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核苷酸结合结构域蛋白Wzt的C末端结构域决定了大肠杆菌O8和O9a血清型中脂多糖O抗原的ATP结合盒转运蛋白的底物特异性。

The C-terminal domain of the nucleotide-binding domain protein Wzt determines substrate specificity in the ATP-binding cassette transporter for the lipopolysaccharide O-antigens in Escherichia coli serotypes O8 and O9a.

作者信息

Cuthbertson Leslie, Powers Jacqueline, Whitfield Chris

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

J Biol Chem. 2005 Aug 26;280(34):30310-9. doi: 10.1074/jbc.M504371200. Epub 2005 Jun 24.

Abstract

The polymannan O-antigenic polysaccharides (O-PSs) of Escherichia coli O8 and O9a are synthesized via an ATP-binding cassette (ABC) transporter-dependent pathway. The group 2 capsular polysaccharides of E. coli serve as prototypes for polysaccharide synthesis and export via this pathway. Here, we show that there are some fundamental differences between the ABC transporter-dependent pathway for O-PS biosynthesis and the capsular polysaccharide paradigm. In the capsule system, mutants lacking the ABC transporter are viable, and membranes isolated from these strains are no longer able to synthesize polymer using an endogenous acceptor. In contrast, E. coli strains carrying mutations in the membrane component (Wzm) and/or the nucleotide-binding component (Wzt) of the O8 and O9a polymannan transporters are nonviable under conditions permissive to O-PS biosynthesis and take on an aberrant elongated cell morphology. Whereas the ABC transporters for capsular polysaccharides with different structures are functionally interchangeable, the O8 and O9a exporters are specific for their cognate polymannan substrates. The E. coli O8 and O9a Wzt proteins contain a C-terminal domain not present in the corresponding nucleotide-binding protein (KpsT) from the capsule exporter. Whereas the Wzm components are functionally interchangeable, albeit with reduced efficiency, the Wzt components are not, indicating a specific role for Wzt in substrate specificity. Chimeric Wzt proteins were constructed in order to localize the region involved in substrate specificity to the C-terminal domain.

摘要

大肠杆菌O8和O9a的多聚甘露糖O抗原多糖(O-PSs)是通过一种依赖ATP结合盒(ABC)转运蛋白的途径合成的。大肠杆菌的2型荚膜多糖是通过该途径进行多糖合成和输出的原型。在此,我们表明,O-PS生物合成的依赖ABC转运蛋白的途径与荚膜多糖模式之间存在一些根本差异。在荚膜系统中,缺乏ABC转运蛋白的突变体是可行的,并且从这些菌株中分离出的膜不再能够使用内源性受体合成聚合物。相比之下,在O8和O9a多聚甘露糖转运蛋白的膜成分(Wzm)和/或核苷酸结合成分(Wzt)中携带突变的大肠杆菌菌株在允许O-PS生物合成的条件下无法存活,并呈现出异常的细长细胞形态。虽然具有不同结构的荚膜多糖的ABC转运蛋白在功能上是可互换的,但O8和O9a输出蛋白对其同源的多聚甘露糖底物具有特异性。大肠杆菌O8和O9a的Wzt蛋白含有一个C末端结构域,该结构域不存在于来自荚膜输出蛋白的相应核苷酸结合蛋白(KpsT)中。虽然Wzm成分在功能上是可互换的,尽管效率有所降低,但Wzt成分并非如此,这表明Wzt在底物特异性方面具有特定作用。构建了嵌合Wzt蛋白,以便将参与底物特异性的区域定位到C末端结构域。

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