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大肠杆菌中小RNA的拟核和细胞质定位

Nucleoid and cytoplasmic localization of small RNAs in Escherichia coli.

作者信息

Sheng Huanjie, Stauffer Weston T, Hussein Razika, Lin Chris, Lim Han N

机构信息

Department of Integrative Biology, 3060 Valley Life Sciences Building, Mail code 3140, University of California, Berkeley, CA, 94720-3140, USA.

出版信息

Nucleic Acids Res. 2017 Mar 17;45(5):2919-2934. doi: 10.1093/nar/gkx023.

Abstract

Bacterial small RNAs (sRNAs) regulate protein production by binding to mRNAs and altering their translation and degradation. sRNAs are smaller than most mRNAs but larger than many proteins. Therefore it is uncertain whether sRNAs can enter the nucleoid to target nascent mRNAs. Here, we investigate the intracellular localization of sRNAs transcribed from plasmids in Escherichia coli using RNA fluorescent in-situ hybridization. We found that sRNAs (GlmZ, OxyS, RyhB and SgrS) have equal preference for the nucleoid and cytoplasm, and no preferential localization at the cell membrane. We show using the gfp mRNA (encoding green fluorescent protein) that non-sRNAs can be engineered to have different proportions of nucleoid and cytoplasmic localization by altering their length and/or translation. The same localization as sRNAs was achieved by decreasing gfp mRNA length and translation, which suggests that sRNAs and other RNAs may enter the densely packed DNA of the nucleoid if they are sufficiently small. We also found that the Hfq protein, which binds sRNAs, minimally affects sRNA localization. Important implications of our findings for engineering synthetic circuits are: (i) sRNAs can potentially bind nascent mRNAs in the nucleoid, and (ii) localization patterns and distribution volumes of sRNAs can differ from some larger RNAs.

摘要

细菌小RNA(sRNA)通过与mRNA结合并改变其翻译和降解来调节蛋白质的产生。sRNA比大多数mRNA小,但比许多蛋白质大。因此,尚不确定sRNA是否能够进入类核靶向新生的mRNA。在此,我们使用RNA荧光原位杂交技术研究了大肠杆菌中质粒转录的sRNA的细胞内定位。我们发现sRNA(GlmZ、OxyS、RyhB和SgrS)对类核和细胞质具有同等偏好,且在细胞膜上没有优先定位。我们使用gfp mRNA(编码绿色荧光蛋白)表明,通过改变非sRNA的长度和/或翻译,可以使其在类核和细胞质中的定位比例不同。通过缩短gfp mRNA的长度和翻译,可实现与sRNA相同的定位,这表明如果sRNA足够小,它们可能会进入类核中紧密堆积的DNA。我们还发现,与sRNA结合的Hfq蛋白对sRNA的定位影响极小。我们的研究结果对合成回路工程的重要意义在于:(i)sRNA可能在类核中结合新生的mRNA,(ii)sRNA的定位模式和分布体积可能与一些较大的RNA不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0103/5389542/48e500e8d9bf/gkx023fig1.jpg

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