Ecole Polytechnique Fédérale de Lausanne (EPFL), Laboratoire de Spectroscopie Ultrarapide (LSU), ISIC and Lausanne Centre for Ultrafast Science (LACUS), CH-1015 Lausanne, Switzerland.
SwissFEL, Paul-Scherrer-Institut (PSI), 5232 Villigen PSI, Switzerland.
J Phys Chem Lett. 2023 Mar 9;14(9):2425-2432. doi: 10.1021/acs.jpclett.3c00218. Epub 2023 Mar 2.
We report femtosecond Fe K-edge absorption (XAS) and nonresonant X-ray emission (XES) spectra of ferric cytochrome C (Cyt c) upon excitation of the haem (>300 nm) or mixed excitation of the haem and tryptophan (<300 nm). The XAS and XES transients obtained in both excitation energy ranges show no evidence for electron transfer processes between photoexcited tryptophan (Trp) and the haem, but rather an ultrafast energy transfer, in agreement with previous ultrafast optical fluorescence and transient absorption studies. The reported ( , 115 (46), 13723-13730) decay times of Trp fluorescence in ferrous (∼350 fs) and ferric (∼700 fs) Cyt c are among the shortest ever reported for Trp in a protein. The observed time scales cannot be rationalized in terms of Förster or Dexter energy transfer mechanisms and call for a more thorough theoretical investigation.
我们报告了铁细胞色素 C(Cyt c)的飞秒 Fe K 边吸收(XAS)和非共振 X 射线发射(XES)光谱,激发血红素(>300nm)或血红素和色氨酸的混合激发(<300nm)。在这两种激发能范围内获得的 XAS 和 XES 瞬态没有证据表明光激发色氨酸(Trp)和血红素之间存在电子转移过程,而是超快能量转移,与以前的超快光学荧光和瞬态吸收研究一致。报道的(, 115 (46), 13723-13730)亚铁(∼350 fs)和高铁(∼700 fs)Cyt c 中 Trp 荧光的衰减时间是 Trp 在蛋白质中报告的最短时间之一。观察到的时间尺度不能用Förster 或 Dexter 能量转移机制来解释,需要更深入的理论研究。