首页> 美国卫生研究院文献>Journal of Bacteriology >The Second Extracellular Loop of Pore-Forming Subunits of ATP-Binding Cassette Transporters for Basic Amino Acids Plays a Crucial Role in Interaction with the Cognate Solute Binding Protein(s)
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The Second Extracellular Loop of Pore-Forming Subunits of ATP-Binding Cassette Transporters for Basic Amino Acids Plays a Crucial Role in Interaction with the Cognate Solute Binding Protein(s)

机译:ATP结合盒式转运蛋白的基本氨基酸的孔形成亚基的第二个胞外环在与同源溶质结合蛋白相互作用中起关键作用

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摘要

In the thermophile Geobacillus stearothermophilus, the uptake of basic amino acids is mediated by an ABC transporter composed of the substrate binding protein (receptor) ArtJ and a homodimer each of the pore-forming subunit, ArtM, and the nucleotide-binding subunit, ArtP. We recently identified two putative binding sites in ArtJ that might interact with the Art(MP)2 complex, thereby initiating the transport cycle (A. Vahedi-Faridi et al., J. Mol. Biol. 375:448-459, 2008). Here we investigated the contribution of charged amino acid residues in the second extracellular loop of ArtM to contact with ArtJ. Our results demonstrate a crucial role for residues K177, R185, and E188, since mutations to oppositely charged amino acids or glutamine led to a complete loss of ArtJ-stimulated ATPase activity of the complex variants in proteoliposomes. The defects could not be suppressed by ArtJ variants carrying mutations in site I (K39E and K152E) or II (E163K and D170K), suggesting a more complex interplay than that by a single salt bridge. These findings were supported by cross-linking assays demonstrating physical proximity between ArtJ(N166C) and ArtM(E182C). The importance of positively charged residues for receptor-transporter interaction was underscored by mutational analysis of the closely related transporter HisJ/LAO-HisQMP2 of Salmonella enterica serovar Typhimurium. While transporter variants with mutated positively charged residues in HisQ displayed residual ATPase activities, corresponding mutants of HisM could no longer be stimulated by HisJ/LAO. Interestingly, the ATPase activity of the HisQM(K187E)P2 variant was inhibited by l- and d-histidine in detergent, suggesting a role of the residue in preventing free histidine from gaining access to the substrate binding site within HisQM.
机译:在嗜热嗜热热地芽孢杆菌中,碱性氨基酸的摄取是由ABC转运蛋白介导的,该转运蛋白由底物结合蛋白(受体)ArtJ和同型二聚体组成,它们分别是成孔亚基ArtM和核苷酸结合亚基ArtP。我们最近在ArtJ中鉴定了两个可能与Art(MP)2复合体相互作用的推定结合位点,从而启动了转运周期(A. Vahedi-Faridi等人,J。Mol。Biol。375:448-459,2008) 。在这里,我们研究了ArtM第二个细胞外环与ArtJ接触中带电氨基酸残基的贡献。我们的结果证明了残基K177,R185和E188的关键作用,因为突变成带相反电荷的氨基酸或谷氨酰胺会导致蛋白脂质体中复杂变体的ArtJ刺激的ATPase活性完全丧失。缺陷不能通过在位点I(K39E和K152E)或位点II(E163K和D170K)携带突变的ArtJ变体来抑制,这表明相互作用比单个盐桥更复杂。这些发现得到证明ArtJ(N166C)和ArtM(E182C)之间物理接近度的交联测定的支持。通过对肠炎沙门氏菌鼠伤寒沙门氏菌密切相关的转运蛋白HisJ / LAO-HisQMP2的突变分析,强调了带正电荷的残基对于受体-转运蛋白相互作用的重要性。虽然HisQ中带有突变的带正电残基的转运蛋白变体显示出残留的ATPase活性,但HisJ / LAO不再能够刺激HisM的相应突变体。有趣的是,HisQM(K187E)P2变体的ATPase活性被去污剂中的1-组氨酸和d-组氨酸抑制,表明该残基在阻止游离组氨酸进入HisQM中的底物结合位点方面发挥了作用。

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