Schäfer Ingmar B, Bailer Susanne M, Düser Monika G, Börsch Michael, Bernal Ricardo A, Stock Daniela, Grüber Gerhard
Universität des Saarlandes, Fachrichtung 2.3 & 2.5, D-66421 Homburg, Germany.
J Mol Biol. 2006 May 5;358(3):725-40. doi: 10.1016/j.jmb.2006.02.057. Epub 2006 Mar 10.
The A1Ao ATP synthase from archaea represents a class of chimeric ATPases/synthases, whose function and general structural design share characteristics both with vacuolar V1Vo ATPases and with F1Fo ATP synthases. The primary sequences of the two large polypeptides A and B, from the catalytic part, are closely related to the eukaryotic V1Vo ATPases. The chimeric nature of the A1Ao ATP synthase from the archaeon Methanosarcina mazei Gö1 was investigated in terms of nucleotide interaction. Here, we demonstrate the ability of the overexpressed A and B subunits to bind ADP and ATP by photoaffinity labeling. Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry was used to map the peptide of subunit B involved in nucleotide interaction. Nucleotide affinities in both subunits were determined by fluorescence correlation spectroscopy, indicating a weaker binding of nucleotide analogues to subunit B than to A. In addition, the nucleotide-free crystal structure of subunit B is presented at 1.5 A resolution, providing the first view of the so-called non-catalytic subunit of the A1Ao ATP synthase. Superposition of the A-ATP synthase non-catalytic B subunit and the F-ATP synthase non-catalytic alpha subunit provides new insights into the similarities and differences of these nucleotide-binding ATPase subunits in particular, and into nucleotide binding in general. The arrangement of subunit B within the intact A1Ao ATP synthase is presented.
古细菌的A1Ao ATP合酶代表了一类嵌合ATP酶/合酶,其功能和总体结构设计兼具液泡V1Vo ATP酶和F1Fo ATP合酶的特征。来自催化部分的两种大的多肽A和B的一级序列与真核V1Vo ATP酶密切相关。从核苷酸相互作用方面研究了马氏甲烷八叠球菌Gö1的A1Ao ATP合酶的嵌合性质。在此,我们通过光亲和标记证明了过表达的A和B亚基结合ADP和ATP的能力。利用基质辅助激光解吸/电离飞行时间质谱对参与核苷酸相互作用的亚基B的肽段进行了图谱分析。通过荧光相关光谱法测定了两个亚基中的核苷酸亲和力,结果表明核苷酸类似物与亚基B的结合比与亚基A的结合弱。此外,还给出了亚基B的无核苷酸晶体结构,分辨率为1.5埃,首次展示了A1Ao ATP合酶所谓的非催化亚基。A-ATP合酶非催化性B亚基与F-ATP合酶非催化性α亚基的叠加,为这些核苷酸结合ATP酶亚基的异同,特别是核苷酸结合的异同提供了新的见解。展示了亚基B在完整的A1Ao ATP合酶中的排列方式。