Weber D J, Mullen G P, Mildvan A S
Department of Biological Chemistry, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Biochemistry. 1991 Jul 30;30(30):7425-37. doi: 10.1021/bi00244a009.
The dinucleoside phosphodiester dTdA is a slow substrate of staphylococcal nuclease (kcat = 3.8 X 10(-3) s-1) that forms binary E-S and ternary E-M-S complexes with Ca2+, Mn2+, Co2+, and La3+. The enzyme enhances the paramagnetic effects of Co2+ on 1/T1 and 1/T2 of the phosphorus and on 1/T1 of six proton resonances of dTdA, and these effects are abolished by binding of the competitive inhibitor 3',5'-pdTp. From paramagnetic effects of Co2+ on 1/T2 of phosphorus, koff of dTdA from the ternary E-Co(2+)-dTdA complex is greater than or equal to 4.8 X 10(4) s-1 and kon greater than or equal to 1.4 X 10(6) M-1 s-1, indicating the 1/T1 values to be in fast exchange. From paramagnetic effects of enzyme-bound Co2+ on 1/T1 of phosphorus and protons, with use of a correlation time of 1.6 ps on the basis of 1/T1 values at 250 and 600 MHz, 7 metal-nucleus distances and 9 lower-limit metal-nucleus distances are calculated. The long Co2+ to 31P distance of 4.1 +/- 0.9 A, which is intermediate between that expected for direct phosphoryl coordination (3.31 +/- 0.02 A) and a second sphere complex with an intervening water ligand (4.75 +/- 0.02 A), suggests either a distorted inner sphere complex or the rapid averaging of 18% inner sphere and 82% second sphere complexes and may explain the reduced catalytic activity with small dinucleotide substrates. Seventeen interproton distances and 108 lower limit interproton distances in dTdA in the ternary E-La(3+)-dTdA complex were determined by NOESY spectra at 50-, 100-, and 200-ms mixing times. While metal-substrate and interproton distances alone did not yield a unique structure, the combination of both sets of distances yielded a very narrow range of conformations for enzyme-bound dTdA, which was highly extended, with no base stacking, with high-anti glycosidic torsional angles for dT (64 degrees less than or equal to chi less than or equal to 73 degrees) and dA (66 degrees less than or equal to chi less than or equal to 68 degrees) and predominantly C-2'-endo sugar puckers for both nucleosides. Although the individual nucleosides are like those of B-DNA, their unstacked conformation, which is inappropriate for base pairing, as well as the conformational angles alpha and gamma of dA and zeta of dT, rule out B-DNA.(ABSTRACT TRUNCATED AT 400 WORDS)
二核苷磷酸二酯dTdA是葡萄球菌核酸酶的一种缓慢底物(kcat = 3.8×10⁻³ s⁻¹),它能与Ca²⁺、Mn²⁺、Co²⁺和La³⁺形成二元E-S和三元E-M-S复合物。该酶增强了Co²⁺对dTdA磷的1/T1和1/T2以及六个质子共振的1/T1的顺磁效应,而这些效应会被竞争性抑制剂3',5'-pdTp的结合所消除。根据Co²⁺对磷的1/T2的顺磁效应,dTdA从三元E-Co(2⁺)-dTdA复合物中的解离速率常数koff大于或等于4.8×10⁴ s⁻¹,结合速率常数kon大于或等于1.4×10⁶ M⁻¹ s⁻¹,表明1/T1值处于快速交换状态。根据酶结合的Co²⁺对磷和质子的1/T1的顺磁效应,基于250和600 MHz下的1/T1值,使用1.6 ps的相关时间,计算出7个金属-核距离和9个下限金属-核距离。Co²⁺到³¹P的长距离为4.1±0.9 Å,介于直接磷酰配位预期距离(3.31±0.02 Å)和带有中间水配体的第二球复合物距离(4.75±0.02 Å)之间,这表明要么是扭曲的内球复合物,要么是18%内球和82%第二球复合物的快速平均化,这可能解释了小双核苷酸底物催化活性降低的原因。通过在50、100和200 ms混合时间下的NOESY光谱,确定了三元E-La(3⁺)-dTdA复合物中dTdA的17个质子间距离和108个下限质子间距离。虽然单独的金属-底物和质子间距离并没有产生独特的结构,但这两组距离的组合为酶结合的dTdA产生了非常窄的构象范围,该构象高度伸展,没有碱基堆积,dT(64°≤χ≤73°)和dA(66°≤χ≤68°)具有高反式糖苷扭转角,且两种核苷主要为C-2'-内型糖环构象。尽管单个核苷类似于B-DNA中的核苷,但其未堆积的构象不适于碱基配对,以及dA的α和γ构象角和dT的ζ构象角,排除了B-DNA的可能性。(摘要截断于400字)