Webster Kyle D, Dahhan Dana, Otto Abigail M, Frosti Cheyanne L, Dean William L, Chaires Jonathan B, Olsen Kenneth W
Department of Chemistry and Biochemistry, Loyola University Chicago, Chicago, IL.
James Graham Brown Cancer Center.
Artif Organs. 2017 Apr;41(4):351-358. doi: 10.1111/aor.12928. Epub 2017 Mar 20.
The development of a blood substitute is urgent due to blood shortages and potential communicable diseases. A novel method, inside-out PEGylation, has been used here to conjugate a multiarm maleimide-PEG (Mal-PEG) to β-cross-linked (βXL-Hb) hemoglobin (Hb) tetramers through the Cys β93 residues. This method produces a polymer with a single PEG backbone that is surrounded by multiple proteins, rather than coating a single protein with multiple PEG chains. Electrophoresis under denaturing conditions showed a large molecular weight species. Gel filtration chromatography and analytical ultracentrifugation determined the most prevalent species had three βXL-Hb to one Mal-PEG. Thermal denaturation studies showed that the cross-linked and PEGylated species were more stable than native Hb. Cross-linking under oxy-conditions produced a high oxygen affinity Hb species (P = 9.18 Torr), but the oxygen affinity was not significantly altered by PEGylation (P = 9.67 Torr). Inside-out PEGylation can be used to produce a hemoglobin-based oxygen carrier and potentially for other multiprotein complexes.
由于血液短缺和潜在的传染病,血液替代品的研发迫在眉睫。本文采用了一种全新的方法——由内向外聚乙二醇化,通过半胱氨酸β93残基将多臂马来酰亚胺-聚乙二醇(Mal-PEG)与β交联(βXL-Hb)血红蛋白(Hb)四聚体偶联。这种方法产生的聚合物具有单一的聚乙二醇主链,周围环绕着多个蛋白质,而不是用多条聚乙二醇链包裹单个蛋白质。变性条件下的电泳显示出一种大分子物质。凝胶过滤色谱和分析超速离心确定最主要的物质是三个βXL-Hb对应一个Mal-PEG。热变性研究表明,交联和聚乙二醇化的物质比天然Hb更稳定。在氧条件下交联产生了一种高氧亲和力的Hb物质(P = 9.18 Torr),但聚乙二醇化对氧亲和力没有显著改变(P = 9.67 Torr)。由内向外聚乙二醇化可用于制备基于血红蛋白的氧载体,并可能用于其他多蛋白复合物。