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来自栉孔扇贝的硫化氢结合血红蛋白I中血红素乙烯基基团的取向。

Orientation of the heme vinyl groups in the hydrogen sulfide-binding hemoglobin I from Lucina pectinata.

作者信息

Silfa E, Almeida M, Cerda J, Wu S, López-Garriga J

机构信息

Chemistry Department, University of Puerto Rico, Mayagüez 00680, USA.

出版信息

Biospectroscopy. 1998;4(5):311-26. doi: 10.1002/(sici)1520-6343(1998)4:5<311::aid-bspy3>3.0.co;2-t.

Abstract

Hemoglobin I (HbI) from the claim Lucina pectinata is a unique heme protein that binds and transfers hydrogen sulfide (H2S) to a symbiotic bacteria. The metcyano, metaquo, carbon monoxy, oxy, and deoxy complexes of HbI were studies by resonance Raman (RR) spectroscopy, and the metacyano and carbon monoxy complexes were also studied by 1H-NMR. The results indicate a unique orientation of the heme 2-vinyl group relative to other heme proteins. The RR spectra of the HbICO, metHbICN, metHbIH2O, HbIO2 and deoxyHbI heme derivatives show a band at 1621 cm-1 and a shoulder at 1626 cm-1, indicative of an out-of-plane position for one of the vinyls relative to the other one. Spin-lattice relaxation properties of protons in the metHbICN complex also suggest a unique orientation for the heme 2-vinyl group of HbI. The longitudinal relaxation time (T1) for the 2-H alpha, 2-H beta c, and H beta t protons are 120 ms, 115 ms, and 135 ms, respectively. The data from both techniques suggest an out-of-plane and trans-oriented 2-vinyl group, and an in-plane and cis-oriented 4-vinyl group for the low-spin complexes of HbI. These results imply that the electron withdrawing character of the out-of-plane vinyl group contributes to the stability of the heme Fe+3 oxidation state, facilitates the binding of the H2S ligand, and promotes the stability of this ferric H2S complex.

摘要

来自栉孔扇贝(Lucina pectinata)的血红蛋白I(HbI)是一种独特的血红素蛋白,它能结合硫化氢(H₂S)并将其转移至共生细菌。通过共振拉曼(RR)光谱对HbI的高铁氰基、高铁水合、一氧化碳、氧合和脱氧配合物进行了研究,同时也通过¹H-NMR对高铁氰基和一氧化碳配合物进行了研究。结果表明,相对于其他血红素蛋白,血红素2-乙烯基具有独特的取向。HbICO、高铁HbICN、高铁HbIH₂O、HbIO₂和脱氧HbI血红素衍生物的RR光谱在1621 cm⁻¹处有一个谱带,在1626 cm⁻¹处有一个肩峰,这表明其中一个乙烯基相对于另一个乙烯基处于面外位置。高铁HbICN配合物中质子的自旋晶格弛豫特性也表明HbI的血红素2-乙烯基具有独特的取向。2-Hα、2-Hβc和Hβt质子的纵向弛豫时间(T1)分别为120 ms、115 ms和135 ms。这两种技术的数据均表明,对于HbI的低自旋配合物,2-乙烯基处于面外且呈反式取向,4-乙烯基处于面内且呈顺式取向。这些结果表明,面外乙烯基的吸电子特性有助于血红素Fe⁺³氧化态的稳定性,促进H₂S配体的结合,并提高这种铁-H₂S配合物的稳定性。

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