Gryczynski Z, Bucci E, Kuśba J
Department of Biological Chemistry, University of Maryland at Baltimore 21201.
Photochem Photobiol. 1993 Oct;58(4):492-8. doi: 10.1111/j.1751-1097.1993.tb04920.x.
We measured the linear dichroism of several metalloporphyrins embedded in stretched polyvinyl alcohol (PVA) films to estimate the orientation of the absorption transition moments, which in hemoproteins are relevant to the radiationless energy transfer between tryptophan and heme. The metalloporphyrins were derivatives of protoporphyrin IX (PPIX), namely Fe(3+)-PPIX (ferric-heme) and Fe2+CO-PPIX (CO-heme), Mg-PPIX (Mg-heme) and Zn-PPIX (Zn-heme). Measurements were conducted between 300 and 700 nm. In all cases the linear dichroism was wavelength dependent, indicating the presence of several transition moments with different orientations. We focused our attention on the near-UV (300-380 nm) and Soret (380-450 nm) absorption bands. Deconvolution in terms of Gaussian components gave three components between 380 and 450 nm and only one in the 300-380 nm region. Deconvolution of the near-UV and Soret spectra of oxy-, deoxy- and carbonmonoxyhemoglobin gave very similar results, suggesting a very similar orientation of the various transition moments in the free and protein-embedded hemes. It should be stressed that the single 300-380 nm band is the only one responsible for the overlap integral that regulates the energy transfer from tryptophan to heme in hemoproteins (Gryczynski et al., Biophys. J. 63, 648-653, 1992). The dichroism of this single band indicated that its transition moment is oriented at about 60 degrees from the alpha-gamma meso-axis of the heme moiety. We conclude that the heme should be considered a linear oscillator when it acts as acceptor of energy transfer from tryptophans.
我们测量了嵌入拉伸聚乙烯醇(PVA)薄膜中的几种金属卟啉的线性二色性,以估计吸收跃迁矩的取向,这在血红蛋白中与色氨酸和血红素之间的无辐射能量转移有关。这些金属卟啉是原卟啉IX(PPIX)的衍生物,即Fe(3+)-PPIX(高铁血红素)、Fe2+CO-PPIX(一氧化碳血红素)、Mg-PPIX(镁血红素)和Zn-PPIX(锌血红素)。测量在300至700纳米之间进行。在所有情况下,线性二色性都与波长有关,表明存在几个具有不同取向的跃迁矩。我们将注意力集中在近紫外(300 - 380纳米)和索雷特(380 - 450纳米)吸收带。用高斯分量进行去卷积得到380至450纳米之间有三个分量,而在300 - 380纳米区域只有一个分量。对氧合血红蛋白、脱氧血红蛋白和一氧化碳血红蛋白的近紫外和索雷特光谱进行去卷积得到了非常相似的结果,这表明在游离血红素和嵌入蛋白质的血红素中,各种跃迁矩的取向非常相似。应该强调的是,单一的300 - 380纳米波段是调节血红蛋白中色氨酸向血红素能量转移的重叠积分的唯一负责波段(Gryczynski等人,《生物物理学杂志》63卷,648 - 653页,1992年)。这个单一波段的二色性表明其跃迁矩与血红素部分的α - γ中轴大约成60度角取向。我们得出结论,当血红素作为色氨酸能量转移的受体时,应将其视为线性振荡器。