Hu Tao, Prabhakaran Muthuchidambaram, Acharya Seetharama A, Manjula Belur N
Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
Biochem J. 2005 Dec 15;392(Pt 3):555-64. doi: 10.1042/BJ20050663.
Our recent studies on PEG-Hb [poly(ethylene glycol)-Hb] conjugates generated by thiolation-mediated maleimide-chemistry based PEGylation demonstrated that the vasoactivity of the PEG-Hb conjugates is a function of the configuration of the PEG chains on the surface of the protein and is independent of the PEG/protein-mass ratio [Manjula, A. G. Tsai, Intaglietta, H.-C. Tsai, Ho, Smith, Perumalsamy, Kanika, Friedman and Acharya (2005) Protein J. 24, 133-146]. A Hb conjugated with six PEG5k chains (SP-PEG5k)6-Hb, was vasoinactive. In an attempt to understand whether the chemistry of conjugation of PEG to Hb has any influence on the modulation of its functional and solution properties, we have now generated a new hexaPEGylated-Hb, (propyl-PEG5k)6-Hb, by reductive alkylation chemistry. CD (circular dichroism) spectral measurements indicated that the overall secondary structure of Hb is not adversely influenced upon PEGylation. (Propyl-PEG5k)6-Hb exhibited an increased O2 affinity with decreased co-operativity and decreased modulation by allosteric effectors comparable with that of (SP-PEG5k)6-Hb, although its Cys-93(b) is not derivatized as in the latter. On a molecular mass basis, PEG linked to Hb by reductive alkylation increased its COP (colloidal osmotic pressure) more efficiently than when linked by thiolation-mediated maleimide-chemistry. These results demonstrate that the functional properties of PEG-Hb conjugates may be a direct consequence of surface decoration of Hb with PEG, but are independent of the site (pattern) and/or the chemistry of PEGylation. However the solution properties of PEGylated Hb are influenced by the site (pattern) and/or the chemistry of PEGylation and the presence or absence of an 'extension arm' between the conjugating site of Hb and the PEG chain.
我们最近对通过基于硫醇化介导的马来酰亚胺化学聚乙二醇化反应生成的聚乙二醇-血红蛋白(PEG-Hb)缀合物的研究表明,PEG-Hb缀合物的血管活性是蛋白质表面PEG链构型的函数,且与PEG/蛋白质质量比无关[曼朱拉、A.G.蔡、因塔利亚塔、H.-C.蔡、何、史密斯、佩鲁马勒萨米、卡妮卡、弗里德曼和阿查里亚(2005年)《蛋白质杂志》24卷,第133 - 146页]。与六条PEG5k链共轭的血红蛋白(SP-PEG5k)6-Hb无血管活性。为了理解PEG与Hb的共轭化学是否对其功能和溶液性质的调节有任何影响,我们现在通过还原烷基化化学方法生成了一种新的六聚乙二醇化血红蛋白(丙基-PEG5k)6-Hb。圆二色(CD)光谱测量表明,Hb的整体二级结构在聚乙二醇化后未受到不利影响。(丙基-PEG5k)6-Hb表现出氧亲和力增加、协同性降低以及变构效应剂调节作用降低,与(SP-PEG5k)6-Hb相当,尽管其Cys-93(b)不像后者那样被衍生化。以分子量为基础,通过还原烷基化与Hb相连的PEG比通过硫醇化介导的马来酰亚胺化学方法相连时更有效地增加了其胶体渗透压(COP)。这些结果表明,PEG-Hb缀合物的功能性质可能是Hb表面被PEG修饰的直接结果,但与聚乙二醇化的位点(模式)和/或化学方法无关。然而,聚乙二醇化血红蛋白的溶液性质受聚乙二醇化的位点(模式)和/或化学方法以及Hb共轭位点与PEG链之间“延伸臂”的有无影响。