Nacharaju Parimala, Friedman Joel M, Prabhakaran Muthuchidambaram, Acharya Seetharama A, Manjula Belur N
Department of Physiology and Biophysics, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Biochemistry. 2007 Apr 17;46(15):4554-64. doi: 10.1021/bi0621462. Epub 2007 Mar 24.
HexaPEGylated hemoglobin (Hb), a non-hypertensive Hb, exhibits high O2 affinity, which makes it difficult for it to deliver the desired levels of oxygen to tissues. The PEGylation of very low O2 affinity Hbs is now contemplated as the strategy to generate PEGylated Hbs with intermediate levels of O2 affinity. Toward this goal, a doubly modified Hb with very low O2 affinity has been generated. The amino terminal of the beta-chain of HbA is modified by 2-hydroxy, 3-phospho propylation first to generate a low oxygen affinity Hb, HPPr-HbA. The oxygen affinity of this Hb is insensitive to DPG and IHP. Molecular modeling studies indicated potential interactions between the covalently linked phosphate group and Lys-82 of the trans beta-chain. To further modulate the oxygen affinity of Hb, the alpha alpha-fumaryl cross-bridge has been introduced into HPPr-HbA in the mid central cavity. The doubly modified HbA (alpha alpha-fumaryl-HPPr-HbA) exhibits an O2 affinity lower than that of either of the singly modified Hbs, with a partial additivity of the two modifications. The geminate recombination and the visible resonance Raman spectra of the photoproduct of alpha alpha-fumaryl-HPPr-HbA also reflect a degree of additive influence of each of these modifications. The two modifications induced a synergistic influence on the chemical reactivity of Cys-93(beta). It is suggested that the doubly modified Hb has accessed the low affinity T-state that is non-responsive to effectors. The doubly modified Hb is considered as a potential candidate for generating PEGylated Hbs with an O2 affinity comparable to that of erythrocytes for developing blood substitutes.
六聚乙二醇化血红蛋白(Hb)是一种非高血压性血红蛋白,具有高氧亲和力,这使得它难以向组织输送所需水平的氧气。目前,人们设想将极低氧亲和力的血红蛋白进行聚乙二醇化,作为生成具有中等氧亲和力的聚乙二醇化血红蛋白的策略。为了实现这一目标,已经制备了一种具有极低氧亲和力的双重修饰血红蛋白。首先通过2-羟基-3-磷酸丙基化修饰HbA的β链氨基末端,以生成低氧亲和力血红蛋白HPPr-HbA。这种血红蛋白的氧亲和力对DPG和IHP不敏感。分子模型研究表明,共价连接的磷酸基团与反式β链的Lys-82之间存在潜在相互作用。为了进一步调节血红蛋白的氧亲和力,已将αα-富马酰基跨桥引入HPPr-HbA的中央腔中部。双重修饰的HbA(αα-富马酰基-HPPr-HbA)的氧亲和力低于任何一种单一修饰的血红蛋白,两种修饰具有部分加和性。αα-富马酰基-HPPr-HbA光产物的双分子复合和可见共振拉曼光谱也反映了每种修饰的一定程度的加和影响。这两种修饰对Cys-93(β)的化学反应性产生了协同影响。有人认为,双重修饰的血红蛋白已进入对效应物无反应的低亲和力T态。双重修饰的血红蛋白被认为是生成具有与红细胞相当的氧亲和力的聚乙二醇化血红蛋白以开发血液替代品的潜在候选物。