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The DNA-binding protein HU is a molecular glue that attaches bacteria to extracellular DNA in biofilms

机译:DNA结合蛋白Hu是将细菌粘合在生物膜中的细胞外DNA的分子胶水

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摘要

In biofilms, bacteria that possess a negatively charged surface are embedded within a matrix of polymers consisting mainly of negatively charged extracellular DNA (e-DNA). In all likelihood, a multivalent positively charged substance, for example, a basic protein, exists within biofilms to neutralize charge–charge repulsions and act as a ‘glue’ attaching negatively charged bacteria to negatively charged e-DNA; however, no protein capable of doing so has yet been identified. We decided to investigate whether a highly abundant nucleoid-associated histone-like protein (HU) happens to be the glue in question. In recent years, HU has been shown to possess qualities that could be considered desirable in the proposed glue, for example, (a) availability in association with e-DNA; (b) multivalent DNA binding; (c) non–sequence-specific DNA-binding; (d) enhancement of biofilm formation upon exogenous addition, and (e) disruption of biofilms, upon removal by HU–cognate antibodies. Geometric considerations suggest that basic residues in HU's canonical and noncanonical DNA-binding sites can interact with sugar-linked terminal phosphates in lipopolysaccharide (LPS) molecules in bacterial outer membranes. Here, using genetic, spectroscopic, biophysical–chemical, microscopy-based, and cytometry-based experiments, we demonstrate that HU's DNA-binding sites also bind to LPS, that this facilitates DNA–DNA, DNA–LPS, and LPS–LPS interactions, and that this facilitates bacterial clumping and attachment of bacteria to DNA. Exogenous addition of HU to bacteria in (nonshaken) cultures is shown to cause cells to become engulfed in a matrix of DNA, potentially arising from the lysis of bacteria with vulnerable cell walls (as they strain to grow, divide, and move away from each other, in opposition to the accreting influence of HUs).
机译:在生物膜中,具有带负电荷表面的细菌嵌入主要由带负电的细胞外DNA(E-DNA)组成的聚合物中。在所有可能性中,在生物膜内存在多价带正电的物质,例如碱性蛋白质,以中和电荷排斥,并充当带负电荷的细菌的“胶水”,以带负电荷的E-DNA;但是,没有能够识别出这样的蛋白质。我们决定探讨是否是一种高度丰富的核相关组蛋白样蛋白(HU)恰好是有问题的胶水。近年来,HU已被证明具有在所提出的胶水中可以考虑的品质,例如,(a)与E-DNA相关的可用性; (b)多价DNA结合; (c)非序列特异性DNA结合; (d)在外源添加时增强生物膜形成,并通过Hu-Cognate抗体除去后的生物膜破坏。几何考虑表明,HU的规范和非甘露糖性DNA结合位点中的基本残留物可以与细菌外膜中的脂多糖(LPS)分子中的糖连接末端磷酸盐相互作用。这里,使用基于遗传学,光谱法,生物物理学,显微镜和基于细胞术的实验,我们证明了Hu的DNA结合位点也与LPS结合,这有助于DNA-DNA,DNA-LP和LPS-LPS相互作用,这有助于细菌丛生和细菌的附着到DNA。外源添加HU(非结壳)培养物的细菌,导致细胞在DNA的基质中吞噬,可能由脆弱的细胞壁裂解细菌(随着它们的菌株生长,分开,分开,分开和移动。其他,同而代表HUS的凸起影响)。

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