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首页> 外文期刊>The Journal of biological chemistry >Stalk Domain of the Dynamin-like MxA GTPase Protein Mediates Membrane Binding and Liposome Tubulation via the Unstructured L4 Loop
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Stalk Domain of the Dynamin-like MxA GTPase Protein Mediates Membrane Binding and Liposome Tubulation via the Unstructured L4 Loop

机译:Dynamin样MXA GTPase蛋白的茎域通过非结构化的L4环介导膜结合和脂质体管

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摘要

The human MxA protein is an interferon-induced large GTPase with antiviral activity against a wide range of viruses, including influenza viruses. Recent structural data demonstrated that MxA oligomerizes into multimeric filamentous or ring-like structures by virtue of its stalk domain. Here, we show that negatively charged lipid membranes support MxA self-assembly. Like dynamin, MxA assembled around spherical liposomes inducing liposome tubulation. Cryo-transmission electron microscopy revealed that MxA oligomers around liposomes have a “T-bar” shape similar to dynamin. Moreover, biochemical assays indicated that the unstructured L4 loop of the MxA stalk serves as the lipid-binding moiety, and mutational analysis of L4 revealed that a stretch of four lysine residues is critical for binding. The orientation of the MxA molecule within the membrane-associated oligomer is in agreement with the proposed topology of MxA oligomers based on crystallographic data. Although oligomerization of wild-type MxA around liposomes led to the creation of helically decorated tubes similar to those formed by dynamin, this lipid interaction did not stimulate GTPase activity, in sharp contrast to the assembly-stimulated nucleotide hydrolysis observed with dynamin. Moreover, MxA readily self-assembles into rings at physiological conditions, as opposed to dynamin which self-assembles only at low salt conditions or onto lipids. Thus, the present results indicate that the oligomeric structures formed by MxA critically differ from those of dynamin.
机译:人MXA蛋白是一种干扰素诱导的大GTP酶,其具有抗病毒活性,免受各种病毒,包括流感病毒。最近的结构数据证明,MXA通过其茎域少化成多聚体丝状或环状结构。在这里,我们表明带负电荷的脂质膜支持MXA自组装。像Dynamin,MXA组装在诱导脂质体管的球形脂质体周围。冷冻透射电子显微镜显示脂质体周围的MXA低聚物具有类似于发电机的“T型杆”形状。此外,生物化学测定表明,MXA茎的非结构化L4环用作脂质结合部分,L4的突变分析表明,四个赖氨酸残基对结合至关重要。膜相关低聚物内MXA分子的取向与基于晶体数据的MXA低聚物的拓扑结构一致。虽然野生型MXA的脂质体的寡聚物导致螺旋装饰管的产生类似于动力学形成的那些,但这种脂质相互作用没有刺激GTP酶活性,与用发电机观察到的组装刺激的核苷酸水解鲜明对比。此外,MXA易于在生理条件下自组装成环,而不是仅在低盐条件或脂质上自组装的发电机。因此,本结果表明由MXA形成的低聚结构与发电机的低聚区不同。

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