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通过在蛋白质表面进行位点特异性引入负电荷来改善重组胎儿血红蛋白的整体功能

Site-Specific Introduction of Negative Charges on the Protein Surface for Improving Global Functions of Recombinant Fetal Hemoglobin.

作者信息

Kettisen Karin, Dicko Cedric, Smeds Emanuel, Bülow Leif

机构信息

Division of Pure and Applied Biochemistry, Department of Chemistry, Lund University, Lund, Sweden.

Division of Infection Medicine, Department of Clinical Sciences, Lund University, Lund, Sweden.

出版信息

Front Mol Biosci. 2021 Mar 30;8:649007. doi: 10.3389/fmolb.2021.649007. eCollection 2021.

Abstract

Due to its compatible oxygen-transporting abilities, hemoglobin (Hb) is a protein of interest in the development of artificial oxygen therapeutics. Despite continuous formulation attempts, extracellular Hb solution often exhibits undesirable reactions when applied . Therefore, protein engineering is frequently used to examine alternative ways of controlling the unwanted reactions linked to cell-free Hb solutions. In this study, three mutants of human fetal hemoglobin (HbF) are evaluated; single mutants αA12D and αA19D, and a double mutant αA12D/A19D. These variants were obtained by site-directed mutagenesis and recombinant production in , and carry negative charges on the surface of the α-subunit at the designated mutation sites. Through characterization of the mutant proteins, we found that the substitutions affected the protein in several ways. As expected, the isoelectric points (pIs) were lowered, from 7.1 (wild-type) down to 6.6 (double mutant), which influenced the anion exchange chromatographic procedures by shifting conditions toward higher conductivity for protein elution. The biological and physiological properties of HbF could be improved by these small modifications on the protein surface. The DNA cleavage rate associated with native HbF could be reduced by 55%. In addition, the negatively charged HbF mutant had an extended circulation time when examined in a mouse model using top load Hb additions. At the same time, the mutations did not affect the overall structural integrity of the HbF molecule, as determined by small-angle X-ray scattering. In combination with circular dichroism and thermal stability, modest structural shifts imposed by the mutations could possibly be related to changes in secondary structure or reorganization. Such local deformations were too minor to be determined within the resolution of the structural data; and overall, unchanged oxidation and heme loss kinetics support the conclusion that the mutations did not adversely affect the basic structural properties of Hb. We confirm the value of adding negatively charged residues onto the surface of the protein to improve the global functions of recombinant Hb.

摘要

由于其具有良好的氧运输能力,血红蛋白(Hb)是人工氧疗开发中备受关注的一种蛋白质。尽管不断尝试进行制剂研发,但细胞外Hb溶液在应用时常常会出现不良反应。因此,蛋白质工程经常被用于研究控制与无细胞Hb溶液相关的不良反应的替代方法。在本研究中,对三种人胎儿血红蛋白(HbF)突变体进行了评估;单突变体αA12D和αA19D,以及双突变体αA12D/A19D。这些变体通过定点诱变和在……中的重组生产获得,并且在指定的突变位点的α亚基表面带有负电荷。通过对突变蛋白的表征,我们发现这些替换在多个方面影响了蛋白质。正如预期的那样,等电点(pIs)降低了,从7.1(野生型)降至6.6(双突变体),这通过将条件向更高电导率转移以进行蛋白质洗脱,从而影响了阴离子交换色谱程序。通过对蛋白质表面进行这些小的修饰,可以改善HbF的生物学和生理学特性。与天然HbF相关的DNA裂解率可降低55%。此外,在使用顶部加载Hb添加物的小鼠模型中进行检测时,带负电荷的HbF突变体具有延长的循环时间。同时,如通过小角X射线散射所确定的,这些突变并未影响HbF分子的整体结构完整性。结合圆二色性和热稳定性,突变引起的适度结构变化可能与二级结构的改变或重组有关。这种局部变形太小,无法在结构数据的分辨率内确定;总体而言,氧化和血红素损失动力学未变支持了这些突变不会对Hb的基本结构特性产生不利影响的结论。我们证实了在蛋白质表面添加带负电荷的残基以改善重组Hb的整体功能的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dbe/8042259/24eaafcd5a9f/fmolb-08-649007-g0001.jpg

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