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Biological nanofactories target and activate epithelial cell surfaces for modulating bacterial quorum sensing and interspecies signaling

机译:生物纳米工厂靶向并激活上皮细胞表面,以调节细菌群体感应和种间信号传导

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In order to control the behavior of bacteria present at the surface of human epithelial cells, we have created a biological "nanofactory" construct that "coats" the epithelial cells and "activates" the surface to produce the bacterial quorum sensing signaling molecule, autoinducer-2 (AI-2). Specifically, we demonstrate directed modulation of signaling among Escherichia coli cells grown over the surface of human epithelial (Caco-2) cells through site-directed attachment of biological nanofactories. These "factories" comprise a fusion protein expressed and purified from E. coli containing two AI-2 bacterial synthases (Pfs and LuxS), a protein G IgG binding domain, and affinity ligands for purification. The final factory is fabricated ex vivo by incubating with an anti-CD26 antibody that binds the fusion protein and specifically targets the CD26 dipeptidyl peptidase found on the outer surface of Caco-2 cells. This is the first report of the intentional "in vitro" synthesis of bacterial autoinducers at the surface of epithelial cells for the redirection of quorum sensing behaviors of bacteria. We envision tools such as this will be useful for interrogating, interpreting, and disrupting signaling events associated with the microbiome localized in human intestine and other environments.
机译:为了控制存在于人类上皮细胞表面的细菌的行为,我们创建了一种生物学的“纳米工厂”构建体,可以“包被”上皮细胞并“激活”该表面以产生细菌群体感应信号分子,即自动诱导子。 2(AI-2)。具体来说,我们展示了通过人类纳米工厂的定点附着,在人类上皮(Caco-2)细胞表面生长的大肠杆菌细胞之间的信号传导的定向调节。这些“工厂”包含从大肠杆菌表达和纯化的融合蛋白,该融合蛋白包含两个AI-2细菌合酶(Pfs和LuxS),蛋白G IgG结合域和用于纯化的亲和配体。通过与结合融合蛋白并特异性靶向Caco-2细胞外表面的CD26二肽基肽酶的抗CD26抗体一起温育,最终制造出了最终的工厂。这是有意“体外”合成上皮细胞表面细菌自诱导剂以重定向细菌群体感应行为的报道。我们设想诸如此类的工具将对询问,解释和破坏与人类肠道和其他环境中定位的微生物组相关的信号传递事件有用。

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