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温度和氧气供应对溃疡分枝杆菌基因表达模式的影响

Impact of Temperature and Oxygen Availability on Gene Expression Patterns of Mycobacterium ulcerans.

作者信息

Dhungel Laxmi, Bonner Raisa, Cook Meagan, Henson Duncan, Moulder Trent, Benbow M Eric, Jordan Heather

机构信息

Department of Biological Sciences, Mississippi State University, Mississippi State, Mississippi, USA.

Department of Entomology, Michigan State University, East Lansing, Michigan, USA.

出版信息

Microbiol Spectr. 2023 Mar 13;11(2):e0496822. doi: 10.1128/spectrum.04968-22.

Abstract

Buruli ulcer disease is a neglected tropical disease caused by the environmental pathogen Mycobacterium ulcerans. The M. ulcerans major virulence factor is mycolactone, a lipid cytotoxic compound whose genes are carried on a plasmid. Although an exact reservoir and mode(s) of transmission are unknown, data provide evidence of both. First, Buruli ulcer incidence and M. ulcerans presence have been linked to slow-moving water with low oxygen. M. ulcerans has also been suggested to be sensitive to UV due to termination in , encoding a phytoene dehydrogenase, required for carotenoid production. Further, M. ulcerans has been shown to cause disease following puncture but not when introduced to open abrasion sites, suggesting that puncture is necessary for transmission and pathology. Despite these findings, the function and modulation of mycolactone and other genes in response to dynamic abiotic conditions such as UV, temperature, and oxygen have not been shown. In this study, we investigated modulation of mycolactone and other genes on exposure to changing UV and oxygen microenvironmental conditions. Mycolactone expression was downregulated on exposure to the single stress high temperature and did not change significantly with exposure to UV; however, it was upregulated when exposed to microaerophilic conditions. Mycolactone expression was downregulated under combined stresses of high temperature and low oxygen, but there was upregulation of several stress response genes. Taken together, results suggest that temperature shapes M. ulcerans metabolic response more so than UV exposure or oxygen requirements. These data help to define the environmental niche of M. ulcerans and metabolic responses during initial human infection. Buruli ulcer is a debilitating skin disease caused by the environmental pathogen Mycobacterium ulcerans. M. ulcerans produces a toxic compound, mycolactone, which leads to tissue necrosis and ulceration. Barriers to preventing Buruli ulcer include an incomplete understanding of M. ulcerans reservoirs, how the pathogen is transmitted, and under what circumstances mycolactone and other M. ulcerans genes are expressed and produced in its natural environment and in the host. We conducted a study to investigate M. ulcerans gene expression under several individual or combined abiotic conditions. Our data showed that mycolactone expression was downregulated under combined stresses of high temperature and low oxygen but there was upregulation of several stress response genes. These data are among only a few studies measuring modulation of mycolactone and other M. ulcerans genes that could be involved in pathogen fitness in its natural environment and virulence while within the host.

摘要

布鲁里溃疡病是一种由环境病原体溃疡分枝杆菌引起的被忽视的热带病。溃疡分枝杆菌的主要毒力因子是分枝杆菌内酯,这是一种脂质细胞毒性化合物,其基因位于质粒上。尽管确切的储存宿主和传播方式尚不清楚,但已有数据证明了两者的存在。首先,布鲁里溃疡的发病率和溃疡分枝杆菌的存在与低氧的缓流水有关。由于编码类胡萝卜素生产所需的八氢番茄红素脱氢酶的基因在紫外线照射下终止,也有人认为溃疡分枝杆菌对紫外线敏感。此外,溃疡分枝杆菌已被证明在穿刺后会引发疾病,但在开放性擦伤部位引入时则不会,这表明穿刺是传播和发病的必要条件。尽管有这些发现,但尚未证明分枝杆菌内酯和其他基因在诸如紫外线、温度和氧气等动态非生物条件下的功能及调节情况。在本研究中,我们调查了在紫外线和氧气微环境条件变化时分枝杆菌内酯和其他基因的调节情况。在暴露于单一应激高温时,分枝杆菌内酯的表达下调,在暴露于紫外线时无显著变化;然而,在微需氧条件下表达上调。在高温和低氧的联合应激下,分枝杆菌内酯的表达下调,但有几个应激反应基因上调。综上所述,结果表明温度对溃疡分枝杆菌代谢反应的影响比紫外线照射或氧气需求更大。这些数据有助于确定溃疡分枝杆菌的环境生态位以及人类初次感染期间的代谢反应。布鲁里溃疡是一种由环境病原体溃疡分枝杆菌引起的使人衰弱的皮肤病。溃疡分枝杆菌产生一种有毒化合物——分枝杆菌内酯,可导致组织坏死和溃疡。预防布鲁里溃疡的障碍包括对溃疡分枝杆菌储存宿主的不完全了解、病原体的传播方式以及在何种情况下分枝杆菌内酯和溃疡分枝杆菌的其他基因在其自然环境和宿主体内表达并产生。我们进行了一项研究,以调查溃疡分枝杆菌在几种单独或联合的非生物条件下的基因表达情况。我们的数据表明,在高温和低氧的联合应激下,分枝杆菌内酯的表达下调,但有几个应激反应基因上调。这些数据是仅有的几项测量分枝杆菌内酯和溃疡分枝杆菌其他可能参与其自然环境中病原体适应性和宿主体内毒力的基因调节的研究之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3fc/10100886/9198a0b030dd/spectrum.04968-22-f001.jpg

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