Vanderkooi J M, Weiss C J, Woodrow G V
Biophys J. 1979 Feb;25(2 Pt 1):263-75. doi: 10.1016/s0006-3495(79)85290-x.
The fluorescence parameters of ethenoadenosine derivatives are influenced by metal cations and pH, as summarized here. The pH profile of ethenoadenosine determined by fluorescence intensity gives a normal titration curve and is not affected by ionic strength. In contrast, the pH titration curves of etheno-ATP, etheno ADP, and etheno AMP depend upon ionic strength. At high ionic strength normal curves are obtained, whereas at low ionic strength anomalies are obtained; this suggests that the phosphates can interact with the ring, possibly by hydrogen binding to the ring nitrogens. The room temperature fluorescence of ethenoadenosine occurs from the base form, although excitation of either the acid or base forms can contribute to the emission. This result can be explained if the excited state pK is lower than the ground state pK, and if deprotonation occurs within the time scale of the excited state. At low pH values the fluorescence lifetime of the base form is dependent upon the buffer concentration, indicating that the reverse reaction, protonation, occurs. The affinity constants for the binding of metals to the ethenoadenosine phosphates resemble those for the corresponding adenosine phosphates. Ni(II) and Co(II) are more effective than Mn(II) in quenching the fluorescence of ethenoadenosine phosphates; this result is predicted by Förster's theory for energy transfer based upon the overlap between donor emission spectrum and acceptor absorption spectrum. The diamagnetic ions Mg(II), Ca(II), and Zn(II) do not appear to affect the fluorescence of the ethenoadenosine phosphates directly, but rather to affect the conformation of the molecule, thereby affecting the quantum yield.
如下所述,乙烯基腺苷衍生物的荧光参数受金属阳离子和pH值的影响。由荧光强度测定的乙烯基腺苷的pH曲线给出正常的滴定曲线,且不受离子强度的影响。相比之下,乙烯基ATP、乙烯基ADP和乙烯基AMP的pH滴定曲线取决于离子强度。在高离子强度下可获得正常曲线,而在低离子强度下则出现异常;这表明磷酸盐可能通过与环氮原子形成氢键而与环相互作用。乙烯基腺苷在室温下的荧光来自碱基形式,尽管酸或碱基形式的激发都可能对发射有贡献。如果激发态pK低于基态pK,并且在激发态的时间尺度内发生去质子化,则可以解释这一结果。在低pH值下,碱基形式的荧光寿命取决于缓冲液浓度,表明发生了逆反应,即质子化。金属与乙烯基腺苷磷酸盐结合的亲和常数与相应腺苷磷酸盐的亲和常数相似。Ni(II)和Co(II)在淬灭乙烯基腺苷磷酸盐的荧光方面比Mn(II)更有效;基于供体发射光谱和受体吸收光谱之间的重叠,Förster能量转移理论预测了这一结果。抗磁性离子Mg(II)、Ca(II)和Zn(II)似乎不会直接影响乙烯基腺苷磷酸盐的荧光,而是影响分子的构象,从而影响量子产率。