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1
Formation of metastable RNA structures by sequential folding during transcription: time-resolved structural analysis of potato spindle tuber viroid (-)-stranded RNA by temperature-gradient gel electrophoresis.转录过程中通过顺序折叠形成亚稳态RNA结构:利用温度梯度凝胶电泳对马铃薯纺锤块茎类病毒(-)链RNA进行时间分辨结构分析。
RNA. 1999 Apr;5(4):574-84. doi: 10.1017/s1355838299982018.
2
Formation of a thermodynamically metastable structure containing hairpin II is critical for infectivity of potato spindle tuber viroid RNA.包含发夹II的热力学亚稳结构的形成对于马铃薯纺锤块茎类病毒RNA的感染性至关重要。
EMBO J. 1991 Mar;10(3):719-27. doi: 10.1002/j.1460-2075.1991.tb08002.x.
3
Detection and analysis of hairpin II, an essential metastable structural element in viroid replication intermediates.类病毒复制中间体中一种重要的亚稳结构元件——发夹II的检测与分析
Nucleic Acids Res. 2002 Aug 1;30(15):3349-59. doi: 10.1093/nar/gkf454.
4
Multiple pathways of reversion in viroids for conservation of structural elements.类病毒中用于保守结构元件的多种回复途径。
EMBO J. 1993 May;12(5):2129-39. doi: 10.1002/j.1460-2075.1993.tb05861.x.
5
Analysis of RNA structures by temperature-gradient gel electrophoresis: viroid replication and processing.
Gene. 1988 Dec 10;72(1-2):59-74. doi: 10.1016/0378-1119(88)90128-x.
6
Only one of four possible secondary structures of the central conserved region of potato spindle tuber viroid is a substrate for processing in a potato nuclear extract.马铃薯纺锤块茎类病毒中心保守区域四种可能的二级结构中,只有一种是马铃薯核提取物中加工过程的底物。
Nucleic Acids Res. 1995 Nov 11;23(21):4246-54. doi: 10.1093/nar/23.21.4246.
7
Dynamic competition between alternative structures in viroid RNAs simulated by an RNA folding algorithm.通过RNA折叠算法模拟的类病毒RNA中替代结构之间的动态竞争。
J Mol Biol. 1998 Feb 13;276(1):43-55. doi: 10.1006/jmbi.1997.1384.
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Temperature-gradient gel electrophoresis of nucleic acids: analysis of conformational transitions, sequence variations, and protein-nucleic acid interactions.核酸的温度梯度凝胶电泳:构象转变、序列变异及蛋白质-核酸相互作用分析
Electrophoresis. 1989 May-Jun;10(5-6):377-89. doi: 10.1002/elps.1150100516.
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Transcription of potato spindle tuber viroid by RNA polymerase II starts in the left terminal loop.马铃薯纺锤块茎类病毒由RNA聚合酶II进行的转录起始于左侧末端环。
Virology. 2006 Apr 10;347(2):392-404. doi: 10.1016/j.virol.2005.11.039. Epub 2006 Jan 10.
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Suppression of potato spindle tuber viroid replication and symptom expression by mutations which stabilize the pathogenicity domain.通过稳定致病结构域的突变抑制马铃薯纺锤块茎类病毒的复制和症状表达。
Virology. 1995 Apr 20;208(2):554-64. doi: 10.1006/viro.1995.1186.

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Predicting the Structure of a Viroid : Structure, Structure Distribution, Consensus Structure, and Structure Drawing.预测类病毒结构:结构、结构分布、一致结构和结构绘图。
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A genetic selection reveals functional metastable structures embedded in a toxin-encoding mRNA.一种遗传选择揭示了嵌入在编码毒素的 mRNA 中的功能亚稳态结构。
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RNA Regulations and Functions Decoded by Transcriptome-wide RNA Structure Probing.通过全转录组RNA结构探测解析RNA调控与功能
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10
Dissecting the secondary structure of the circular RNA of a nuclear viroid in vivo: A "naked" rod-like conformation similar but not identical to that observed in vitro.在体解析类病毒环形 RNA 的二级结构:一种“裸露”的棒状构象,与体外观察到的相似但不完全相同。
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本文引用的文献

1
A proposed scheme for viroid classification and nomenclature.一种拟议的类病毒分类和命名方案。
Arch Virol. 1998;143(3):623-9. doi: 10.1007/s007050050318.
2
Cell-to-cell movement of potato spindle tuber viroid.马铃薯纺锤块茎类病毒的细胞间移动
Plant J. 1997 Oct;12(4):931-6. doi: 10.1046/j.1365-313x.1997.12040931.x.
3
New PC versions of the kinetic-simulation and fitting programs, KINSIM and FITSIM.动力学模拟与拟合程序KINSIM和FITSIM的新PC版本。
Trends Biochem Sci. 1997 Aug;22(8):317. doi: 10.1016/s0968-0004(97)01062-1.
4
Viroid processing: switch from cleavage to ligation is driven by a change from a tetraloop to a loop E conformation.类病毒加工:从切割到连接的转变由从四环结构到环E构象的变化驱动。
EMBO J. 1997 Feb 3;16(3):599-610. doi: 10.1093/emboj/16.3.599.
5
Coupling of rRNA transcription and ribosomal assembly in vivo. Formation of active ribosomal subunits in Escherichia coli requires transcription of rRNA genes by host RNA polymerase which cannot be replaced by bacteriophage T7 RNA polymerase.体内rRNA转录与核糖体组装的偶联。在大肠杆菌中形成活性核糖体亚基需要宿主RNA聚合酶转录rRNA基因,而噬菌体T7 RNA聚合酶无法替代宿主RNA聚合酶。
J Mol Biol. 1993 Jun 5;231(3):581-93. doi: 10.1006/jmbi.1993.1311.
6
Multiple pathways of reversion in viroids for conservation of structural elements.类病毒中用于保守结构元件的多种回复途径。
EMBO J. 1993 May;12(5):2129-39. doi: 10.1002/j.1460-2075.1993.tb05861.x.
7
RNAII transcribed by IPTG-induced T7 RNA polymerase is non-functional as a replication primer for ColE1-type plasmids in Escherichia coli.由异丙基-β-D-硫代半乳糖苷(IPTG)诱导的T7 RNA聚合酶转录的RNAII,作为大肠杆菌中ColE1型质粒的复制引物无功能。
Nucleic Acids Res. 1995 May 25;23(10):1691-5. doi: 10.1093/nar/23.10.1691.
8
Only one of four possible secondary structures of the central conserved region of potato spindle tuber viroid is a substrate for processing in a potato nuclear extract.马铃薯纺锤块茎类病毒中心保守区域四种可能的二级结构中,只有一种是马铃薯核提取物中加工过程的底物。
Nucleic Acids Res. 1995 Nov 11;23(21):4246-54. doi: 10.1093/nar/23.21.4246.
9
Studies of in vitro transcription by calf thymus RNA polymerase II using a novel duplex DNA template.使用新型双链DNA模板对小牛胸腺RNA聚合酶II进行体外转录的研究。
J Biol Chem. 1982 May 10;257(9):5286-95.
10
Sequential folding of transfer RNA. A nuclear magnetic resonance study of successively longer tRNA fragments with a common 5' end.转运RNA的顺序折叠。对具有共同5'端的连续更长tRNA片段的核磁共振研究。
J Mol Biol. 1980 Jun 5;139(4):601-25. doi: 10.1016/0022-2836(80)90051-0.

转录过程中通过顺序折叠形成亚稳态RNA结构:利用温度梯度凝胶电泳对马铃薯纺锤块茎类病毒(-)链RNA进行时间分辨结构分析。

Formation of metastable RNA structures by sequential folding during transcription: time-resolved structural analysis of potato spindle tuber viroid (-)-stranded RNA by temperature-gradient gel electrophoresis.

作者信息

Repsilber D, Wiese S, Rachen M, Schröder A W, Riesner D, Steger G

机构信息

Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf, Germany.

出版信息

RNA. 1999 Apr;5(4):574-84. doi: 10.1017/s1355838299982018.

DOI:10.1017/s1355838299982018
PMID:10199573
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1369783/
Abstract

A model of functional elements critical for replication and infectivity of the potato spindle tuber viroid (PSTVd) was proposed earlier: a thermodynamically metastable structure containing a specific hairpin (HP II) in the (-)-strand replication intermediate is essential for template activity during (+)-strand synthesis. We present here a detailed kinetic analysis on how PSTVd (-)-strands fold during synthesis by sequential folding into a variety of metastable structures that rearrange only slowly into the structure distribution of the thermodynamic equilibrium. Synthesis of PSTVd (-)-strands was performed by T7-RNA-polymerase; the rate of synthesis was varied by altering the concentration of nucleoside triphosphates to mimic the in vivo synthesis rate of DNA-dependent RNA polymerase II. With dependence on rate and duration of the synthesis, the structure distributions were analyzed by temperature-gradient gel electrophoresis (TGGE). Metastable structures are generated preferentially at low transcription rates--similar to in vivo rates--or at short transcription times at higher rates. Higher transcription rates or longer transcription times lead to metastable structures in low or undetectable amounts. Instead different structures do gradually appear having a more rod-like shape and higher thermodynamic stability, and the thermodynamically optimal rod-like structure dominates finally. It is concluded that viroids are able to use metastable as well as stable structures for their biological functions.

摘要

之前曾提出一个对马铃薯纺锤块茎类病毒(PSTVd)复制和感染性至关重要的功能元件模型:在(-)链复制中间体中包含特定发夹结构(HP II)的热力学亚稳结构对于(+)链合成过程中的模板活性至关重要。我们在此展示了一项详细的动力学分析,内容是关于PSTVd(-)链在合成过程中如何通过依次折叠成各种亚稳结构进行折叠,这些亚稳结构仅缓慢重排为热力学平衡的结构分布。PSTVd(-)链的合成由T7 - RNA聚合酶进行;通过改变核苷三磷酸的浓度来改变合成速率,以模拟DNA依赖性RNA聚合酶II的体内合成速率。根据合成速率和持续时间的不同,通过温度梯度凝胶电泳(TGGE)分析结构分布。亚稳结构优先在低转录速率(类似于体内速率)或在较高速率下的短转录时间产生。较高的转录速率或较长的转录时间会导致亚稳结构数量少或难以检测到。相反,逐渐出现不同的、形状更像棒状且具有更高热力学稳定性的结构,最终热力学上最优的棒状结构占主导。结论是类病毒能够利用亚稳结构和稳定结构来实现其生物学功能。