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细菌菌毛结合位点。

Combining sites of bacterial fimbriae.

作者信息

De Greve Henri, Wyns Lode, Bouckaert Julie

机构信息

Department of Molecular and Cellular Interactions, VIB, Vrije Universiteit Brussel, Pleinlaan 2, B-1050 Brussels, Belgium.

出版信息

Curr Opin Struct Biol. 2007 Oct;17(5):506-12. doi: 10.1016/j.sbi.2007.06.011. Epub 2007 Aug 23.

Abstract

The few known crystal structures of receptor-binding domains of fimbrial tip adhesins, FimH, PapGII, and F17G, tell us that each of these structures is unique and surprising. Despite little to no sequence identity, common to them all is their variable immunoglobulin (Ig)-fold. Nevertheless, their glycan-binding sites have evolved in different locations onto this similar scaffold, and with distinct, highly specific binding properties. Difficult to capture is the often dominant role played by the fimbrial shaft in host cell recognition and biofilm formation. The major pilin FaeG, building up the shaft of F4 fimbriae, also harbors the carbohydrate receptor-binding property and has thereto an enlarged Ig-domain, with the insertion of two beta-strands and two alpha-helices. Bordetella and CFA/I fimbriae combine a tip adhesin with major subunit adhesins. Still other fimbriae incorporate a specialized invasin at the very tip of polyadhesive fibers for uptake of bacteria in cells of the immune system and host epithelia. Finally, glycan recognition by fimbrial adhesins has often been found to coincide with the binding of cell-surface integrins and components of the extracellular matrix, such as collagen IV and laminin.

摘要

已知的菌毛尖端粘附素FimH、PapGII和F17G的受体结合结构域的晶体结构很少,这些结构中的每一个都是独特且令人惊讶的。尽管它们之间几乎没有序列同一性,但它们的共同之处在于其可变免疫球蛋白(Ig)折叠。然而,它们的聚糖结合位点在这个相似的支架上进化到了不同的位置,并且具有独特的、高度特异性的结合特性。菌毛杆在宿主细胞识别和生物膜形成中通常起主导作用,这一点很难捕捉到。构成F4菌毛杆的主要菌毛蛋白FaeG也具有碳水化合物受体结合特性,并且为此具有一个扩大的Ig结构域,插入了两条β链和两条α螺旋。博德特氏菌和CFA/I菌毛将尖端粘附素与主要亚基粘附素结合在一起。还有其他一些菌毛在多粘附纤维的尖端结合了一种特殊的侵袭素,用于细菌进入免疫系统细胞和宿主上皮细胞。最后,人们经常发现菌毛粘附素的聚糖识别与细胞表面整合素以及细胞外基质成分(如IV型胶原和层粘连蛋白)的结合相吻合。

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