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旨在模拟肌红蛋白和血红蛋白血红素环境的肽的氧结合血红素复合物。

Oxygen-binding heme complexes of peptides designed to mimic the heme environment of myoglobin and hemoglobin.

作者信息

Atassi M Zouhair, Childress Catherine

机构信息

Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Protein J. 2005 Jan;24(1):37-49. doi: 10.1007/s10930-004-0604-y.

Abstract

Development of effective resuscitation agents for blood-loss replacement in trauma or surgery is extremely important despite substantial improvements in screening methods of blood from human donors. This paper reports the design and synthesis of peptides that mimic the natural environment of the heme group in myoglobin (Mb) and in the alpha- and beta-subunits of human adult hemoglobin (Hb). The designs were based on the fact that the heme group in the aforementioned proteins is sandwiched between helices E and F. Fifteen test peptides and six control peptides were synthesized, and their ability to form stable complexes with heme was investigated. It was found that none of the control peptides or proteins was able to bind heme. However, each of the peptides that were designed to mimic the E-F helices, and even shorter designs, which removed from this region residues that do not contribute to contacts with the heme group, were each able to bind one mole of heme per mole of peptide forming peptide heme complexes that were stable to manipulation and behaved as single molecular species. Oxygen binding measurements on the reduced peptide-heme complexes showed that these compounds bind oxygen and give visible spectra that were typical of oxygenated heme-proteins. In oxygen binding measurements done under different partial pressures of oxygen, the heme peptide complexes gave hyperbolic oxygen-saturation curves, but showed slight differences in their P50 values. The P50 values ranged from 3.8 mmHg for the heme peptide B7 complex to 13.7 mmHg for the heme peptide D13 complex (under the same conditions, P50 values for Hb and Mb were 34.0 and 5.5 mmHg, respectively). It is concluded that peptide constructs designed to mimic the heme-binding regions of Mb or the Hb subunits were able to form coordinate 1:1 complexes with heme, and these complexes bind oxygen in a manner expected for single subunit heme proteins.

摘要

尽管在筛选人类献血者血液的方法上有了显著改进,但开发用于创伤或手术中失血补充的有效复苏剂仍然极其重要。本文报道了模拟肌红蛋白(Mb)以及成人血红蛋白(Hb)的α和β亚基中血红素基团自然环境的肽的设计与合成。这些设计基于上述蛋白质中的血红素基团夹在E螺旋和F螺旋之间这一事实。合成了15种测试肽和6种对照肽,并研究了它们与血红素形成稳定复合物的能力。结果发现,对照肽或蛋白质均不能结合血红素。然而,每一种设计用于模拟E - F螺旋的肽,甚至是更短的设计(从该区域去除了与血红素基团无接触作用的残基),每摩尔肽都能够结合一摩尔血红素,形成对操作稳定且表现为单分子物种的肽 - 血红素复合物。对还原态肽 - 血红素复合物的氧结合测量表明,这些化合物能结合氧气,并给出典型的氧合血红素蛋白可见光谱。在不同氧分压下进行的氧结合测量中,血红素肽复合物给出双曲线氧饱和度曲线,但它们的P50值略有差异。血红素肽B7复合物的P50值为3.8 mmHg,血红素肽D13复合物的P50值为13.7 mmHg(在相同条件下,Hb和Mb的P50值分别为34.0和5.5 mmHg)。结论是,设计用于模拟Mb或Hb亚基血红素结合区域的肽构建体能够与血红素形成1:1配位复合物,并且这些复合物以单亚基血红素蛋白预期的方式结合氧气。

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