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柑橘裂皮病和菊花矮化类病毒的核苷酸序列及二级结构

Nucleotide sequence and secondary structure of citrus exocortis and chrysanthemum stunt viroid.

作者信息

Gross H J, Krupp G, Domdey H, Raba M, Jank P, Lossow C, Alberty H, Ramm K, Sänger H L

出版信息

Eur J Biochem. 1982 Jan;121(2):249-57. doi: 10.1111/j.1432-1033.1982.tb05779.x.

Abstract

The complete nucleotide sequence of citrus exocortis viroid (CEV, propagated in Gymura) and chrysanthemum stunt viroid (CSV, propagated in Cineraria) has been established, using labelling in vitro and direct RNA sequencing methods and a new screening procedure for the rapid selection of suitable RNA fragments from limited digests. The covalently closed circular single-stranded viroid RNAs consist of 371 (CEV) and 354 (CSV) nucleotides, respectively. As previously shown for potato spindle tuber viroid (PSTV, 359 nucleotides), CEV and CSV also contain a long polypurine sequence. Maximal base-pairing of the established CEV and CSV sequences results in an extended rod-like secondary structure similar to that previously established for PSTV and as predicted from detailed physicochemical studies of all these viroids. Although the three viroid species sequenced to date differ in size and nucleotide sequence, there is 60--73% homology between them. As PSTV, CEV and CSV also contain conserved complementary sequences which are separated from each other in the native secondary structure. We postulate that the resulting 'secondary' hairpins, being formed and observed in vitro during the complex process of thermal denaturation of viroid RNA, must have a vital, although yet unknown, function in vivo. The possible origin and function of viroids are discussed on the basis of the characteristic structural features and of a considerable homology with U1a RNA found for a region highly conserved in the three viroids.

摘要

利用体外标记、直接RNA测序方法以及一种从有限酶切片段中快速筛选合适RNA片段的新筛选程序,已确定了柑橘裂皮类病毒(CEV,在紫背万年青中繁殖)和菊花矮化类病毒(CSV,在瓜叶菊中繁殖)的完整核苷酸序列。共价闭合的环状单链类病毒RNA分别由371个(CEV)和354个(CSV)核苷酸组成。如先前对马铃薯纺锤块茎类病毒(PSTV,359个核苷酸)的研究所示,CEV和CSV也含有一个长的多聚嘌呤序列。已确定的CEV和CSV序列的最大碱基配对产生了一种延伸的棒状二级结构,类似于先前为PSTV确定的结构,并且正如对所有这些类病毒进行详细物理化学研究所预测的那样。尽管迄今为止测序的这三种类病毒在大小和核苷酸序列上有所不同,但它们之间存在60%-73%的同源性。与PSTV一样,CEV和CSV也含有保守的互补序列,这些序列在天然二级结构中彼此分开。我们推测,在类病毒RNA热变性的复杂过程中,在体外形成并观察到的由此产生的“二级”发夹结构,在体内必定具有重要的功能,尽管其功能尚不清楚。基于这些特征性的结构特点以及在这三种类病毒中高度保守的一个区域与U1a RNA存在相当程度的同源性,对类病毒的可能起源和功能进行了讨论。

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