molecule into its two subunits occurs at a higher temperature corresponding to a base composition of about 63% guanosine plus cytosine. Polyadenylic acid mapping by electron microscopy shows that the 52S molecule contains two polyadenylic acid segments, one at each end. It thus appears that 52S RD-114 RNA consists of two 2.8 X 10(6) dalton subunits, each with a characteristic secondary structure loop, and joined at the 5' ends to form the rabbit ears secondary structure feature. The observations are consistent with but do not require the conclusion that the two 2.8 X 10(6) dalton subunits of 52S RD-114 RNA are identical.
对从RD - 114病毒粒子中提取的RNA的性质和亚基组成进行了研究。从病毒粒子中提取的RNA在非变性水性电解质中的沉降系数为52S。在非变性和弱变性介质中通过沉降估计的分子量在5.7×10⁶至7.0×10⁶范围内。通过电子显微镜观察,在适度变性条件下,52S分子呈现为一条伸展的单链,其轮廓长度约为4.0μm,对应分子量为5.74×10⁶。它包含两个特征性的二级结构特征:(i) 一个中心Y形或T形结构(兔耳结构),分子量为0.3×10⁶,(ii) 在中心两侧对称分布且距离中心相等的两个环。52S分子由两个半尺寸分子组成,分子量为2.8×10⁶,在中心兔耳结构特征内连接在一起。兔耳结构的解链以及52S分子随之解离为亚基,可由两种强变性处理中的任何一种引起:在室温下于CH₃HgOH和乙二醛的混合物中孵育,或在尿素 - 甲酰胺溶剂中进行热解离。当半尺寸分子从变性温度骤冷时,会出现一种新的偏离中心的二级结构特征,称为分支状结构。52S复合物的解离行为和亚基的分子量已通过凝胶电泳研究得到证实。环结构在相当低的温度下解链;52S分子解离为其两个亚基发生在较高温度,对应约63%的鸟嘌呤加胞嘧啶的碱基组成。通过电子显微镜进行的聚腺苷酸图谱分析表明?52S分子包含两个聚腺苷酸片段,分别位于两端。因此,52S RD - 114 RNA似乎由两个2.8×10⁶道尔顿的亚基组成,每个亚基都有一个特征性的二级结构环,并在5'端连接形成兔耳二级结构特征。这些观察结果与52S RD - 114 RNA的两个2.8×10⁶道尔顿亚基相同这一结论一致,但并非必然得出该结论。 ?处原文可能有误,推测为“表明”