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枯草芽孢杆菌中thrS前导序列的体外和体内二级结构探测

In vitro and in vivo secondary structure probing of the thrS leader in Bacillus subtilis.

作者信息

Luo D, Condon C, Grunberg-Manago M, Putzer H

机构信息

UPR 9073, Institut de Biologie Physico-Chimique, 13 rue Pierre et Marie Curie, 75005 Paris, France.

出版信息

Nucleic Acids Res. 1998 Dec 1;26(23):5379-87. doi: 10.1093/nar/26.23.5379.

Abstract

The Bacillus subtilis thrS gene is a member of the T-box gene family in Gram-positive organisms whose expression is regulated by a tRNA-mediated transcriptional antitermination mechanism involving a direct tRNA:mRNA interaction. The complex leader sequences of these genes share only short stretches of primary sequence homology, but a common secondary structure has been proposed by comparing the leaders of many genes of this family. The proposed mechanism forthe tRNA:mRNA interaction depends heavily on the secondary structure model, but is so far only supported by genetic evidence. We have studied the structure of the B.subtilis thrS leader in solution, in protection experiments using both chemical and enzymatic probes. The thrS leader structure was also probed in vivo using dimethylsulphate and the in vitro and in vivo data are in good accordance. We have organized the thrS leader into three major domains comprising six separate stem-loops. All but one of the short sequences conserved in this gene family are present in loop structures. The ACC specifier codon proposed to interact with the tRNAThrGGUisoacceptor is present in a bulge and probably exists in a stacking conformation. The proposed antiterminator structure is not visible in transcripts containing the terminator, but was probed using a transcript with the 3'-half of the terminator deleted and its folding appears consistent with the regulatory model. The leader sequences, and in particular the specifier domains, of the other genes of this family can be folded similarly to the experimentally solved thrS structure.

摘要

枯草芽孢杆菌thrS基因是革兰氏阳性菌中T-box基因家族的成员,其表达受tRNA介导的转录抗终止机制调控,该机制涉及tRNA与mRNA的直接相互作用。这些基因复杂的前导序列仅共享短片段的一级序列同源性,但通过比较该家族许多基因的前导序列,提出了一种共同的二级结构。tRNA与mRNA相互作用的推测机制在很大程度上依赖于二级结构模型,但迄今为止仅得到遗传学证据的支持。我们使用化学和酶促探针进行保护实验,研究了溶液中枯草芽孢杆菌thrS前导序列的结构。还使用硫酸二甲酯在体内对thrS前导序列结构进行了探测,体外和体内数据吻合良好。我们将thrS前导序列组织成三个主要结构域,包含六个独立的茎环结构。该基因家族中保守的短序列,除一个外,均存在于环结构中。推测与tRNAThrGGU同工受体相互作用的ACC特异性密码子存在于一个凸起中,可能以堆积构象存在。在含有终止子的转录本中看不到推测的抗终止子结构,但使用缺失终止子3'端一半的转录本进行了探测,其折叠情况似乎与调控模型一致。该家族其他基因的前导序列,特别是特异性结构域,可以折叠成与通过实验解析的thrS结构相似的结构。

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