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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >ATP and magnesium drive conformational changes of the Na+/K+-ATPase cytoplasmic headpiece.
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ATP and magnesium drive conformational changes of the Na+/K+-ATPase cytoplasmic headpiece.

机译:ATP和镁驱动Na + / K + -ATPase胞质头盔的构象变化。

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Conformational changes of the Na(+)/K(+)-ATPase isolated large cytoplasmic segment connecting transmembrane helices M4 and M5 (C45) induced by the interaction with enzyme ligands (i.e. Mg(2+) and/or ATP) were investigated by means of the intrinsic tryptophan fluorescence measurement and molecular dynamic simulations. Our data revealed that this model system consisting of only two domains retained the ability to adopt open or closed conformation, i.e. behavior, which is expected from the crystal structures of relative Ca(2+)-ATPase from sarco(endo)plasmic reticulum for the corresponding part of the entire enzyme. Our data revealed that the C45 is found in the closed conformation in the absence of any ligand, in the presence of Mg(2+) only, or in the simultaneous presence of Mg(2+) and ATP. Binding of the ATP alone (i.e. in the absence of Mg(2+)) induced open conformation of the C45. The fact that the transmembrane part of the enzyme was absent in our experiments suggested that the observed conformational changes are consequences only of the interaction with ATP or Mg(2+) and may not be related to the transported cations binding/release, as generally believed. Our data are consistent with the model, where ATP binding to the low-affinity site induces conformational change of the cytoplasmic part of the enzyme, traditionally attributed to E2-->E1 transition, and subsequent Mg(2+) binding to the enzyme-ATP complex induces in turn conformational change traditionally attributed to E1-->E2 transition.
机译:通过与酶配体(即Mg(2+)和/或ATP)相互作用诱导的Na(+)/ K(+)-ATPase分离的大细胞质节连接跨膜螺旋M4和M5(C45)的构象变化固有色氨酸荧光测量和分子动力学模拟的手段。我们的数据表明,仅由两个结构域组成的模型系统保留了采用开放或封闭构象(即行为)的能力,这是从肌(内)质网的相对Ca(2 +)-ATPase的晶体结构预期的整个酶的相应部分。我们的数据表明,在不存在任何配体,仅存在Mg(2+)或同时存在Mg(2+)和ATP的情况下,C45处于闭合构象。单独的ATP结合(即在没有Mg(2+)的情况下)诱导C45的开放构象。通常认为,在我们的实验中不存在该酶的跨膜部分这一事实表明观察到的构象变化仅是与ATP或Mg(2+)相互作用的结果,可能与运输的阳离子结合/释放无关。 。我们的数据与该模型一致,在该模型中,与低亲和力位点结合的ATP诱导了酶的细胞质部分的构象变化,这通常归因于E2-> E1过渡,以及随后的Mg(2+)与酶的结合- ATP复合物反过来导致传统上归因于E1-> E2过渡的构象变化。

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