Stewart J M, Grisham C M
Department of Chemistry, University of Virginia, Charlottesville 22901.
Biochemistry. 1988 Jun 28;27(13):4840-8. doi: 10.1021/bi00413a039.
1H nuclear magnetic relaxation measurements have been used to determine the three-dimensional conformation of an ATP analogue, Co(NH3)4ATP, at the active site of sheep kidney Na,K-ATPase. Previous studies have shown that Co(NH3)4ATP is a competitive inhibitor with respect to MnATP for the Na,K-ATPase [Klevickis, C., & Grisham, C. M. (1982) Biochemistry 21, 6979; Gantzer, M. L., Klevickis, C., & Grisham, C. M. (1982) Biochemistry 21, 4083] and that Mn2+ bound to a single, high-affinity site on the ATPase can be an effective paramagnetic probe for nuclear relaxation studies of the Na,K-ATPase [O'Connor, S. E., & Grisham, C. M. (1979) Biochemistry 18, 2315]. From the paramagnetic effect of Mn2+ bound to the ATPase on the longitudinal relaxation rates of the protons of Co(NH3)4ATP at the substrate site (at 300 and 361 MHz), Mn-H distances to seven protons on the bound nucleotide were determined. Taken together with previous 31P nuclear relaxation data, these measurements are consistent with a single nucleotide conformation at the active site. The nucleotide adopts a bent configuration, in which the triphosphate chain lies nearly parallel to the adenine moiety. The glycosidic torsion angle is 35 degrees, and the conformation of the ribose ring is slightly N-type (C2'-exo, C3'-endo). The delta and gamma torsional angles in this conformation are 100 degrees and 178 degrees, respectively. The bound Mn2+ lies above and in the plane of the adenine ring. The distances from Mn2+ to N6 and N7 are too large for first coordination sphere complexes but are appropriate for second-sphere complexes involving, for example, intervening hydrogen-bonded water molecules.(ABSTRACT TRUNCATED AT 250 WORDS)
1H核磁共振弛豫测量已被用于确定绵羊肾Na,K - ATP酶活性位点上的一种ATP类似物Co(NH3)4ATP的三维构象。先前的研究表明,Co(NH3)4ATP是Na,K - ATP酶相对于MnATP的竞争性抑制剂[克莱维基斯,C.,& 格里沙姆,C. M.(1982年)《生物化学》21卷,6979页;甘泽尔,M. L.,克莱维基斯,C.,& 格里沙姆,C. M.(1982年)《生物化学》21卷,4083页],并且结合在ATP酶上单个高亲和力位点的Mn2 +可以作为用于Na,K - ATP酶核弛豫研究的有效顺磁探针[奥康纳,S. E.,& 格里沙姆,C. M.(1979年)《生物化学》18卷,2315页]。根据结合在ATP酶上的Mn2 +对底物位点(在300和361 MHz)处Co(NH3)4ATP质子纵向弛豫率的顺磁效应,确定了Mn与结合核苷酸上七个质子的距离。结合先前的31P核弛豫数据,这些测量结果与活性位点上的单一核苷酸构象一致。该核苷酸呈现弯曲构型,其中三磷酸链几乎与腺嘌呤部分平行。糖苷扭转角为35度,核糖环的构象略呈N型(C2'-外向,C3'-内向)。此构象中的δ和γ扭转角分别为100度和178度。结合的Mn2 +位于腺嘌呤环平面上方。Mn2 +到N6和N7的距离对于第一配位层配合物来说太大,但对于涉及例如中间氢键水分子的第二配位层配合物来说是合适的。(摘要截短于250字)