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枯草芽孢杆菌spo0B顺反子的翻译衰减是由一个包含起始区域的RNA结构引起的。

Translational attenuation of the Bacillus subtilis spo0B cistron by an RNA structure encompassing the initiation region.

作者信息

Asayama M, Saito K i, Kobayashi Y

机构信息

Faculty of Agriculture, Tokyo University of Agriculture and Technology, Fuchu 183, Tokyo, Japan.

出版信息

Nucleic Acids Res. 1998 Feb 1;26(3):824-30. doi: 10.1093/nar/26.3.824.

Abstract

The spo0B gene, which exists as an operon with the obg gene, is required to initiate sporulation (stage 0) of Bacillus subtilis . This gene encodes a phosphotransferase in the multicomponent phosphorelay system. We here report the novel finding that a spo0B 5'-terminal SLR (stem-loop structure sequestering ribosome binding sequence; ACUCCUAA-X16-UUG GGAG U, Delta G = -8.71 kcal/mol) attenuated spo0B translation. The spo0B gene was efficiently transcribed but Spo0B protein was not overproduced in Escherichia coli when spo0B was induced using expression vectors carrying the SLR- spo0B region under control of the tac promoter. Deletion of the SLR from the vectors resulted in overexpression of spo0B . Therefore, to characterize expression of spo0B with a SLR in B.subtilis we constructed transcriptional and translational lacZ fusions combined with the spo0B 5'-terminal region with a deleted or mutagenized SLR. These constructs were subsequently introduced into B.subtilis as multiple and single copies, then beta-galactosidase activities were measured. The possible SLR also functioned as a negative cis element in B.subtilis. Furthermore, B.subtilis strain 1S16 (spo0B136) lysogenized straight phiCD0B-S and -W, harboring spo0B with mutagenized SLRs that were more (Delta G = -14.0 kcal/mol) and less-stable (Delta G = -1.31 kcal/mol) compared with the wild-type, exhibited null and wild-type sporulation respectively. These results indicate that the spo0B 5'-SLR affects spo0B gene expression for sporulation but that low expression of spo0B through the wild-type SLR was sufficient to initiate sporulation in B.subtilis.

摘要

spo0B基因与obg基因以操纵子形式存在,是枯草芽孢杆菌启动芽孢形成(0期)所必需的。该基因在多组分磷酸转移系统中编码一种磷酸转移酶。我们在此报告一项新发现,即spo0B 5'端的SLR(封闭核糖体结合序列的茎环结构;ACUCCUAA-X16-UUG GGAG U,ΔG = -8.71千卡/摩尔)会减弱spo0B的翻译。当使用携带在tac启动子控制下的SLR-spo0B区域的表达载体诱导spo0B时,spo0B基因在大肠杆菌中能有效转录,但Spo0B蛋白并未过量产生。从载体中删除SLR会导致spo0B的过表达。因此,为了表征枯草芽孢杆菌中带有SLR的spo0B的表达情况,我们构建了与spo0B 5'端区域结合的转录和翻译lacZ融合体,该区域的SLR已被删除或诱变。随后将这些构建体以多拷贝和单拷贝形式导入枯草芽孢杆菌,然后测量β-半乳糖苷酶活性。这种可能的SLR在枯草芽孢杆菌中也作为负性顺式元件发挥作用。此外,枯草芽孢杆菌菌株1S16(spo0B136)被噬菌体phiCD0B-S和-W直接溶源化,它们携带的spo0B的SLR经过诱变,与野生型相比,稳定性更高(ΔG = -14.0千卡/摩尔)和更低(ΔG = -1.31千卡/摩尔),分别表现出无芽孢形成和野生型芽孢形成。这些结果表明,spo0B 5'-SLR影响芽孢形成过程中spo0B基因的表达,但通过野生型SLR导致的spo0B低表达足以启动枯草芽孢杆菌的芽孢形成。

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