Suppr超能文献

催化位点处磷酸盐的存在会抑制F(1)-ATP合酶的MgADP抑制形式的形成。

The presence of phosphate at a catalytic site suppresses the formation of the MgADP-inhibited form of F(1)-ATPase.

作者信息

Mitome Noriyo, Ono Sakurako, Suzuki Toshiharu, Shimabukuro Katsuya, Muneyuki Eiro, Yoshida Masasuke

机构信息

Chemical Resources Laboratory, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

Eur J Biochem. 2002 Jan;269(1):53-60. doi: 10.1046/j.0014-2956.2002.02623.x.

Abstract

F1-ATPase is inactivated by entrapment of MgADP in catalytic sites and reactivated by MgATP or P(i). Here, using a mutant alpha(3)beta(3)gamma complex of thermophilic F(1)-ATPase (alpha W463F/beta Y341W) and monitoring nucleotide binding by fluorescence quenching of an introduced tryptophan, we found that P(i) interfered with the binding of MgATP to F(1)-ATPase, but binding of MgADP was interfered with to a lesser extent. Hydrolysis of MgATP by F(1)-ATPase during the experiments did not obscure the interpretation because another mutant, which was able to bind nucleotide but not hydrolyse ATP (alpha W463F/beta E190Q/beta Y341W), also gave the same results. The half-maximal concentrations of P(i) that suppressed the MgADP-inhibited form and interfered with MgATP binding were both approximately 20 mm. It is likely that the presence of P(i) at a catalytic site shifts the equilibrium from the MgADP-inhibited form to the enzyme-MgADP-P(i) complex, an active intermediate in the catalytic cycle.

摘要

F1 - ATP酶因催化位点中MgADP的截留而失活,并被MgATP或无机磷酸(Pi)重新激活。在此,我们使用嗜热F1 - ATP酶的突变体α(3)β(3)γ复合物(αW463F/βY341W),并通过引入的色氨酸的荧光猝灭监测核苷酸结合,发现Pi会干扰MgATP与F1 - ATP酶的结合,但对MgADP结合的干扰程度较小。实验过程中F1 - ATP酶对MgATP的水解并未影响结果的解读,因为另一个能够结合核苷酸但不能水解ATP的突变体(αW463F/βE190Q/βY341W)也得到了相同的结果。抑制MgADP抑制形式并干扰MgATP结合的Pi的半数最大浓度均约为20 mM。催化位点处Pi的存在可能会使平衡从MgADP抑制形式转变为酶 - MgADP - Pi复合物,这是催化循环中的一个活性中间体。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验