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首页> 外文期刊>The Journal of biological chemistry >Distance Variations between Active Sites of H+-Pyrophosphatase Determined by Fluorescence Resonance Energy Transfer
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Distance Variations between Active Sites of H+-Pyrophosphatase Determined by Fluorescence Resonance Energy Transfer

机译:荧光共振能量转移测定的H +磷酸酯酶活性位点之间的距离变化

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Homodimeric H+-pyrophosphatase (H+-PPase; EC 3.6.1.1) is a unique enzyme playing a pivotal physiological role in pH homeostasis of organisms. This novel H+-PPase supplies energy at the expense of hydrolyzing metabolic byproduct, pyrophosphate (PPi), for H+ translocation across membrane. The functional unit for the translocation is considered to be a homodimer. Its putative active site on each subunit consists of PPi binding motif, Acidic I and II motifs, and several essential residues. In this investigation structural mapping of these vital regions was primarily determined utilizing single molecule fluorescence resonance energy transfer. Distances between two C termini and also two N termini on homodimeric subunits of H+-PPase are 49.3 ± 4.0 and 67.2 ± 5.7 ?, respectively. Furthermore, putative PPi binding motifs on individual subunits are found to be relatively far away from each other (70.8 ± 4.8 ?), whereas binding of potassium and substrate analogue led them to closer proximity. Moreover, substrate analogue but not potassium elicits significant distance variations between two Acidic I motifs and two His-622 residues on homodimeric subunits. Taken together, this study provides the first quantitative measurements of distances between various essential motifs, residues, and putative active sites on homodimeric subunits of H+-PPase. A working model is accordingly proposed elucidating the distance variations of dimeric H+-PPase upon substrate binding.
机译:同源化H + - 磷酸酯酶(H + -PP酶; EC 3.6.1.1)是一种独特的酶,在有机体的pH稳态中发挥枢转生理作用。这种新的H + -PPase以跨越膜的H +易位的水解副产物,焦磷酸酯(PPI)为代价提供能量。易位的功能单元被认为是同型二聚体。其调用活性位点在每个亚基上由PPI结合基序,酸性I和II基序和几个基本残留物组成。在该研究中,这些重要地区的结构映射主要利用单分子荧光共振能量转移来确定。在H + -PP酶的同源二聚体亚基上的两个C Termini和两个N末端的距离分别为49.3±4.0和67.2±5.7?此外,发现单个亚基的推定的PPI结合基序相对彼此相对较远(70.8±4.8?),而钾和衬底类似物的结合LED它们更靠近。此外,衬底类似物但不是钾在同型二聚体亚基上的两个酸性I基序和两种His-622残基之间引发显着的距离变化。该研究一起携带,本研究提供了H + -ppase的同源二聚体亚基上的各种基本基序,残基和推定活性位点之间的距离的第一个定量测量。因此提出了一种工作模型,提出阐明二聚体H + -ppase对底物结合的距离变化。

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