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Unliganded maltose-binding protein triggers lactose transport in an Escherichia coli mutant with an alteration in the maltose transport system.

机译:未配体的麦芽糖结合蛋白在大肠杆菌突变体中触发了乳糖运输,麦芽糖运输系统发生了变化。

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摘要

Escherichia coli accumulates malto-oligosaccharides by the maltose transport system, which is a member of the ATP-binding-cassette (ABC) superfamily of transport systems. The proteins of this system are LamB in the outer membrane, maltose-binding protein (MBP) in the periplasm, and the proteins of the inner membrane complex (MalFGK2), composed of one MalF, one MalG, and two MalK subunits. Substrate specificity is determined primarily by the periplasmic component, MBP. However, several studies of the maltose transport system as well as other members of the ABC transporter superfamily have suggested that the integral inner membrane components MalF and MalG may play an important role in determining the specificity of the system. We show here that residue L334 in the fifth transmembrane helix of MalF plays an important role in determining the substrate specificity of the system. A leucine-to-tryptophan alteration at this position (L334W) results in the ability to transport lactose in a saturable manner. This mutant requires functional MalK-ATPase activity and the presence of MBP, even though MBP is incapable of binding lactose. The requirement for MBP confirms that unliganded MBP interacts with the inner membrane MalFGK2 complex and that MBP plays a crucial role in triggering the transport process.
机译:大肠杆菌通过麦芽糖运输系统积累麦芽低聚糖,该系统是运输系统ATP结合盒(ABC)超家族的成员。该系统的蛋白质是外膜中的LamB,周质中的麦芽糖结合蛋白(MBP)和内膜复合物(MalFGK2)的蛋白,后者由一个MalF,一个MalG和两个MalK亚基组成。底物特异性主要由周质成分MBP决定。但是,对麦芽糖转运系统以及ABC转运蛋白超家族其他成员的一些研究表明,完整的内膜成分MalF和MalG可能在确定系统的特异性中起重要作用。我们在这里显示,MalF的第五个跨膜螺旋中的残基L334在确定系统的底物特异性中起重要作用。在此位置的亮氨酸到色氨酸改变(L334W)导致以饱和方式运输乳糖的能力。即使MBP无法结合乳糖,该突变体也需要功能性MalK-ATPase活性和MBP的存在。对MBP的要求证实了未配位的MBP与内膜MalFGK2复合物相互作用,并且MBP在触发运输过程中起着至关重要的作用。

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  • 作者

    Merino, G; Shuman, H A;

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  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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