Yasuno Taichi, Muneyuki Eiro, Yoshida Masasuke, Kato-Yamada Yasuyuki
Department of Life Science, College of Science, Rikkyo University, Tokyo 171-8501, Japan.
Biochem Biophys Res Commun. 2009 Dec 11;390(2):230-4. doi: 10.1016/j.bbrc.2009.09.092. Epub 2009 Sep 26.
Effect of epsilon subunit on the nucleotide binding to the catalytic sites of F(1)-ATPase from the thermophilic Bacillus PS3 (TF(1)) has been tested by using alpha(3)beta(3)gamma and alpha(3)beta(3)gammaepsilon complexes of TF(1) containing betaTyr341 to Trp substitution. The nucleotide binding was assessed with fluorescence quenching of the introduced Trp. The presence of the epsilon subunit weakened ADP binding to each catalytic site, especially to the highest affinity site. This effect was also observed when GDP or IDP was used. The ratio of the affinity of the lowest to the highest nucleotide binding sites had changed two orders of magnitude by the epsilon subunit. The differences may relate to the energy required for the binding change in the ATP synthesis reaction and contribute to the efficient ATP synthesis.
通过使用含有βTyr341到Trp取代的嗜热芽孢杆菌PS3的F(1)-ATP酶(TF(1))的α(3)β(3)γ和α(3)β(3)γε复合物,测试了ε亚基对核苷酸与TF(1)催化位点结合的影响。通过引入的Trp的荧光猝灭来评估核苷酸结合。ε亚基的存在减弱了ADP与每个催化位点的结合,尤其是与最高亲和力位点的结合。当使用GDP或IDP时也观察到这种效应。ε亚基使最低与最高核苷酸结合位点的亲和力之比改变了两个数量级。这些差异可能与ATP合成反应中结合变化所需的能量有关,并有助于高效的ATP合成。