Department of Microbiology, University of Washington, Seattle, WA 98195-7242, USA.
Mol Microbiol. 2010 Apr;76(2):489-502. doi: 10.1111/j.1365-2958.2010.07116.x. Epub 2010 Mar 25.
In the intestine, enterotoxigenic Escherichia coli works against peristaltic forces, adhering to the epithelium via the colonization factor antigen I (CFA/I) fimbrial adhesin CfaE. The CfaE adhesin is similar in localization and tertiary (but not primary) structure to FimH, the type 1 fimbrial adhesin of uropathogenic E. coli, which shows shear-dependent binding to epithelial receptors by an allosteric catch-bond mechanism. Thus, we speculated that CfaE is also capable of shear-enhanced binding. Indeed, bovine erythrocytes coursing over immobilized CFA/I fimbriae in flow chambers exhibited low accumulation levels and fast rolling at low shear, but an 80-fold increase in accumulation and threefold decrease in rolling velocity at elevated shear. This effect was reversible and abolished by pre-incubation of fimbriae with anti-CfaE antibody. Erythrocytes bound to whole CfaE in the same shear-enhanced manner, but to CfaE adhesin domain in a shear-inhibitable fashion. Residue replacements designed to disrupt CfaE interdomain interaction decreased the shear dependency of adhesion and increased binding under static conditions to human intestinal epithelial cells. These findings indicate that close interaction between adhesive and anchoring pilin domains of CfaE keeps the former in a low-affinity state that toggles into a high-affinity state upon separation of two domains, all consistent with an allosteric catch-bond mechanism of CfaE binding.
在肠道中,肠毒素性大肠杆菌通过定植因子抗原 I(CFA/I)菌毛黏附素 CfaE 对抗蠕动力量,黏附在上皮细胞上。CfaE 黏附素在定位和三级(但不是一级)结构上与尿路致病性大肠杆菌的 1 型菌毛黏附素 FimH 相似,FimH 通过变构捕获键机制在剪切依赖性的情况下与上皮细胞受体结合。因此,我们推测 CfaE 也能够增强剪切结合。事实上,在流动室中流过固定化 CFA/I 菌毛的牛红细胞表现出低积累水平和低剪切时快速滚动,但在高剪切时积累增加 80 倍,滚动速度降低 3 倍。这种效应是可逆的,并且在用抗 CfaE 抗体预孵育菌毛后被消除。红细胞以相同的剪切增强方式与整个 CfaE 结合,但以剪切抑制方式与 CfaE 黏附素结构域结合。设计用于破坏 CfaE 结构域间相互作用的残基替换降低了黏附的剪切依赖性,并增加了在静态条件下与人类肠道上皮细胞的结合。这些发现表明,CfaE 的黏附与锚定菌毛结构域之间的紧密相互作用使前者保持在低亲和力状态,当两个结构域分离时,切换到高亲和力状态,这与 CfaE 结合的变构捕获键机制一致。