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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Structure and localization of an essential transmembrane segment of the proton translocation channel of yeast H+-VATPase
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Structure and localization of an essential transmembrane segment of the proton translocation channel of yeast H+-VATPase

机译:酵母H + -VATPase质子转运通道必需跨膜区段的结构和定位

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Vacuolar (H+)-ATPase (V-ATPase) is a proton pump present in several compartments of eukaryotic cells to regulate physiological processes. From biochemical studies it is known that the interaction between arginine 735 present in the seventh transmembrane (TM7) segment from subunit a and specific glutamic acid residues in the subunit c assembly plays an essential role in proton translocation. To provide more detailed structural information about this protein domain, a peptide resembling TM7 (denoted peptide MTM7) from Saccharomyces cerevisiae (yeast) V-ATPase was synthesized and dissolved in two membrane-mimicking solvents: DMSO and SDS. For the first time the secondary structure of the putative TM7 segment from subunit a is obtained by the combined use of CD and NMR spectroscopy. SDS micelles reveal an alpha-helical conformation for peptide MTM7 and in DMSO three alpha-helical regions are identified by 2D H-1-NMR. Based on these conformational findings a new structural model is proposed for the putative TM7 in its natural environment. It is composed of 32 amino acid residues that span the membrane in an alpha-helical conformation. It starts at the cytoplasmic side at residue T719 and ends at the luminal side at residue W751. Both the luminal and cytoplasmatic regions of TM7 are stabilized by the neighboring hydrophobic transmembrane segments of subunit a and the subunit c assembly from V-ATPase. (c) 2006 Elsevier B.V All rights reserved.
机译:液泡(H +)-ATPase(V-ATPase)是质子泵,存在于真核细胞的多个区室中,以调节生理过程。从生化研究得知,存在于来自亚基a的第七个跨膜(TM7)段中的精氨酸735与亚基c组件中的特定谷氨酸残基之间的相互作用在质子移位中起着至关重要的作用。为了提供有关此蛋白质结构域的更详细的结构信息,合成了来自啤酒酵母(酵母)V-ATPase的类似于TM7的肽(表示为肽MTM7),并将其溶于两种膜模拟溶剂:DMSO和SDS。首次通过结合使用CD和NMR光谱获得了亚基a推定的TM7片段的二级结构。 SDS胶束显示肽MTM7的α螺旋构象,在DMSO中,通过2 H-1NMR鉴定出三个α螺旋区。基于这些构象发现,为推定的TM7在其自然环境中提出了新的结构模型。它由32个氨基酸残基组成,这些残基以α-螺旋构象分布在整个膜上。它始于细胞质侧的残基T719,终止于腔内侧的残基W751。 TM7的腔和细胞质区域均由来自V-ATP酶的亚基a和c的亚基c的相邻疏水跨膜区段稳定。 (c)2006 Elsevier B.V保留所有权利。

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