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鉴定脂多糖ABC转运蛋白中与ATP酶活性和提取功能相协调的残基。

Identification of Residues in the Lipopolysaccharide ABC Transporter That Coordinate ATPase Activity with Extractor Function.

作者信息

Simpson Brent W, Owens Tristan W, Orabella Matthew J, Davis Rebecca M, May Janine M, Trauger Sunia A, Kahne Daniel, Ruiz Natividad

机构信息

Department of Microbiology, The Ohio State University, Columbus, Ohio, USA.

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts, USA.

出版信息

mBio. 2016 Oct 18;7(5):e01729-16. doi: 10.1128/mBio.01729-16.

Abstract

UNLABELLED

The surface of most Gram-negative bacteria is covered with lipopolysaccharide (LPS), creating a permeability barrier against toxic molecules, including many antimicrobials. To assemble LPS on their surface, Gram-negative bacteria must extract newly synthesized LPS from the inner membrane, transport it across the aqueous periplasm, and translocate it across the outer membrane. The LptA to -G proteins assemble into a transenvelope complex that transports LPS from the inner membrane to the cell surface. The Lpt system powers LPS transport from the inner membrane by using a poorly characterized ATP-binding cassette system composed of the ATPase LptB and the transmembrane domains LptFG. Here, we characterize a cluster of residues in the groove region of LptB that is important for controlling LPS transport. We also provide the first functional characterization of LptFG and identify their coupling helices that interact with the LptB groove. Substitutions at conserved residues in these coupling helices compromise both the assembly and function of the LptBFG complex. Defects in LPS transport conferred by alterations in the LptFG coupling helices can be rescued by changing a residue in LptB that is adjacent to functionally important residues in the groove region. This suppression is achieved by increasing the ATPase activity of the LptBFG complex. Taken together, these data identify a specific binding site in LptB for the coupling helices of LptFG that is responsible for coupling of ATP hydrolysis by LptB with LptFG function to achieve LPS extraction.

IMPORTANCE

Lipopolysaccharide (LPS) is synthesized at the cytoplasmic membrane of Gram-negative bacteria and transported across several compartments to the cell surface, where it forms a barrier that protects these organisms from antibiotics. The LptBFG proteins form an ATP-binding cassette (ABC) transporter that uses energy from ATP hydrolysis in the cytoplasm to facilitate extraction of LPS from the outer face of the cytoplasmic membrane prior to transport to the cell surface. How ATP hydrolysis is coupled with LPS release from the membrane is not understood. We have identified residues at the interface between the ATPase and the transmembrane domains of this heteromeric ABC complex that are important for LPS transport, some of which coordinate ATPase activity with LPS release.

摘要

未标记

大多数革兰氏阴性菌的表面覆盖有脂多糖(LPS),形成了针对包括许多抗菌药物在内的有毒分子的渗透屏障。为了在其表面组装LPS,革兰氏阴性菌必须从内膜提取新合成的LPS,将其运输穿过水性周质,并将其转运穿过外膜。LptA至G蛋白组装成一个跨膜复合物,将LPS从内膜运输到细胞表面。Lpt系统通过使用由ATP酶LptB和跨膜结构域LptFG组成的特征不明的ATP结合盒系统,为从内膜运输LPS提供动力。在这里,我们对LptB凹槽区域中的一组残基进行了表征,这些残基对于控制LPS运输很重要。我们还提供了LptFG的首个功能表征,并确定了它们与LptB凹槽相互作用的偶联螺旋。这些偶联螺旋中保守残基的取代损害了LptBFG复合物的组装和功能。LptFG偶联螺旋改变导致的LPS运输缺陷可以通过改变LptB中与凹槽区域中功能重要残基相邻的一个残基来挽救。这种抑制是通过增加LptBFG复合物的ATP酶活性来实现的。综上所述,这些数据确定了LptB中LptFG偶联螺旋的一个特定结合位点,该位点负责将LptB的ATP水解与LptFG功能偶联,以实现LPS提取。

重要性

脂多糖(LPS)在革兰氏阴性菌的细胞质膜上合成,并穿过几个区室运输到细胞表面,在那里它形成一个屏障,保护这些生物体免受抗生素的侵害。LptBFG蛋白形成一个ATP结合盒(ABC)转运蛋白,利用细胞质中ATP水解产生的能量,促进LPS在运输到细胞表面之前从细胞质膜外表面提取出来。目前尚不清楚ATP水解是如何与LPS从膜上释放偶联的。我们已经确定了这个异源ABC复合物的ATP酶和跨膜结构域之间界面处的残基,这些残基对于LPS运输很重要,其中一些残基将ATP酶活性与LPS释放协调起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac7a/5082905/181e4b5407b1/mbo0051630350001.jpg

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