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Nucleator function of CsgB for the assembly of adhesive surface organelles in Escherichia coli.

机译:CsgB的成核剂功能在大肠杆菌中粘附表面细胞器的组装。

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摘要

Curli are surface organelles in Escherichia coli that assemble outside the bacterium through the precipitation of secreted soluble CsgA monomers, requiring the CsgB nucleator protein. Using immunoelectron microscopy and immunoblotting assays, CsgB is shown to be located on the bacterial surface and also as a minor component of wild-type curli. CsgB lacking its 20 N-terminal residues when fused to maltose-binding protein (MBP) can still trigger polymerization of CsgA monomers in vivo. However, the resulting surface organelles are only formed at one of the two bacterial poles and are morphologically distinct from wild-type curli. These Bfco organelles (CsgB-Free Curli-related Organelles) are highly regular structures reacting with anti-CsgA, but not anti-CsgB antibodies. The CsgB of the active MBP-CsgBII fusion is surface exposed but, unlike the native CsgB in wild-type curli, is not detectable in the Bfco organelles. Overexpression of csgB within a csgA mutant results in the formation of short CsgB polymers on the cell surface. It is suggested that in wild-type bacteria, both CsgA and CsgB are secreted proteins. Interaction between CsgA and CsgB triggers wild-type curli formation, resulting in CsgA-CsgB heteropolymers, while surface-anchored CsgB in MBP-CsgBII triggers morphologically distinct, CsgB-free/CsgA Bfco organelles. In the absence of CsgA, CsgB can self-assemble into polymers.
机译:Curli是大肠杆菌中的表面细胞器,其通过分泌的可溶性CsgA单体的沉淀而在细菌外部组装,需要CsgB成核蛋白。使用免疫电子显微镜和免疫印迹测定法,CsgB被证明位于细菌表面,并且是野生型卷曲菌的次要成分。与麦芽糖结合蛋白(MBP)融合时,缺少20个N末端残基的CsgB仍可在体内触发CsgA单体的聚合。然而,所得的表面细胞器仅在两个细菌极之一处形成,并且在形态上不同于野生型卷曲。这些Bfco细胞器(不含CsgB的Curli相关细胞器)是与抗CsgA而非反CsgB抗体反应的高度规则的结构。活性MBP-CsgBII融合体的CsgB表面暴露,但与野生型curli中的天然CsgB不同,在Bfco细胞器中无法检测到。 csgA突变体中csgB的过表达导致在细胞表面形成短CsgB聚合物。提示在野生型细菌中,CsgA和CsgB都是分泌蛋白。 CsgA和CsgB之间的相互作用会触发野生型curli形成,从而导致CsgA-CsgB杂聚物,而MBP-CsgBII中表面锚定的CsgB会触发形态独特的CsgB-free / CsgA Bfco细胞器。在没有CsgA的情况下,CsgB可以自组装成聚合物。

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