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为致龋进程供能:变形链球菌的碳水化合物代谢与基因调控。

Fueling the caries process: carbohydrate metabolism and gene regulation by Streptococcus mutans.

机构信息

Department of Oral Biology, College of Dentistry, University of Florida, Gainesville, FL, USA.

出版信息

J Oral Microbiol. 2014 Sep 5;6. doi: 10.3402/jom.v6.24878. eCollection 2014.

DOI:10.3402/jom.v6.24878
PMID:25317251
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4157138/
Abstract

The nature of the oral cavity and host behaviors has mandated that the oral microbiota evolve mechanisms for coping with environmental fluctuations, especially changes in the type and availability of carbohydrates. In the case of human dental caries, the presence of excess carbohydrates is often responsible for altering the local environment to be more favorable for species associated with the initiation and progression of disease, including Streptococcus mutans. Some of the earliest endeavors to understand how cariogenic species respond to environmental perturbations were carried out using chemostat cultivation, which provides fine control over culture conditions and bacterial behaviors. The development of genome-scale methodologies has allowed for the combination of sophisticated cultivation technologies with genome-level analysis to more thoroughly probe how bacterial pathogens respond to environmental stimuli. Recent investigations in S. mutans and other closely related streptococci have begun to reveal that carbohydrate metabolism can drastically impact pathogenic potential and highlight the important influence that nutrient acquisition has on the success of pathogens; inside and outside of the oral cavity. Collectively, research into pathogenic streptococci, which have evolved in close association with the human host, has begun to unveil the essential nature of careful orchestration of carbohydrate acquisition and catabolism to allow the organisms to persist and, when conditions allow, initiate or worsen disease.

摘要

口腔的本质和宿主行为要求口腔微生物群进化出应对环境波动的机制,特别是应对碳水化合物的类型和可利用性变化的机制。在人类龋齿的情况下,过量碳水化合物的存在通常会导致局部环境发生变化,更有利于与疾病的起始和进展相关的物种,包括变形链球菌。为了了解致龋物种如何应对环境干扰,人们最早进行了一些尝试,使用恒化培养来进行研究,恒化培养可以对培养条件和细菌行为进行精细控制。基因组规模方法的发展使得复杂的培养技术与基因组水平分析相结合成为可能,从而更深入地探究了细菌病原体如何对环境刺激做出反应。最近对变形链球菌和其他密切相关的链球菌的研究开始揭示,碳水化合物代谢可以极大地影响致病潜力,并强调了营养物质获取对病原体成功的重要影响,无论是在口腔内部还是外部。总的来说,对与人类宿主密切相关的致病链球菌的研究开始揭示出精心协调碳水化合物获取和分解代谢的本质,以使生物体得以存活,并在条件允许的情况下引发或加重疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e983/4157138/f4e4c1ae4ec5/JOM-6-24878-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e983/4157138/b1617208f3bd/JOM-6-24878-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e983/4157138/f4e4c1ae4ec5/JOM-6-24878-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e983/4157138/b1617208f3bd/JOM-6-24878-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e983/4157138/f4e4c1ae4ec5/JOM-6-24878-g002.jpg

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