Villafranca J J, Rhee S G, Chock P B
Proc Natl Acad Sci U S A. 1978 Mar;75(3):1255-9. doi: 10.1073/pnas.75.3.1255.
The paramagnetic effect of Mn(II) on (13)C and (31)P nuclear magnetic resonance signals from the [2-(13)C]ATP adenylylated glutamine synthetase [L-glutamate:ammonia ligase (ADP-forming); EC 6.3.1.2] from Escherichia coli was measured. This effect permitted the determination of distances from the 2-C position and the phosphorus of covalently bound AMP to the two Mn(II) binding sites, n(1) and n(2). Binding of Mn(II) to the n(1) site converts an inactive apo-enzyme to its active form, while the metal ion bound at n(2) occupies the metal-nucleotide substrate site. The distances from Mn(II) at the n(1) and n(2) sites to phosphorus are approximately 10 and approximately 7 A and to the 2-C position of the adenine ring are approximately 12 and approximately 11 A, respectively. The fluorescence energy transfer method was used to determine distances between Co(II) at n(1) and n(2) and the adenylyl site. For this experiment the enzyme was adenylylated with epsilon-ATP. The distances between epsilon-adenine and Co(II) at n(1) and n(2) are approximately 13 and approximately 11 A, respectively. Quantitation of the paramagnetic effect due to Co(II) on the (31)P nuclear magnetic resonance signal yielded values of 8 and 6 A for the distances between the phosphorus of the covalently bound AMP and the n(1) and n(2) sites, respectively. The results reveal that the covalent modification site is very close to the catalytic center of the enzyme. In this study both nuclear magnetic resonance and fluorescence energy transfer techniques have been used to determine distances between the same set of sites on an enzyme surface.
测定了Mn(II)对来自大肠杆菌的[2-(13)C]ATP腺苷酸化谷氨酰胺合成酶[L-谷氨酸:氨连接酶(ADP形成);EC 6.3.1.2]的(13)C和(31)P核磁共振信号的顺磁效应。这种效应使得能够确定从2-C位置和共价结合的AMP的磷到两个Mn(II)结合位点n(1)和n(2)的距离。Mn(II)与n(1)位点的结合将无活性的脱辅基酶转化为其活性形式,而结合在n(2)位点的金属离子占据金属-核苷酸底物位点。从n(1)和n(2)位点的Mn(II)到磷的距离分别约为10 Å和约7 Å,到腺嘌呤环的2-C位置的距离分别约为12 Å和约11 Å。使用荧光能量转移方法确定n(1)和n(2)处的Co(II)与腺苷酰位点之间的距离。对于该实验,用ε-ATP对酶进行腺苷酸化。ε-腺嘌呤与n(1)和n(2)处的Co(II)之间的距离分别约为13 Å和约11 Å。对Co(II)对(31)P核磁共振信号的顺磁效应进行定量分析,得到共价结合的AMP的磷与n(1)和n(2)位点之间的距离分别为8 Å和6 Å。结果表明,共价修饰位点非常接近酶的催化中心。在本研究中,核磁共振和荧光能量转移技术都被用于确定酶表面同一组位点之间的距离。