首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Crystal structure of the cell wall anchor domain of MotB, a stator component of the bacterial flagellar motor: Implications for peptidoglycan recognition
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Crystal structure of the cell wall anchor domain of MotB, a stator component of the bacterial flagellar motor: Implications for peptidoglycan recognition

机译:MotB的细胞壁锚结构域的晶体结构,细菌鞭毛运动的定子组件:肽聚糖识别的意义。

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The stator ring of the bacterial flagellar motor is composed of the MotA and MotB proteins that act together to generate a turning force (torque) acting on the FliG ring of the rotor. The C-terminal domain of MotB (MotB-C) is believed to anchor the MotA/MotB complex to peptidoglycan (PG) of the cell wall. The first crystal structures of MotB-C and its complex with N-acetylmuramic acid (NAM) have been determined to 1.6- and 2.3-A resolution, respectively. MotB-C is a dimer, both in solution and in the crystal. The two glycan chains of the PG ligand can be modeled as semirigid helices and docked into the grooves harboring the NAM molecules on the opposite faces of the dimer. The model suggests that a concave hydrophilic surface created upon edge-to-edge β-sheet dimerization and centered around the 2-fold axis of the dimer can accommodate the peptide cross-bridge linking the two sugar chains. Significant structural similarities were found between MotB-C and the PG-binding domains of reduction-modifiable protein M and peptidoglycan-associated lipoprotein exclude, suggesting that PG recognition by different outer membrane protein A-like proteins may be governed by very similar molecular mechanisms that evidently involve protein dimerization.
机译:细菌鞭毛马达的定子环由MotA和MotB蛋白组成,它们共同作用以产生作用在转子FliG环上的转向力(扭矩)。据信MotB的C末端结构域(MotB-C)将MotA / MotB复合物锚定在细胞壁的肽聚糖(PG)上。已确定MotB-C的第一晶体结构及其与N-乙酰基尿酸(NAM)的复合物的分辨度分别为1.6-和2.3-A。 MotB-C在溶液和晶体中都是二聚体。 PG配体的两条聚糖链可以建模为半刚性螺旋,并与二聚体相对面上带有NAM分子的凹槽对接。该模型表明,从边缘到边缘的β-折叠二聚化产生的凹形亲水性表面以二聚体的2倍轴为中心,可以容纳连接两个糖链的肽跨桥。发现MotB-C与还原修饰性蛋白M和肽聚糖相关脂蛋白的PG结合结构域之间存在显着的结构相似性,这表明不同外膜蛋白A样蛋白对PG的识别可能受非常相似的分子机制控制显然涉及蛋白质二聚化。

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