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Substrate binding by a bacterial ABC transporter involved in polysaccharide export

机译:底物与参与多糖出口的细菌ABC转运蛋白的结合

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ATP-binding-cassette (ABC) transporters are responsible for the export of a wide variety of cell-surface glycoconjugates in both Gram-positive and Gram-negative bacteria. These include the O-antigenic polysaccharide (O-PS) portion of lipopolysaccharide, a crucial virulence determinant in Gram-negative pathogens. O-PSs are synthesized by one of two fundamentally different pathways. Escherichia coli O serotypes O8 and O9a provide the prototype systems for studying O-PS export via ABC transporters. The transporter is composed of the transmembrane component Wzm and the nucleotide-binding component Wzt. Although the N-terminal domain of Wzt is a conventional ABC protein, the C-terminal domain of Wzt (C-Wzt) is a unique structural element that determines the specificity of the transporter for either the O8 or O9a O-PS. We show here that the two domains of Wzt can function when expressed as separate polypeptides; both are essential for export. In vitro, C-Wzt binds its cognate O-PS by recognizing a residue located at the nonreducing end of the polymer. The crystal structure of C-Wzt_(O9a) is reported here and reveals a β sandwich with an immunoglobulin-like topology that contains the O-PS-binding pocket. Substrate interactions with nucleotide-binding domains have been demonstrated in an ABC exporter previously. However, to our knowledge substrate binding by a discrete, cytoplasmic accessory domain in an extended nucleotide-binding domain polypeptide has not previously been demonstrated. Elucidation of the substrate-recognition system involved in O-PS export provides insight into the mechanism that coordinates polymer biosynthesis, termination, and export.
机译:ATP结合盒(ABC)转运蛋白负责革兰氏阳性和革兰氏阴性细菌中多种细胞表面糖缀合物的输出。这些包括脂多糖的O抗原多糖(O-PS)部分,这是革兰氏阴性病原体中至关重要的毒力决定因素。 O-PS通过两种根本不同的途径之一合成。大肠杆菌O血清型O8和O9a提供了用于研究通过ABC转运蛋白输出O-PS的原型系统。转运蛋白由跨膜成分Wzm和核苷酸结合成分Wzt组成。尽管Wzt的N末端结构域是常规的ABC蛋白,但Wzt的C末端结构域(C-Wzt)是一个独特的结构元件,决定了O8或O9a O-PS转运蛋白的特异性。我们在这里显示,Wzt的两个结构域在表达为单独的多肽时可以发挥功能。两者对于出口都是必不可少的。在体外,C-Wzt通过识别位于聚合物非还原端的残基来结合其同源O-PS。这里报道了C-Wzt_(O9a)的晶体结构,揭示了具有免疫球蛋白样拓扑结构的β三明治,其中包含O-PS结合袋。先前已在ABC出口商中证明了与核苷酸结合结构域的底物相互作用。然而,据我们所知,先前尚未证明底物通过延伸的核苷酸结合域多肽中的离散的细胞质辅助域结合。阐明了O-PS出口涉及的底物识别系统,可深入了解协调聚合物生物合成,终止和出口的机制。

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