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龙虾肌肉精氨酸激酶的酶结合底物复合物结构的31P和1H核磁共振研究:用Mn(II)和Co(II)进行弛豫测量。

31P and 1H NMR studies of the structure of enzyme-bound substrate complexes of lobster muscle arginine kinase: relaxation measurements with Mn(II) and Co(II).

作者信息

Jarori G K, Ray B D, Nageswara Rao B D

机构信息

Department of Physics, Indiana University-Purdue University, Indianapolis 46205.

出版信息

Biochemistry. 1989 Nov 28;28(24):9343-50. doi: 10.1021/bi00450a015.

Abstract

The paramagnetic effects of Mn(II) and Co(II) on the spin-lattice relaxation rates of 31P nuclei of ATP and ADP and of Mn(II) on the spin-lattice relaxation rate of the delta protons of arginine bound to arginine kinase from lobster tail muscle have been measured. Temperature variation of 31P relaxation rates in E.MnADP and E.MnATP yields activation energies (delta E) in the range 6-10 kcal/mol. Thus, the 31P relaxation rates in these complexes are exchange limited and cannot provide structural information. However, the relaxation rates in E.CoADP and E.CoATP exhibit frequency dependence and delta E values in the range 1-2 kcal/mol; i.e., these rates depend upon 31P-Co(II) distances. These distances were calculated to be in the range 3.2-4.5 A, appropriate for direct coordination between Co(II) and the phosphoryl groups. The paramagnetic effect of Mn(II) on the 1H spin-lattice relaxation rate of the delta protons of arginine in the E.MnADP.Arg complex was also measured at three frequencies (viz., 200, 300, and 470 MHz). These 1H experiments were performed in the presence of sufficient excess of arginine to be observable over the protein background but with MnADP exclusively in the enzyme-bound form so that the enhancement in the relaxation rates of the delta protons of arginine arises entirely from the enzyme-bound complex. Both the observed frequency dependence of these rates and the delta E less than or equal to 1.0 +/- 0.3 kcal/mol indicate that this rate depends on the 1H-Mn(II) distances.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

已测量了Mn(II)和Co(II)对ATP和ADP的31P核自旋晶格弛豫速率的顺磁效应,以及Mn(II)对与龙虾尾肌精氨酸激酶结合的精氨酸δ质子自旋晶格弛豫速率的影响。E.MnADP和E.MnATP中31P弛豫速率的温度变化产生的活化能(ΔE)在6 - 10千卡/摩尔范围内。因此,这些复合物中的31P弛豫速率受交换限制,无法提供结构信息。然而,E.CoADP和E.CoATP中的弛豫速率表现出频率依赖性,且ΔE值在1 - 2千卡/摩尔范围内;即,这些速率取决于31P - Co(II)距离。经计算,这些距离在3.2 - 4.5埃范围内,适合Co(II)与磷酰基之间的直接配位。还在三个频率(即200、300和470兆赫)下测量了Mn(II)对E.MnADP.Arg复合物中精氨酸δ质子1H自旋晶格弛豫速率的顺磁效应。这些1H实验是在存在足够过量精氨酸的情况下进行的,以便在蛋白质背景之上可观测到,但MnADP仅以酶结合形式存在,从而精氨酸δ质子弛豫速率的增强完全源于酶结合复合物。这些速率观察到的频率依赖性以及ΔE小于或等于1.0±0.3千卡/摩尔均表明该速率取决于1H - Mn(II)距离。(摘要截短于250字)

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