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Time-resolved tryptophan emission study of cardiac troponin I.

机译:心肌肌钙蛋白I的时间分辨色氨酸发射研究

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摘要

We have carried out a time-resolved fluorescence study of the single tryptophanyl residue (Trp-192) of bovine cardiac Tnl (CTnl). With excitation at 300 nm, the intensity decay was resolved into three components by a nonlinear least-squares analysis with lifetimes of 0.60, 2.22, and 4.75 ns. The corresponding fractional amplitudes were 0.27, 0.50, and 0.23, respectively. These decay parameters were not sensitive to complexation of CTnl with cardiac troponin C (CTnC), and magnesium and calcium had no significant effect on the decay parameters. After incubation with 3':5'-cyclic AMP-dependent protein kinase, the intensity decay of CTnl required a fourth exponential term for satisfactory fitting with lifetimes of 0.11, 0.81, 1.95, and 6.63 ns and fractional amplitudes of 0.06, 0.37, 0.27, and 0.29, respectively. When bound to CTnC, the intensity decay of phosphorylated CTnl (p-CTnl) also required four exponential terms for satisfactory fitting, but the longest lifetime increased by a factor of 1.7. The decay parameters obtained from the complex formed between p-CTnl and CTnC were not sensitive to either magnesium or calcium. The anisotropy decay was resolved into two components with rotational correlation times of 0.90 and 23.48 ns. Phosphorylation resulted in a decrease of the long correlation time to 14.61 ns. The anisotropy values recovered at zero time suggest that the side chain of the Trp-192 had considerable subnanosecond motional freedom not resolved in these experiments. Within the CTnl.CTnC complex, the unresolved fast motions appeared sensitive to calcium binding to the calcium-specific site of CTnC. The observed emission heterogeneity is discussed in terms of possible excited-state interactions in conjunction with the predicted secondary structure of CTnl. The loss of molecular asymmetry of cardiac troponin I induced by phosphorylation as demonstrated in this work may be related to the known physiological effect of beta-agonists on cardiac contractility.
机译:我们对牛心脏Tnl(CTnl)的单个色氨酸残基(Trp-192)进行了时间分辨的荧光研究。在300 nm处激发,通过非线性最小二乘分析将强度衰减分解为三个分量,其寿命分别为0.60、2.22和4.75 ns。相应的分数幅度分别为0.27、0.50和0.23。这些衰减参数对CTn1与心肌肌钙蛋白C(CTnC)的络合不敏感,并且镁和钙对衰减参数无显着影响。与3':5'-环AMP依赖性蛋白激酶孵育后,CTnl的强度衰减需要第四个指数项才能令人满意地拟合,其寿命分别为0.11、0.81、1.95和6.63 ns,幅度幅度分别为0.06、0.37、0.27 ,和0.29。当与CTnC结合时,磷酸化CTnl(p-CTnl)的强度衰减也需要四个指数项才能令人满意地拟合,但最长寿命增加了1.7倍。从p-CTn1和CTnC之间形成的复合物获得的衰减参数对镁或钙都不敏感。各向异性衰减被分解为两个分量,其旋转相关时间分别为0.90和23.48 ns。磷酸化导致长的相关时间减少到14.61 ns。在零时恢复的各向异性值表明,Trp-192的侧链具有可观的亚纳秒运动自由度,在这些实验中未解决。在CTnl.CTnC复合体内,未解决的快速运动似乎对钙与CTnC钙特异性位点的结合敏感。根据可能的激发态相互作用和CTn1的预测二级结构,讨论了观察到的发射异质性。如这项工作所示,磷酸化引起的心肌肌钙蛋白I分子不对称性的丧失可能与β激动剂对心脏收缩的已知生理作用有关。

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