Galante Joana, Ho Alfred C-Y, Tingey Sarah, Charalambous Bambos M
Centre for Clinical Microbiology, UCL Medical School Royal Free Campus Rowland Hill Street London NW3 2PF.
Curr Pharm Des. 2015;21(1):25-30. doi: 10.2174/1381612820666140905113336.
Bacteria are able to colonize and thrive in a variety of different environments as a biofilm, but only within the last half century new insights have been gained in this complex biosystem. Bacterial biofilms play a major role in human health by forming a defensive barrier against antibacterial chemical therapeutics and other potential pathogens, and in infectious disease when the bacteria invade normally sterile compartments. Quorum sensing is the signaling network for cell-to-cell communication and utilized by bacteria to regulate biofilms and other cellular processes. This review will describe recent advances in quorum sensing and biofilms. Initially, it will focus on Streptococcus pneumoniae biofilm regulation and the involvement of the ComABCDE pathway. As part of this review an original analysis of the genotypic and phenotypic variation of the signaling molecule, ComC and its cognate receptor ComD, firstly within the pneumococcal species and then within the genus Streptococcus will be presented. Additionally, a pathway similar to ComABCDE, the BlpABCSRH that regulates bacteriocin and immunity protein production that inhibit the growth of competing bacteria will be described. This review will then examine a third quorum sensing mechanism in the pneumococcus, the LuxS/AI-2, and present a novel gene and protein sequence comparative analysis that indicates its occurrence is more universal across bacterial genera compared with the Com pathway, with more sequence similarities between bacterial genera that are known to colonize the mucosal epithelium.
细菌能够以生物膜的形式在各种不同环境中定殖并茁壮成长,但直到最近半个世纪,人们才对这个复杂的生物系统有了新的认识。细菌生物膜通过形成对抗抗菌化学疗法和其他潜在病原体的防御屏障,在人类健康中发挥重要作用,而当细菌侵入通常无菌的腔室时,生物膜则在传染病中起作用。群体感应是细胞间通讯的信号网络,细菌利用它来调节生物膜和其他细胞过程。本综述将描述群体感应和生物膜方面的最新进展。首先,它将聚焦于肺炎链球菌生物膜调控以及ComABCDE途径的参与情况。作为本综述的一部分,将首先呈现对信号分子ComC及其同源受体ComD在肺炎链球菌种内以及随后在链球菌属内的基因型和表型变异的原始分析。此外,还将描述一种类似于ComABCDE的途径,即调节细菌素和免疫蛋白产生以抑制竞争细菌生长的BlpABCSRH途径。本综述随后将研究肺炎链球菌中的第三种群体感应机制,即LuxS/AI-2,并进行一项新的基因和蛋白质序列比较分析,结果表明与Com途径相比,其在细菌属中的出现更为普遍,在已知定殖于粘膜上皮的细菌属之间具有更多的序列相似性。