小RNA jnc110调节活化的甲基循环,使空肠弯曲杆菌在鸡体内的最佳定植。

IF 3.7 2区 生物学 Q2 MICROBIOLOGY mSphere Pub Date : 2025-01-28 Epub Date: 2025-01-08 DOI:10.1128/msphere.00832-24
Brandon Ruddell, Alan Hassall, Orhan Sahin, Paul J Plummer, Qijing Zhang, Amanda J Kreuder
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引用次数: 0

摘要

非编码小rna (sRNAs)的转录后基因调控对肠道病原体(包括人畜共患病原体空肠弯曲杆菌)的定植和存活至关重要。在这项研究中,我们利用C. jejuni IA3902(绵羊流产克隆的代表性分离物)和C. jejuni W7(人类肠胃炎菌株NCTC 11168的高运动变体)进一步研究了sRNA jnc110的调控作用。运动能力和自凝集能力均被证实是受jnc110保守调控的表型。然而,我们证明W7∆CjNC110与W7野生型相比不会改变鸡的定殖水平,直接对比了IA3902∆CjNC110,后者的定殖能力下降。随后,通过检测活化甲基循环(AMC)控制的细胞内l -蛋氨酸(L-met)水平,我们确定了W7∆CjNC110和IA3902∆CjNC110之间的菌株特异性表型差异。我们假设,MetAB在W7而不是IA3902中赋予L-met生产的二级系统的存在可能解释了鸡定植和L-met可利用性的差异。在IA3902∆jnc110中插入metAB(自然缺失)恢复了IA3902∆jnc110::metAB细胞内L-met水平,克服了由于jnc110在IA3902中突变而导致的定殖缺陷。W7∆cjc110中metAB的缺失(自然存在)导致了W7∆cjc110中L-met的减少,以及在W7∆cjc110中被掩盖的定殖缺陷。我们的研究结果表明,在C.空肠中,调节AMC导致L-met可用性改变是jnc110的保守调节功能,并证实了由jnc110激活的AMC产生L-met对最佳宿主定殖至关重要。在本研究中,研究了cnnc110在两种不同的人畜共患病空肠弯曲杆菌菌株之间的调节作用和功能保护。重要的是,这项工作首次揭示了小RNA (sRNA) jnc110在活化甲基循环(AMC)中调节l -蛋氨酸(L-met)的产生是驱动空肠假梭菌在鸡中最佳定植的关键因素。越来越多的证据表明,L-met稳态的维持似乎是空肠梭菌定植的关键,针对AMC的干预措施可能为治疗药物选择提供一个关键的控制点,以对抗这种人畜共患病原体。我们的研究结果还表明,即使对于保守的sRNAs,如jnc110,受sRNAs调节的表型的菌株特异性差异也可能存在,独立于保守的调节作用。根据检查的菌株和附属基因组内容,保守的调控作用可能被掩盖,因此在多个菌株中进行调查可能是有必要的。
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Small RNA CjNC110 regulates the activated methyl cycle to enable optimal chicken colonization by Campylobacter jejuni.

Post-transcriptional gene regulation by non-coding small RNAs (sRNAs) is critical for colonization and survival of enteric pathogens, including the zoonotic pathogen Campylobacter jejuni. In this study, we utilized C. jejuni IA3902 (a representative isolate of the sheep abortion clone) and C. jejuni W7 (a highly motile variant of NCTC 11168, a human gastroenteritis strain) to further investigate regulation by sRNA CjNC110. Both motility and autoagglutination ability were confirmed to be phenotypes of conserved regulation by CjNC110. However, we demonstrated that W7∆CjNC110 does not change chicken colonization levels compared to W7 wild type, directly contrasting IA3902∆CjNC110, which had decreased colonization ability. Subsequently, we determined strain-specific phenotype variation between W7∆CjNC110 and IA3902∆CjNC110 when examining intracellular L-methionine (L-met) levels controlled by the activated methyl cycle (AMC). We hypothesized that the presence of a secondary system for L-met production conferred by MetAB in W7 but not IA3902 might explain the difference in both chicken colonization and L-met availability. Insertion of metAB within IA3902∆CjNC110 (naturally absent) restored intracellular L-met levels in IA3902∆CjNC110::metAB and overcame the colonization defect that resulted from mutagenesis of CjNC110 in IA3902. Deletion of metAB in W7∆CjNC110 (naturally present) led to a decrease in L-met in W7∆CjNC110∆metAB and a colonization defect which was otherwise masked in W7∆CjNC110. Our results indicate that regulation of the AMC leading to altered L-met availability is a conserved regulatory function of CjNC110 in C. jejuni and confirm that L-met generation via the AMC as activated by CjNC110 is critical for optimal host colonization.IMPORTANCEDuring this study, the regulatory action and conservation of function of CjNC110 between two different zoonotically important Campylobacter jejuni strains were examined. Critically, this work for the first time reveals regulation of L-methionine (L-met) production within the activated methyl cycle (AMC) by small RNA (sRNA) CjNC110 as a key factor driving C. jejuni optimal chicken colonization. As a growing body of evidence suggests that maintenance of L-met homeostasis appears to be critical for C. jejuni colonization, interventions targeting the AMC could provide a critical control point for therapeutic drug options to combat this zoonotic pathogen. Our results also indicate that even for conserved sRNAs such as CjNC110, strain-specific differences in phenotypes regulated by sRNAs may exist, independent of conserved regulatory action. Depending on the strain examined and accessory genomic content present, conserved regulatory actions might be masked, thus investigation in multiple strains may be warranted.

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来源期刊
mSphere
mSphere Immunology and Microbiology-Microbiology
CiteScore
8.50
自引率
2.10%
发文量
192
审稿时长
11 weeks
期刊介绍: mSphere™ is a multi-disciplinary open-access journal that will focus on rapid publication of fundamental contributions to our understanding of microbiology. Its scope will reflect the immense range of fields within the microbial sciences, creating new opportunities for researchers to share findings that are transforming our understanding of human health and disease, ecosystems, neuroscience, agriculture, energy production, climate change, evolution, biogeochemical cycling, and food and drug production. Submissions will be encouraged of all high-quality work that makes fundamental contributions to our understanding of microbiology. mSphere™ will provide streamlined decisions, while carrying on ASM''s tradition for rigorous peer review.
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