Dasgupta S, Spiro T G
Biochemistry. 1986 Oct 7;25(20):5941-8. doi: 10.1021/bi00368a016.
Resonance Raman spectra are reported for deoxyhemoglobin (deoxyHb) and the (carbonmonoxy)hemoglobin (HbCO) photoproduct Hb by use of 7-ns YAG laser pulses at wavelengths of 416 and 532 nm, where enhancement is observed for totally symmetric and nontotally symmetric modes, respectively. The frequencies of the porphyrin skeletal modes v10, v2, v19, v11, and v3 have been determined to be 1602, 1559, 1553, 1542, and 1466 cm-1 in Hb. These frequencies are 2-3 cm-1 lower than the corresponding frequencies for deoxyHb. The v19 and v11 frequencies are at the expected values for a Ct-N distance of 2.057 A, the known core size for a 6-coordinate high-spin FeII-porphyrin complex. The remaining frequencies, however, deviate from the core size correlations for these modes in the same direction as do those of deoxyHb, suggesting that the porphyrin ring is domed in both species. Thus, the heme structure is similar for deoxyHb and Hb but is slightly expanded in the latter. The expanded heme in Hb implies a restraint on the full out-of-plane displacement of the Fe atom, by an estimated approximately 0.1 A relative to deoxyHb. This could result from a residual interaction with the CO molecule if the latter remains held by the protein against the Fe atom, in a high-spin 6-coordinate complex. The available spectroscopic evidence suggests that such a complex may be stabilized at 4 K but is unlikely to persist at room temperature beyond the electronic relaxation (0.35 ps) of the electronically excited heme.(ABSTRACT TRUNCATED AT 250 WORDS)
通过使用波长为416和532nm的7纳秒YAG激光脉冲,报道了脱氧血红蛋白(deoxyHb)和(碳氧)血红蛋白(HbCO)光产物Hb的共振拉曼光谱,其中分别观察到全对称和非全对称模式的增强。已确定卟啉骨架模式v10、v2、v19、v11和v3在Hb中的频率分别为1602、1559、1553、1542和1466cm-1。这些频率比脱氧血红蛋白的相应频率低2 - 3cm-1。v19和v11频率处于Ct - N距离为2.057 Å时的预期值,这是六配位高自旋FeII - 卟啉配合物的已知核心尺寸。然而,其余频率与脱氧血红蛋白的这些模式的核心尺寸相关性在相同方向上偏离,表明两种物种中的卟啉环都是圆顶状的。因此,脱氧血红蛋白和Hb的血红素结构相似,但后者略有扩展。Hb中扩展的血红素意味着Fe原子的完全平面外位移受到限制,相对于脱氧血红蛋白估计约为0.1 Å。如果CO分子在高自旋六配位配合物中仍被蛋白质固定在Fe原子上,这可能是由于与CO分子的残余相互作用导致的。现有的光谱证据表明,这样的配合物在4K时可能是稳定的,但在室温下不太可能在电子激发血红素的电子弛豫(0.35ps)之后持续存在。(摘要截断于250字)