Guarrera L, Colotti G, Chiancone E, Boffi A
CNR Centro di Biologia Molecolare, Dipartimento di Scienze Biochimiche A. Rossi Fanelli Università La Sapienza Roma, Italy.
Biochemistry. 1999 Aug 3;38(31):10079-83. doi: 10.1021/bi990942k.
FTIR spectra of native Scapharca homodimeric hemoglobin (HbI) and of the Phe97-->Ile mutant have been measured in the region 2400-2700 cm(-1) where the absorption of the sulfhydryl groups can be observed. In native HbI, the two Cys92 residues give rise to a relatively intense band centered at 2559 cm(-1) that is shifted to 2568 cm(-1) and strongly quenched upon ligand binding. In the Phe97-->Leu mutant, such ligand-linked changes are not observed and the strong peak at around 2560 cm(-1) persists in the liganded derivatives. In native HbI, the observed changes have been attributed to the decrease in polarity of the interface due to the ligand-induced extrusion of the Phe97 phenyl ring from the heme pocket to the interface and the subsequent release of several water molecules that are clustered in the vicinity of Cys92. In contrast, in the Phe97-->Leu mutant, the Leu residue does not leave the heme pocket upon ligand binding and the interface is unaltered. The Cys92/S-H infrared band, therefore, represents a sensitive probe of the structural rearrangements that take place in the intersubunit interface upon ligand binding to HbI. The heterotetrameric Scapharca hemoglobin HbII contains, in addition to the Cys92 residues in the interfaces, two extra sulfhydryl groups per tetramer (Cys9 in the B chain) that are exposed to solvent in the A helix. The frequency of the Cys9/S-H stretching vibration occurs at 2582 cm(-1) in the unliganded and at 2586 cm(-1) in the liganded derivative, pointing to the involvement of the A helix in the ligand-linked polymerization characteristic of HbII.
已在2400 - 2700 cm⁻¹区域测量了天然紫贻贝同二聚体血红蛋白(HbI)和苯丙氨酸97→异亮氨酸突变体的傅里叶变换红外光谱,在该区域可观察到巯基的吸收。在天然HbI中,两个半胱氨酸92残基产生一个相对较强的峰,中心位于2559 cm⁻¹,该峰在配体结合时会移至2568 cm⁻¹并强烈淬灭。在苯丙氨酸97→亮氨酸突变体中,未观察到这种与配体相关的变化,并且在配体化衍生物中,2560 cm⁻¹左右的强峰仍然存在。在天然HbI中,观察到的变化归因于由于配体诱导苯丙氨酸97苯环从血红素口袋挤出到界面,以及随后聚集在半胱氨酸92附近的几个水分子的释放,导致界面极性降低。相反,在苯丙氨酸97→亮氨酸突变体中,亮氨酸残基在配体结合时不会离开血红素口袋,并且界面未改变。因此,半胱氨酸92/S - H红外带代表了配体与HbI结合时亚基间界面发生的结构重排的敏感探针。异源四聚体紫贻贝血红蛋白HbII除了在界面中有半胱氨酸92残基外,每个四聚体还有两个额外的巯基(B链中的半胱氨酸9),它们在A螺旋中暴露于溶剂。未配体化时,半胱氨酸9/S - H伸缩振动频率出现在2582 cm⁻¹,配体化衍生物中出现在2586 cm⁻¹,这表明A螺旋参与了HbII的与配体相关的聚合特性。