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虎皮鹦鹉血红蛋白——其晶体结构及其与某些鸟类血红蛋白的氧亲和力。

Parakeet Hemoglobin - Its Crystal Structure and Oxygen Affinity in Relation to Some Avian Hemoglobins.

机构信息

Advanced Materials Laboratory, CSIR-Central Leather Research Institute, Chennai 600020, Tamil Nadu, India.

Biophysics Laboratory, CSIR-Central Leather Research Institute, Chennai 600020, Tamil Nadu, India.

出版信息

Protein Pept Lett. 2021;28(1):18-30. doi: 10.2174/0929866527666200320100109.

Abstract

BACKGROUND

"Avians" often show efficient oxygen management to meet the demands of their metabolism. Hemoglobin, a transporter protein consists of four non-covalently linked subunits contain haem binding hydrophobic pocket serves as a site of allosteric cooperativity. The physiology and anatomy of both mammals and avian are functionally different, in birds, the respiratory system formed by small air sacs that serve as tidal ventilation for the lungs and have no significant exchange across their cells. Parakeet (Psittacula krameri) a tropical and non-migrating species and it is easily adapted to living in disturbed habitat. The sequence analysis reveals that α and β chain of parakeet hemoglobin highly similar grey lag goose and bar headed goose hemoglobin respectively. Thus it has been tempted us to study in to analyzing the sequence and structural comparison of this hemoglobin to find out the physiological capabilities of parakeet hemoglobin.

OBJECTIVE

The structure determination studies of parakeet hemoglobin by X-ray diffraction. The sequence and structure are compared with goose, chicken and human Hb, emphasizing the role of amino acids in the subunit contacts that facilitate survival by low oxygen demand.

METHODS

The Hb was purified and crystallized by hanging drop vapor diffusion method using poly ethylene glycol (PEG) 3350 and sodium phosphate buffer. X-ray diffracted data set was collected at 3Å resolution, the data was processed in Automar and molecular replacement, refinements, model building was carried out in CCP4i program package. The final refined model was deposited in protein data bank with accession id 2zfb.

RESULTS

The tertiary structure of Parakeet Hb is compared with the met form of BHG Hb (1c40) and oxy form of GLG (1faw) and oxy form of human Hbs (1hho). Superimposing parakeet Hb α1β1 subunit with 'R' state human Hb shows an r.m.s.d of 0.98 Å and for BHG and GLG Hb, the r.m.s.d shows 0.72 and 0.61 Å. The replacement of α115Asp in parakeet Hb as against the α115Glu in human Hb results in the movement of GH corners. The amino acid proline at α50 present only in Parakeet Hb and Chicken HbD and not present in any other avian family which includes human Hb. The residue α78Thr located in EF corner loop region, which slightly diverge when superimposing with human and BHG Hb and also replacement of α113Asn present only in Parakeet Hb placed near the FG helix corner.

CONCLUSION

The present study describes the structure determination of parakeet hemoglobin and its structural features to understand its oxygen affinity characteristics. The crystals were obtained by buffered low-salt conditions, like those of chicken HbD, carbonmonoxy and cyanomet human Hb. The present study reveals several interesting and unique modifications in the finer aspects of the quaternary structure of parakeet Hb, which are involved in oxygen affinity characteristics and the α1β1 subunit contacts. Crystallization of parakeet Hb with allosteric effectors like Inositol pentaphosphate may bring further understanding of the influence of physiological and environmental factors on the quaternary structure.

摘要

背景

“鸟类”通常表现出有效的氧气管理,以满足其新陈代谢的需求。血红蛋白是一种由四个非共价连接的亚基组成的转运蛋白,包含血红素结合疏水性口袋,作为变构协同作用的位点。哺乳动物和鸟类的生理学和解剖学在功能上是不同的,在鸟类中,呼吸系统由小气囊组成,这些气囊作为肺的潮汐通气,其细胞之间没有明显的交换。长尾鹦鹉(Psittacula krameri)是一种热带的、不迁徙的物种,它很容易适应生活在受干扰的栖息地。序列分析表明,长尾鹦鹉的血红蛋白的α和β链分别与灰雁和斑头雁的血红蛋白高度相似。因此,我们试图研究分析这种血红蛋白的序列和结构比较,以找出长尾鹦鹉血红蛋白的生理能力。

目的

通过 X 射线衍射研究长尾鹦鹉血红蛋白的结构测定。将序列和结构与鹅、鸡和人血红蛋白进行比较,强调亚基接触中氨基酸的作用,这些氨基酸有利于通过低氧需求生存。

方法

采用聚乙二醇(PEG)3350 和磷酸钠缓冲液的悬滴气相扩散法纯化和结晶血红蛋白。在 3Å 分辨率下收集 X 射线衍射数据集,在 Automar 中进行数据处理,使用 CCP4i 程序包进行分子替换、细化、模型构建。最终的精炼模型被存入蛋白数据库,登录号为 2zfb。

结果

将长尾鹦鹉 Hb 的三级结构与 BHG Hb 的 Met 形式(1c40)和 Oxy 形式(1faw)以及 GLG 的 Oxy 形式(1hho)进行比较。将长尾鹦鹉 Hb 的α1β1亚基与“R”状态的人 Hb 进行叠加,得到 r.m.s.d.为 0.98Å,而与 BHG 和 GLG Hb 进行叠加,r.m.s.d.分别为 0.72Å和 0.61Å。长尾鹦鹉 Hb 中的α115Asp被替换为人类 Hb 中的α115Glu,导致 GH 角移动。仅在长尾鹦鹉 Hb 和鸡 HbD 中存在的脯氨酸α50,而不在任何其他包括人 Hb 的鸟类家族中存在。位于 EF 角环区的氨基酸α78Thr 略微发散,当与人 Hb 和 BHG Hb 叠加时,以及仅存在于长尾鹦鹉 Hb 中的α113Asn 取代物,位于 FG 螺旋角附近。

结论

本研究描述了长尾鹦鹉血红蛋白的结构测定及其结构特征,以了解其氧亲和力特征。晶体是在缓冲低盐条件下获得的,类似于鸡 HbD、碳氧和氰化高铁血红蛋白。本研究揭示了长尾鹦鹉 Hb 四级结构的几个有趣和独特的修饰,这些修饰涉及氧亲和力特征和α1β1亚基接触。用肌醇五磷酸等变构效应物对长尾鹦鹉 Hb 进行结晶,可能会进一步了解生理和环境因素对四级结构的影响。

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