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Energy-Dependent Conformational Change in the TolA Protein of Escherichia coli Involves Its N-Terminal Domain, TolQ, and TolR

机译:大肠杆菌的TolA蛋白的能量依赖性构象变化涉及其N末端域,TolQ和TolR

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摘要

TolQ, TolR, and TolA inner membrane proteins of Escherichia coli are involved in maintaining the stability of the outer membrane. They share homology with the ExbB, ExbD, and TonB proteins, respectively. The last is involved in energy transduction between the inner and the outer membrane, and its conformation has been shown to depend on the presence of the proton motive force (PMF), ExbB, and ExbD. Using limited proteolysis experiments, we investigated whether the conformation of TolA was also affected by the PMF. We found that dissipation of the PMF by uncouplers led to the formation of a proteinase K digestion fragment of TolA not seen when uncouplers are omitted. This fragment was also detected in ΔtolQ, ΔtolR, and tolA(H22P) mutants but, in contrast to the parental strain, was also seen in the absence of uncouplers. We repeated those experiments in outer membrane mutants such as lpp, pal, and Δrfa mutants: the behavior of TolA in lpp mutants was similar to that observed with the parental strain. However, the proteinase K-resistant fragment was never detected in the Δrfa mutant. Altogether, these results suggest that TolA is able to undergo a PMF-dependent change of conformation. This change requires TolQ, TolR, and a functional TolA N-terminal domain. The potential role of this energy-dependent process in the stability of the outer membrane is discussed.
机译:大肠杆菌的TolQ,TolR和TolA内膜蛋白参与维持外膜的稳定性。它们分别与ExbB,ExbD和TonB蛋白具有同源性。最后一个涉及内膜和外膜之间的能量转换,其构象已显示取决于质子动力(PMF),ExbB和ExbD的存在。使用有限的蛋白水解实验,我们调查了TolA的构象是否也受PMF影响。我们发现解偶联剂对PMF的耗散导致形成TolA的蛋白酶K消化片段,而省略解偶联剂则看不到。在ΔtolQ,ΔtolR和tolA(H22P)突变体中也检测到了该片段,但是与亲本菌株相比,在没有解偶联剂的情况下也可以看到该片段。我们在外膜突变体(如lpp,pal和Δrfa突变体)中重复了这些实验:lpp突变体中TolA的行为与亲本菌株相似。然而,在Δrfa突变体中从未检测到蛋白酶K抗性片段。总之,这些结果表明,TolA能够经历PMF依赖的构象变化。此更改需要TolQ,TolR和功能性TolA N端域。讨论了这种依赖能量的过程在外膜稳定性中的潜在作用。

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