Role of (p)ppGpp in antibiotic resistance, tolerance, persistence and survival in Firmicutes.

microLife Pub Date : 2023-03-11 eCollection Date: 2023-01-01 DOI:10.1093/femsml/uqad009
Andrea Salzer, Christiane Wolz
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Abstract

The stringent response and its signalling nucleotides, pppGpp and ppGpp, have been the subject of intense research since the discovery of (p)ppGpp in 1969. Recent studies have revealed that the downstream events that follow (p)ppGpp accumulation vary among species. Consequently, the stringent response as initially characterized in Escherichia coli largely differs from the response in Firmicutes (Bacillota), wherein synthesis and degradation of the messengers (p)ppGpp are orchestrated by the bifunctional Rel enzyme with synthetase and hydrolase activity and the two synthetases SasA/RelP and SasB/RelQ. Here we will summarize recent studies supporting the role of (p)ppGpp in the development of antibiotic resistance and tolerance as well as survival under adverse environmental conditions in Firmicutes. We will also discuss the impact of elevated (p)ppGpp levels on the development of persister cells and the establishment of persistent infections. (p)ppGpp levels are usually tightly controlled to allow optimal growth under non-stressed conditions. Upon the onset of certain 'stringent conditions' the sudden increase in (p)ppGpp levels limits growth while exerting protective effects. In Firmicutes, the (p)ppGpp-mediated restriction of GTP accumulation is one major mechanism of protection and survival under stresses such as antibiotic exposure.

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(p)ppGpp 在真菌的抗生素耐药性、耐受性、持久性和生存中的作用。
自 1969 年发现(pp)ppGpp 以来,严格反应及其信号核苷酸 pppGpp 和 ppGpp 一直是研究的热点。最近的研究发现,(p)ppGpp 积累后的下游事件因物种而异。因此,最初在大肠杆菌中描述的严格反应在很大程度上不同于在固氮菌(芽孢杆菌)中的反应,在后者中,信使 (p)ppGpp 的合成和降解是由具有合成酶和水解酶活性的双功能 Rel 酶以及两种合成酶 SasA/RelP 和 SasB/RelQ 协调进行的。在此,我们将总结最近的一些研究,这些研究支持(p)ppGpp 在发展抗生素耐药性和耐受性以及在恶劣环境条件下生存方面在真菌中的作用。我们还将讨论(p)ppGpp水平升高对宿主细胞的发育和持久感染的形成的影响。(p)ppGpp水平通常受到严格控制,以便在非应激条件下实现最佳生长。在某些 "苛刻条件 "下,(p)ppGpp 水平的突然升高会限制生长,同时产生保护作用。在真菌中,(p)ppGpp 介导的 GTP 积累限制是抗生素暴露等压力下保护和生存的主要机制之一。
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