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sRNA21,一种新型的小 RNA,可保护脓肿分枝杆菌免受氧化应激。

sRNA21, a novel small RNA, protects Mycobacterium abscessus against oxidative stress.

机构信息

Department of Respiratory and Critical Care Medicine, Shanghai Pulmonary Hospital, School of Medicine, Tongji University, Shanghai, China.

School of Medicine, Tongji University, Shanghai, China.

出版信息

J Gene Med. 2023 Jun;25(6):e3492. doi: 10.1002/jgm.3492. Epub 2023 Mar 18.

Abstract

BACKGROUND

During infection, Mycobacterium abscessus encounters numerous environmental changes and adapts to them using a variety of complex mechanisms. Non-coding small RNAs (sRNAs) have been shown in other bacteria to be involved in post-transcriptional regulatory pathways, including environmental stress adaptation. However, the potential role of sRNAs in the resistance to oxidative stress in M. abscessus was not clearly described.

METHODS

In the present study, we analyzed putative sRNAs identified by RNA-sequencing (RNA-seq) experiments in M. abscessus ATCC_19977 under oxidative stress, and the transcription profiles of sRNAs with differential expression were verified by quantitative reverse transcription-PCR (qRT-PCR). Six sRNA overexpression strains were constructed, and the differences in growth curves between these strains and the control strain were verified. An upregulated sRNA under oxidative stress was selected and named sRNA21. The survival ability of the sRNA21 overexpression strain was assessed, and computer-based approaches were used to predict the targets and pathways regulated by sRNA21. The total ATP production and NAD /NADH ratio of the sRNA21 overexpression strain were measured. The expression level of antioxidase-related genes and the activity of antioxidase were tested to confirm the interaction of sRNA21 with the predicted target genes in silico.

RESULTS

In total, 14 putative sRNAs were identified under oxidative stress, and the qRT-PCR analysis of six sRNAs showed comparable results to RNA-seq assays. Overexpression of sRNA21 in M. abscessus increased cell growth rate and intracellular ATP level before and after peroxide exposure. The expression of genes encoding alkyl hydroperoxidase and superoxide dismutase was significantly increased, and superoxide dismutase activity was enhanced in the sRNA21 overexpression strain. Meanwhile, after sRNA21 overexpression, the intracellular NAD /NADH ratio decreased, indicating changes in redox homeostasis.

CONCLUSIONS

Our findings show that sRNA21 is an oxidative stress-induced sRNA that increases M. abscessus survival and promotes the expression of antioxidant enzymes under oxidative stress. These findings may provide new insights into the adaptive transcriptional response of M. abscessus to oxidative stress.

摘要

背景

分枝杆菌属在感染过程中会遇到许多环境变化,并通过多种复杂机制来适应这些变化。在其他细菌中,非编码小 RNA(sRNA)已被证明参与了包括环境应激适应在内的转录后调控途径。然而,sRNA 在脓肿分枝杆菌抵抗氧化应激中的潜在作用尚不清楚。

方法

本研究通过 RNA 测序(RNA-seq)实验分析了在氧化应激下脓肿分枝杆菌 ATCC_19977 中鉴定出的假定 sRNA,并通过定量逆转录-PCR(qRT-PCR)验证了差异表达 sRNA 的转录谱。构建了 6 个 sRNA 过表达株,并验证了这些菌株与对照株之间生长曲线的差异。选择了一种在氧化应激下上调的 sRNA,并将其命名为 sRNA21。评估了 sRNA21 过表达株的存活能力,并采用计算机方法预测了 sRNA21 调控的靶标和途径。测量了 sRNA21 过表达株的总 ATP 产量和 NAD/NADH 比值。测试了抗氧化酶相关基因的表达水平和抗氧化酶的活性,以确认 sRNA21 与预测的靶基因在计算机中的相互作用。

结果

共鉴定出 14 种在氧化应激下表达的假定 sRNA,qRT-PCR 分析 6 种 sRNA 的结果与 RNA-seq 检测结果相似。在脓肿分枝杆菌中过表达 sRNA21 可增加过氧化氢暴露前后的细胞生长速度和细胞内 ATP 水平。sRNA21 过表达株编码烷基过氧化物酶和超氧化物歧化酶的基因表达显著增加,超氧化物歧化酶活性增强。同时,sRNA21 过表达后,细胞内 NAD/NADH 比值降低,表明氧化还原平衡发生变化。

结论

我们的研究结果表明,sRNA21 是一种氧化应激诱导的 sRNA,可提高脓肿分枝杆菌的存活率,并在氧化应激下促进抗氧化酶的表达。这些发现可能为脓肿分枝杆菌对氧化应激的适应性转录反应提供新的见解。

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