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变形链球菌通过诱导肽(XIP)进行的细胞间通讯。

Intercellular Communication via the -Inducing Peptide (XIP) of Streptococcus mutans.

作者信息

Kaspar Justin, Underhill Simon A M, Shields Robert C, Reyes Adrian, Rosenzweig Suzanne, Hagen Stephen J, Burne Robert A

机构信息

Department of Oral Biology, University of Florida, Gainesville, Florida, USA.

Department of Physics, University of Florida, Gainesville, Florida, USA.

出版信息

J Bacteriol. 2017 Oct 3;199(21). doi: 10.1128/JB.00404-17. Print 2017 Nov 1.

Abstract

Gram-positive bacteria utilize exported peptides to coordinate genetic and physiological processes required for biofilm formation, stress responses, and ecological competitiveness. One example is activation of natural genetic competence by ComR and the -nducing eptide (XIP) in Although the competence pathway can be activated by the addition of synthetic XIP in defined medium, the hypothesis that XIP is able to function as an intercellular signaling molecule has not been rigorously tested. Coculture model systems were developed that included a "sender" strain that overexpressed the XIP precursor (ComS) and a "responder" strain harboring a green fluorescent protein (GFP) reporter fused to a ComR-activated gene () promoter. The ability of the sender strain to provide a signal to activate GFP expression was monitored at the individual cell and population levels using (i) planktonic culture systems, (ii) cells suspended in an agarose matrix, or (iii) cells growing in biofilms. XIP was shown to be freely diffusible, and XIP signaling between the sender and responder strains did not require cell-to-cell contact. The presence of a sucrose-derived exopolysaccharide matrix diminished the efficiency of XIP signaling in biofilms, possibly by affecting the spatial distribution of XIP senders and potential responders. Intercellular signaling was greatly impaired in a strain lacking the primary autolysin, AtlA, and was substantially greater when the sender strain underwent lysis. Collectively, these data provide evidence that XIP can indeed function as a peptide signal between cells and highlight the importance of studying signaling with an endogenously produced peptide(s) in populations in various environments and physiologic states. The -inducing peptide (XIP) of is a key regulatory element in the activation of genetic competence, which allows cells to take up extracellular DNA. XIP has been found in cell culture fluids, and the addition of synthetic XIP to physiologically receptive cells can robustly induce competence gene expression. However, there is a lack of consensus as to whether XIP can function as an intercellular communication signal. Here, we show that XIP indeed signals between cells in , but that cell lysis may be a critical factor, as opposed to a dedicated secretion/processing system, in allowing for release of XIP into the environment. The results have important implications in the context of the ecology, virulence, and evolution of a ubiquitous human pathogen and related organisms.

摘要

革兰氏阳性菌利用分泌出的肽来协调生物膜形成、应激反应和生态竞争力所需的遗传和生理过程。一个例子是ComR和诱导肽(XIP)在 中激活自然遗传转化能力。尽管在特定培养基中添加合成XIP可以激活转化途径,但XIP能够作为细胞间信号分子发挥作用这一假设尚未得到严格验证。我们开发了共培养模型系统,其中包括一个过表达XIP前体(ComS)的“信号发送”菌株和一个带有与ComR激活基因()启动子融合的绿色荧光蛋白(GFP)报告基因的“信号响应”菌株。使用(i)浮游培养系统、(ii)悬浮在琼脂糖基质中的细胞或(iii)在生物膜中生长的细胞,在个体细胞和群体水平上监测信号发送菌株提供激活GFP表达信号的能力。结果表明XIP可自由扩散,信号发送菌株和信号响应菌株之间的XIP信号传导不需要细胞间接触。蔗糖衍生的胞外多糖基质的存在降低了生物膜中XIP信号传导的效率,可能是通过影响XIP信号发送者和潜在信号响应者的空间分布。在缺乏主要自溶素AtlA的菌株中,细胞间信号传导受到极大损害,而当信号发送菌株发生裂解时,细胞间信号传导则显著增强。总体而言,这些数据证明XIP确实可以作为细胞间的肽信号发挥作用,并突出了研究内源性产生的肽在各种环境和生理状态下群体中的信号传导的重要性。 的诱导肽(XIP)是激活遗传转化能力的关键调节元件,遗传转化能力使细胞能够摄取细胞外DNA。XIP已在细胞培养液中被发现,将合成XIP添加到生理上易感受的细胞中可强烈诱导转化基因表达。然而,对于XIP是否能够作为细胞间通讯信号,目前尚无定论。在此,我们表明XIP确实在 细胞之间传递信号,但与专门的分泌/加工系统不同,细胞裂解可能是使XIP释放到环境中的关键因素。这些结果对于一种普遍存在的人类病原体及相关生物体的生态学、毒力和进化具有重要意义。

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