Huvent Isabelle, Belrhali Hassan, Antoine Rudy, Bompard Coralie, Locht Camille, Jacob-Dubuisson Françoise, Villeret Vincent
CNRS-UMR8117 Institut de Biologie de Lille, Institut Pasteur de Lille, 1 rue du Professeur Calmette, BP245 59021 Lille cedex, France.
J Mol Biol. 2006 Mar 3;356(4):1014-26. doi: 10.1016/j.jmb.2005.11.096. Epub 2005 Dec 21.
Periplasmic binding proteins of a new family particularly well represented in Bordetella pertussis have been called Bug receptors. One B.pertussis Bug protein is part of a tripartite tricarboxylate transporter while the functions of the other 77 are unknown. We report the first structure of a Bug receptor, BugD. It adopts the characteristic Venus flytrap motif observed in other periplasmic binding proteins, with two globular domains bisected by a deep cleft. BugD displays a closed conformation resulting from the fortuitous capture of a ligand, identified from the electron density as an aspartate. The structure reveals a distinctive alpha carboxylate-binding motif, involving two water molecules that bridge the carboxylate oxygen atoms to the protein. Both water molecules are hydrogen bonded to a common carbonyl group from Ala14, and each forms a hydrogen bond with one carboxylate oxygen atom of the ligand. Additional hydrogen bonds are found between the ligand alpha carboxylate oxygen atoms and protein backbone amide groups and with a threonine hydroxyl group. This specific ligand-binding motif is highly conserved in Bug proteins, indicating that they may all be receptors of amino acids or other carboxylated solutes, with a similar binding mode. The present structure thus unveils the bases of ligand binding in this large family of periplasmic binding proteins, several hundred members of which have been identified in various bacterial species.
在百日咳博德特氏菌中特别典型的一个新家族的周质结合蛋白被称为Bug受体。一种百日咳博德特氏菌Bug蛋白是三方三羧酸转运体的一部分,而其他77种的功能尚不清楚。我们报道了Bug受体BugD的首个结构。它采用了在其他周质结合蛋白中观察到的特征性捕蝇草夹子基序,有两个球状结构域被一个深裂缝一分为二。BugD呈现出一种封闭构象,这是由于偶然捕获了一种配体,从电子密度确定为天冬氨酸。该结构揭示了一个独特的α-羧酸盐结合基序,涉及两个水分子,它们将羧酸盐氧原子与蛋白质相连。两个水分子都与Ala14的一个共同羰基形成氢键,并且每个水分子与配体的一个羧酸盐氧原子形成氢键。在配体α-羧酸盐氧原子与蛋白质主链酰胺基团以及与一个苏氨酸羟基之间还发现了额外的氢键。这种特定的配体结合基序在Bug蛋白中高度保守,表明它们可能都是氨基酸或其他羧化溶质的受体,具有相似的结合模式。因此,目前的结构揭示了这个大周质结合蛋白家族中配体结合的基础,在各种细菌物种中已鉴定出数百个该家族成员。