Tanner N K, Schaff S, Thill G, Petit-Koskas E, Crain-Denoyelle A M, Westhof E
GENSET, Paris, France.
Curr Biol. 1994 Jun 1;4(6):488-98. doi: 10.1016/s0960-9822(00)00109-3.
Hepatitis delta virus (HDV), which has a single-stranded RNA genome about 1700 nucleotides long, is a satellite virus of hepatitis B, and is associated with a high incidence of fulminant hepatitis and death in infected humans. Like certain pathogenic subviral RNAs that infect plants, HDV RNA features a closed-circular conformation, a rolling-circle mechanism of replication and RNA-catalyzed self-cleaving reactions of both genomic and anti-genomic strands in vitro. The catalytic domains cannot be folded into either the hammerhead or hairpin secondary-structure motifs that have been found in other self-cleaving RNAs.
A pseudoknot secondary-structure model has been suggested for the catalytic domain (ribozyme) of HDV RNA. We conducted extensive mutational analyses of regions of the HDV ribozyme predicted in this model to be single stranded, and found that several of them are important for catalytic activity. We used these data, sequence comparisons between different isolates and previously published structural analyses to produce a computer graphic model of the three-dimensional architecture of the HDV ribozyme.
Our model supports the pseudoknotted structure and rationalizes several observations relating to the lengths of the various stems and the sequence requirements of the single-stranded regions. It also provides insight into the catalytic mechanism of the HDV ribozyme. We specifically propose that residues C75, U20 and C21 form the basis of the catalytic region and are close to the cleavable phosphate.
丁型肝炎病毒(HDV)拥有一个约1700个核苷酸长的单链RNA基因组,是乙型肝炎的卫星病毒,与受感染人类暴发性肝炎的高发病率和死亡相关。与某些感染植物的致病性亚病毒RNA一样,HDV RNA具有闭环构象、滚环复制机制以及体外基因组和反基因组链的RNA催化自我切割反应。其催化结构域无法折叠成在其他自我切割RNA中发现的锤头或发夹二级结构基序。
已提出一种针对HDV RNA催化结构域(核酶)的假结二级结构模型。我们对该模型中预测为单链的HDV核酶区域进行了广泛的突变分析,发现其中几个区域对催化活性很重要。我们利用这些数据、不同分离株之间的序列比较以及先前发表的结构分析结果,生成了HDV核酶三维结构的计算机图形模型。
我们的模型支持假结结构,并对与各种茎的长度以及单链区域的序列要求相关的若干观察结果做出了合理说明。它还为HDV核酶的催化机制提供了见解。我们特别提出,残基C75、U20和C21构成了催化区域的基础,并且靠近可切割的磷酸基团。