Manjula B N, Tsai A, Upadhya R, Perumalsamy K, Smith P K, Malavalli A, Vandegriff K, Winslow R M, Intaglietta M, Prabhakaran M, Friedman J M, Acharya A S
Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Bioconjug Chem. 2003 Mar-Apr;14(2):464-72. doi: 10.1021/bc0200733.
Increasing the molecular size of acellular hemoglobin (Hb) has been proposed as an approach to reduce its undesirable vasoactive properties. The finding that bovine Hb surface decorated with about 10 copies of PEG5K per tetramer is vasoactive provides support for this concept. The PEGylated bovine Hb has a strikingly larger molecular radius than HbA (1). The colligative properties of the PEGylated bovine Hb are distinct from those of HbA and even polymerized Hb, suggesting a role for the colligative properties of PEGylated Hb in neutralizing the vasoactivity of acellular Hb. To correlate the colligative properties of surface-decorated Hb with the mass of the PEG attached and also its vasoactivity, we have developed a new maleimide-based protocol for the site-specific conjugation of PEG to Hb, taking advantage of the unusually high reactivity of Cys-93(beta) of oxy HbA and the high reactivity of the maleimide to protein thiols. PEG chains of 5, 10, and 20 kDa have been functionalized at one of their hydroxyl groups with a maleidophenyl moiety through a carbamate linkage and used to conjugate the PEG chains at the beta-93 Cys of HbA to generate PEGylated Hbs carrying two copies of PEG (of varying chain length) per tetramer. Homogeneous preparations of (SP-PEG5K)(2)-HbA, (SP-PEG10K)(2)-HbA, and (SP-PEG20K)(2)-HbA have been isolated by ion exchange chromatography. The oxygen affinity of Hb is increased slightly on PEGylation, but the length of the PEG-chain had very little additional influence on the O(2) affinity. Both the hydrodynamic volume and the molecular radius of the Hb increased on surface decoration with PEG and exhibited a linear correlation with the mass of the PEG chain attached. On the other hand, both the viscosity and the colloidal osmotic pressure (COP) of the PEGylated Hbs exhibited an exponential increase with the increase in PEG chain length. In contrast to the molecular volume, viscosity, and COP, the vasoactivity of the PEGylated Hbs was not a direct correlate of the PEG chain length. There appeared to be a threshold for the PEG chain length beyond which the protection against vasoactivity is decreased. These results suggest that the modulation of the vasoactivity of Hb by PEG could be a function of the surface shielding afforded by the PEG, the latter being a function of the disposition of the PEG chain on the protein surface, which in turn is a function of the length of the PEG chain. Thus, the biochemically homogeneous PEGylated Hbs described in the present study, surface-decorated with PEG chains of appropriate size, could serve as potential candidates for Hb-based oxygen carriers.
增加无细胞血红蛋白(Hb)的分子大小已被提议作为一种降低其不良血管活性特性的方法。每四聚体表面装饰有约10个PEG5K拷贝的牛血红蛋白具有血管活性这一发现为这一概念提供了支持。聚乙二醇化牛血红蛋白的分子半径比血红蛋白A(HbA)大得多(1)。聚乙二醇化牛血红蛋白的依数性与HbA甚至聚合血红蛋白的依数性不同,这表明聚乙二醇化血红蛋白的依数性在中和无细胞血红蛋白的血管活性方面发挥了作用。为了将表面修饰血红蛋白的依数性与连接的聚乙二醇质量及其血管活性相关联,我们开发了一种基于马来酰亚胺的新方案,用于将聚乙二醇位点特异性连接到血红蛋白上,利用氧合HbA的Cys-93(β)异常高的反应性以及马来酰亚胺对蛋白质硫醇的高反应性。5、10和20 kDa的聚乙二醇链在其一个羟基上通过氨基甲酸酯键用马来酰苯部分进行了功能化,并用于在HbA的β-93 Cys处连接聚乙二醇链,以生成每个四聚体携带两个聚乙二醇拷贝(链长不同)的聚乙二醇化血红蛋白。通过离子交换色谱法分离得到了(SP-PEG5K)(2)-HbA、(SP-PEG10K)(2)-HbA和(SP-PEG20K)(2)-HbA的均一制剂。聚乙二醇化后血红蛋白的氧亲和力略有增加,但聚乙二醇链的长度对氧亲和力几乎没有额外影响。用聚乙二醇进行表面修饰后,血红蛋白的流体力学体积和分子半径均增加,并且与连接的聚乙二醇链质量呈线性相关。另一方面,聚乙二醇化血红蛋白的粘度和胶体渗透压(COP)随着聚乙二醇链长度的增加呈指数增加。与分子体积、粘度和COP不同,聚乙二醇化血红蛋白的血管活性与聚乙二醇链长度没有直接关联。似乎聚乙二醇链长度存在一个阈值,超过该阈值对血管活性的保护作用会降低。这些结果表明,聚乙二醇对血红蛋白血管活性的调节可能是聚乙二醇提供的表面屏蔽作用的函数,而表面屏蔽作用又是聚乙二醇链在蛋白质表面的排列方式的函数,而聚乙二醇链的排列方式又是聚乙二醇链长度的函数。因此,本研究中描述的用适当大小的聚乙二醇链进行表面修饰的生物化学均一的聚乙二醇化血红蛋白可作为基于血红蛋白的氧载体的潜在候选物。