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Unusual features and molecular pathways of Staphylococcus aureus L-form bacteria

机译:金黄色葡萄球菌L形细菌的异常特征和分子途径

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Staphylococcus aureus can be converted to cell wall-deficient L-form bacteria in specific environment which is associated with recurrent and persistent infections. The biophysical properties and molecular basis involved in S. aureus L-form formation are poorly understood. Here, S. aureus unstable L-form model was established not only in Newman strain, but also in ATCC 25923 and five different antibiotic-resistant clinical strains, and the morphology and mechanical properties of Newman strain L-forms were characterized by using atomic force microscopy. Meanwhile, zeta potential, growth and proliferation properties, and hemolysis of L-forms were determined. Gene expression changes involved in transition from S. aureus wild type into L-forms were identified. Our studies showed that L-form S. aureus presented pleomorphism, rough surface, and higher elasticity modulus. L-forms were characterized by less surface charge and had higher hemolysis than the walled form. The S. aureus L-form "fried egg" colony was derived from a single bacterium rather than from aggregation of different bacterial cells. Transcriptomics analysis revealed that several pathways involved in energy metabolism, stress response, protein synthesis, RNA metabolism, and virulence were involved in L-form formation in S. aureus. Our results shed new light on the biological properties and mechanisms underlying L-form formation in S. aureus. These findings will not only be useful for understanding the unique properties and mechanisms of L-form bacteria, but also provide therapeutic targets for developing more effective treatments for S. aureus L-forms.
机译:葡萄球菌可以在特定环境中转化为细胞壁缺陷的L形状细菌,其与复发性和持续的感染相关。涉及S.UUREUS L-形式形成的生物物理性质和分子基础是较差的。这里,S.UUREUS不稳定的L形式模型不仅在Newman菌株中建立,而且在ATCC 25923和五种不同的抗生素抗性临床菌群中建立,并且使用原子力表征了Newman菌株L形式的形态和力学性能显微镜。同时,测定Zeta电位,生长和增殖性能和L形式的溶血。鉴定了从S.UUREUS野生型转变为L形式的转型中所涉及的基因表达变化。我们的研究表明,L形态的金黄色葡萄球菌呈现渗透,粗糙表面和更高的弹性模量。 L-形式的特征在于表面电荷较小,并且比壁形式更高的溶血性。 S.UUREUS L-FORM“煎蛋”菌落衍生自单细菌,而不是来自不同细菌细胞的聚集。转录组学分析显示,在S.金黄色葡萄球菌中,参与了能量代谢,应激响应,蛋白质合成,RNA代谢和毒力的几种途径。我们的结果阐明了在金黄色葡萄球菌中L形形成的生物学性质和机制的新光。这些发现不仅可用于理解L形式细菌的独特性质和机制,还可用于提供治疗靶标,以便为S.UUREUS L-SOMING培养更有效的治疗方法。

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