Abbasi Atiya, Lutfullah Ghosia
International Centre for Chemical Sciences, University of Karachi, Karachi, 75270, Pakistan.
Biochem Biophys Res Commun. 2002 Feb 15;291(1):176-84. doi: 10.1006/bbrc.2002.6399.
The primary structure of the major hemoglobin component, HbA (alpha(A)- and beta-chain), from Tufted duck (Aythya fuligula) is presented. The separation of the globin subunits was achieved by ion exchange chromatography on CM-cellulose in 8 M urea. The amino acid sequence was determined by automatic Edman degradation of native chains as well as tryptic and hydrolytic peptides in a gas-phase sequencer. The automated homology model was generated by the protein structure modeling package WHAT IF using the crystal structure coordinates of Bar-headed goose hemoglobin. The 3D structure prediction enables alpha99Arg and beta101Glu to emerge as a new intersubunit contact site not found in the hemoglobin structure of any other species. alpha99Arg forms a complex salt bridge network involving alpha99Arg-beta101Glu-beta104Arg-beta108Asp. Also the substitution at alpha34 --> Ile, alpha38 --> Gln and beta55 --> Leu serves to stabilize the oxy-structure, leading to higher oxygen affinity.
本文展示了凤头潜鸭(Aythya fuligula)主要血红蛋白成分HbA(α(A)-链和β-链)的一级结构。通过在8M尿素中于CM-纤维素上进行离子交换色谱法实现了珠蛋白亚基的分离。氨基酸序列通过在气相测序仪中对天然链以及胰蛋白酶和水解肽进行自动埃德曼降解来确定。使用斑头雁血红蛋白的晶体结构坐标,通过蛋白质结构建模软件包WHAT IF生成了自动同源模型。三维结构预测表明,α99Arg和β101Glu成为在任何其他物种的血红蛋白结构中未发现的新的亚基间接触位点。α99Arg形成了一个复杂的盐桥网络,涉及α99Arg-β101Glu-β104Arg-β108Asp。此外,α34→Ile、α38→Gln和β55→Leu处的取代有助于稳定氧合结构,从而导致更高的氧亲和力。