Vance Tyler D R, Ye Qilu, Conroy Brigid, Davies Peter L
Department of Biomedical and Molecular Science, Queen's University Kingston ON, Canada.
J Struct Biol X. 2020 Sep 8;4:100036. doi: 10.1016/j.yjsbx.2020.100036. eCollection 2020.
RTX adhesins are long, multi-domain proteins present on the outer membrane of many Gram-negative bacteria. From this vantage point, adhesins use their distal ligand-binding domains for surface attachment leading to biofilm formation. To expand the reach of the ligand-binding domains, RTX adhesins maintain a central extender region of multiple tandem repeats, which makes up most of the proteins' large molecular weight. Alignments of the 10-15-kDa extender domains show low sequence identity between adhesins. Here we have produced and structurally characterized protein constructs of four tandem repeats (tetra-tandemers) from two different RTX adhesins. In comparing the tetra-tandemers to each other and already solved structures from and , the extender domains fold as diverse beta-sandwich structures with widely differing calcium contents. However, all the tetra-tandemers have at least one calcium ion coordinated in the linker region between beta-sandwich domains whose role appears to be the rigidification of the extender region to help the adhesin extend its reach.
RTX黏附素是存在于许多革兰氏阴性菌外膜上的长链多结构域蛋白。从这个角度来看,黏附素利用其远端配体结合结构域进行表面附着,从而导致生物膜形成。为了扩大配体结合结构域的作用范围,RTX黏附素维持着一个由多个串联重复序列组成的中央延伸区域,该区域构成了蛋白质大部分的大分子量。10 - 15 kDa延伸结构域的比对显示,不同黏附素之间的序列同一性较低。在这里,我们制备了来自两种不同RTX黏附素的四个串联重复序列(四串联体)的蛋白质构建体,并对其进行了结构表征。在将四串联体相互比较以及与已解析结构进行比较时,延伸结构域折叠成具有广泛不同钙含量的多样β-三明治结构。然而,所有四串联体在β-三明治结构域之间的连接区域至少有一个钙离子配位,其作用似乎是使延伸区域刚性化,以帮助黏附素扩大其作用范围。