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腺嘌呤核苷酸和硫代核苷酸的Mg2+及Cd2+配合物的稳定常数,以及MgATP和MgADP形成与解离的速率常数。

Stability constants of Mg2+ and Cd2+ complexes of adenine nucleotides and thionucleotides and rate constants for formation and dissociation of MgATP and MgADP.

作者信息

Pecoraro V L, Hermes J D, Cleland W W

出版信息

Biochemistry. 1984 Oct 23;23(22):5262-71. doi: 10.1021/bi00317a026.

Abstract

Stability constants for the Mg2+ and Cd2+ complexes of ATP, ADP, ATP alpha S, ATP beta S, and ADP alpha S have been determined at 30 degrees C and mu = 0.1 M by 31P NMR. Besides being of the utmost importance for determining species distributions for enzymatic studies, these constants allow an estimation of the preference of Cd2+ for sulfur vs. oxygen coordination in phosphorothioate complexes. Stability constants for Mg2+ complexes decreases when sulfur replaces oxygen (log K: ADP, 4.11; ADP alpha S, 3.66; ATP, 4.70; ATP alpha S, 4.47; ATP beta S, 4.04) because of (a) a statistical factor resulting from the loss of one potential phosphate oxygen ligand and (b) either an alteration in the charge distribution between oxygen and sulfur or destabilization of the chelate ring structure by loss of an internal hydrogen bond between an oxygen of coordinated phosphate and metal-bound water. Cd2+ complexes with sulfur-substituted nucleotides are more stable than those without sulfur (log K: ADP, 3.58; ADP alpha S, 4.95; ATP, 4.36; ATP alpha S, 4.42; ATP beta S, 5.44) because of the preferential binding of Cd2+ to sulfur rather than oxygen, which we estimate to be approximately 60 in CdADP alpha S and CdATP beta S. The proportion of tridentate coordination is estimated to be 50-60% in MgATP and MgATP beta S, approximately 27% in MgATP alpha S, approximately 16% in CdATP or CdATP beta S, but approximately 75% in CdATP alpha S. By analysis of the data of Jaffe and Cohn [Jaffe, E. K., & Cohn, M. (1979) J. Biol. Chem. 254, 10839], we conclude that the preference for oxygen over sulfur coordination to ATP beta S is 31 000 for Mg2+, 3100-3900 for Ca2+, and 158-193 for Mn2+. Proton NMR demonstrates that bidentate Cd2+ complexes form intramolecular chelates with the N-7 of adenine while Mg2+ nucleotides and the tridenate CdATP alpha S do not. An analysis of the 31P NMR line widths shows that the rate constants for dissociation of MgADP and MgATP are both 7000 s-1 while the association rate constants are 7 X 10(7) and 4 X 10(8) M-1 s-1, respectively. The observed dependence of the line width on nucleotide concentration is best explained by a base-stacking model at nucleotide concentrations above 5 mM.

摘要

通过31P核磁共振在30℃和μ = 0.1 M条件下测定了ATP、ADP、ATPαS、ATPβS和ADPαS与Mg2+和Cd2+形成配合物的稳定常数。这些常数对于确定酶学研究中的物种分布极为重要,此外还能估计在硫代磷酸酯配合物中Cd2+对硫配位相对于氧配位的偏好。当硫取代氧时,Mg2+配合物的稳定常数会降低(log K:ADP为4.11;ADPαS为3.66;ATP为4.70;ATPαS为4.47;ATPβS为4.04),原因如下:(a)由于失去一个潜在的磷酸氧配体产生的统计因素;(b)氧和硫之间电荷分布的改变,或者由于配位磷酸的氧与金属结合水之间的内部氢键丧失导致螯合环结构不稳定。Cd2+与硫取代核苷酸形成的配合物比未含硫的更稳定(log K:ADP为3.58;ADPαS为4.95;ATP为4.36;ATPαS为4.42;ATPβS为5.44),这是因为Cd2+优先与硫而非氧结合,据我们估计在CdADPαS和CdATPβS中该比例约为60。在MgATP和MgATPβS中三齿配位的比例估计为50 - 60%,在MgATPαS中约为27%,在CdATP或CdATPβS中约为16%,但在CdATPαS中约为75%。通过分析Jaffe和Cohn [Jaffe, E. K., & Cohn, M. (1979) J. Biol. Chem. 254, 10839]的数据,我们得出Mg2+、Ca2+和Mn2+对ATPβS的氧配位相对于硫配位的偏好分别为31000、3100 - 3900和158 - 193。质子核磁共振表明二齿Cd2+配合物与腺嘌呤的N - 7形成分子内螯合物,而Mg2+核苷酸和三齿CdATPαS则不会。对31P核磁共振线宽的分析表明,MgADP和MgATP解离的速率常数均为7000 s-1,而缔合速率常数分别为7×10(7)和4×10(8) M-1 s-1。在核苷酸浓度高于5 mM时,线宽对核苷酸浓度的观察依赖性最好用碱基堆积模型来解释。

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