Increased Proteolytic Activity of Serratia marcescens Clinical Isolate HU1848 Is Associated with Higher eepR Expression.

Polish journal of microbiology Pub Date : 2024-03-04 eCollection Date: 2024-03-01 DOI:10.33073/pjm-2024-002
Karla L De Anda-Mora, Faviola Tavares-Carreón, Carlos Alvarez, Samantha Barahona, Miguel A Becerril-García, Rogelio J Treviño-Rangel, Rodolfo García-Contreras, Angel Andrade
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Abstract

Serratia marcescens is a global opportunistic pathogen. In vitro cytotoxicity of this bacterium is mainly related to metalloprotease serralysin (PrtS) activity. Proteolytic capability varies among the different isolates. Here, we characterized protease production and transcriptional regulators at 37°C of two S. marcescens isolates from bronchial expectorations, HU1848 and SmUNAM836. As a reference strain the insect pathogen S. marcescens Db10 was included. Zymography of supernatant cultures revealed a single (SmUNAM836) or double proteolytic zones (HU1848 and Db10). Mass spectrometry confirmed the identity of PrtS and the serralysin-like protease SlpB from supernatant samples. Elevated proteolytic activity and prtS expression were evidenced in the HU1848 strain through azocasein degradation and qRT-PCR, respectively. Evaluation of transcriptional regulators revealed higher eepR expression in HU1848, whereas cpxR and hexS transcriptional levels were similar between studied strains. Higher eepR expression in HU1848 was further confirmed through an in vivo transcriptional assay. Moreover, two putative CpxR binding motifs were identified within the eepR regulatory region. EMSA validated the interaction of CpxR with both motifs. The evaluation of eepR transcription in a cpxR deletion strain indicated that CpxR negatively regulates eepR. Sequence conservation suggests that regulation of eepR by CpxR is common along S. marcescens species. Overall, our data incorporates CpxR to the complex regulatory mechanisms governing eepR expression and associates the increased proteolytic activity of the HU1848 strain with higher eepR transcription. Based on the global impact of EepR in secondary metabolites production, our work contributes to understanding virulence factors variances across S. marcescens isolates.

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Serratia marcescens 临床菌株 HU1848 蛋白质分解活性的提高与 eepR 的高表达有关。
Serratia marcescens 是一种全球性机会性病原体。这种细菌的体外细胞毒性主要与金属蛋白酶丝裂蛋白(PrtS)活性有关。不同分离株的蛋白水解能力各不相同。在此,我们对两种从支气管祛痰中分离出来的 S. marcescens(HU1848 和 SmUNAM836)在 37°C 温度下的蛋白酶产生和转录调节因子进行了鉴定。昆虫病原体 S. marcescens Db10 也是参考菌株。上清液培养物的酶谱分析显示出单一(SmUNAM836)或双重蛋白水解区(HU1848 和 Db10)。质谱分析证实了上清样品中 PrtS 和丝裂蛋白样蛋白酶 SlpB 的特性。通过偶氮酪蛋白降解和 qRT-PCR 分别证明了 HU1848 菌株蛋白水解活性和 prtS 表达的升高。对转录调节因子的评估显示,HU1848 中 eepR 的表达量较高,而 cpxR 和 hexS 的转录水平在所研究的菌株中相似。体内转录测定进一步证实了 HU1848 中较高的 eepR 表达量。此外,还在 eepR 调控区内发现了两个推定的 CpxR 结合基团。EMSA 验证了 CpxR 与这两个基团的相互作用。在 cpxR 缺失菌株中对 eepR 转录的评估表明,CpxR 对 eepR 具有负调控作用。序列保护表明,CpxR 对 eepR 的调控在 S. marcescens 物种中很常见。总之,我们的数据将 CpxR 纳入 eepR 表达的复杂调控机制,并将 HU1848 菌株蛋白水解活性的提高与 eepR 转录量的增加联系起来。基于 EepR 在次生代谢物生产中的全球影响,我们的工作有助于了解不同 S. marcescens 分离物的毒力因子差异。
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