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结核分枝杆菌 alr-groEL1 操纵子:多种调控元件的相互作用。

The alr-groEL1 operon in Mycobacterium tuberculosis: an interplay of multiple regulatory elements.

机构信息

CSIR-Institute of Microbial Technology, Sector 39-A, Chandigarh-160036, India.

出版信息

Sci Rep. 2017 Mar 3;7:43772. doi: 10.1038/srep43772.

Abstract

Threonylcarbamoyladenosine is a universally conserved essential modification of tRNA that ensures translational fidelity in cellular milieu. TsaD, TsaB and TsaE are identified as tRNA-A-threonylcarbamoyl (tA)-transferase enzymes that have been reconstituted in vitro, in few bacteria recently. However, transcriptional organization and regulation of these genes are not known in any of these organisms. This study describes the intricate architecture of a complex multicistronic alr-groEL1 operon, harboring essential genes, namely tsaD, tsaB, tsaE, groES, groEL1, and alr (required for cell wall synthesis), and rimI encoding an N-α- acetyltransferase in Mycobacterium tuberculosis. Using northern blotting, RT-PCR and in vivo fluorescence assays, genes alr to groEL1 were found to constitute an ~6.3 kb heptacistronic operon with multiple internal promoters and an I-shaped intrinsic hairpin-like cis-regulatory element. A strong promoter PtsaD within the coding sequence of rimI gene is identified in M. tuberculosis, in addition. The study further proposes an amendment in the known bicistronic groESL1 operon annotation by providing evidence that groESL1 is co-transcribed as sub-operon of alr-groEL1 operon. The architecture of alr-groEL1 operon, conservation of the genetic context and a mosaic transcriptional profile displayed under various stress conditions convincingly suggest the involvement of this operon in stress adaptation in M. tuberculosis.

摘要

苏氨酰氨基甲酰腺苷是一种普遍保守的 tRNA 必需修饰,可确保细胞环境中的翻译准确性。TsaD、TsaB 和 TsaE 被鉴定为 tRNA-A-苏氨酰氨基甲酰(tA)转移酶,最近在少数几种细菌中已体外重建。然而,这些基因的转录组织和调控在这些生物体中尚不清楚。本研究描述了一个复杂的多顺反子 alr-groEL1 操纵子的精细结构,该操纵子包含必需基因,即 tsaD、tsaB、tsaE、groES、groEL1 和 alr(用于细胞壁合成),以及编码 N-α-乙酰转移酶的 rimI 基因在结核分枝杆菌中。通过 northern blot、RT-PCR 和体内荧光测定,发现 alr 到 groEL1 的基因构成一个约 6.3kb 的七顺反子操纵子,具有多个内部启动子和一个 I 形内在发夹样顺式调节元件。在结核分枝杆菌中,还鉴定出 rimI 基因编码序列内的强启动子 PtsaD。该研究进一步通过提供证据表明 groESL1 作为 alr-groEL1 操纵子的亚操纵子共同转录,对已知的 bicistronic groESL1 操纵子注释进行了修正。alr-groEL1 操纵子的结构、遗传背景的保守性以及各种应激条件下显示的镶嵌转录谱令人信服地表明,该操纵子参与了结核分枝杆菌的应激适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2545/5335608/d8a2373ebdf2/srep43772-f1.jpg

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