He Zhenning, Russell J Eric
Department of Medicine (Hematology-Oncology), University of Pennsylvania School of Medicine, Philadelphia, PA, USA.
Biochem Biophys Res Commun. 2004 Dec 24;325(4):1376-82. doi: 10.1016/j.bbrc.2004.10.180.
Hemoglobin zeta(2)beta(2)(S) is generated by substituting embryonic zeta-globin subunits for the normal alpha-globin components of Hb S (alpha(2)beta(2)(S)). This novel hemoglobin has recently been shown to inhibit polymerization of Hb S in vitro and to normalize the pathological phenotype of mouse models of sickle cell disease in vivo. Despite its promise as a therapeutic tool in human disease, however, the basic O(2)-transport properties of Hb zeta(2)beta(2)(S) have not yet been described. Using human hemoglobins purified from complex transgenic-knockout mice, we show that Hb zeta(2)beta(2)(S) exhibits an O(2) affinity as well as a Hill coefficient, Bohr response, and allosteric properties in vitro that are suboptimally suited for physiological O(2) transport in vivo. These data are substantiated by in situ analyses demonstrating an increase in the O(2) affinity of intact erythrocytes from mice that express Hb zeta(2)beta(2)(S). Surprisingly, though, co-expression of Hb zeta(2)beta(2)(S) leads to a substantial improvement in the tissue oxygenation of mice that model sickle cell disease. These analyses suggest that, in the context of sickle cell disease, the beneficial antisickling effects of Hb zeta(2)beta(2)(S) outweigh its O(2)-transport liabilities. The potential structural bases for the antisickling properties of Hb zeta(2)beta(2)(S) are discussed in the context of these new observations.
血红蛋白ζ(2)β(2)(S)是通过用胚胎ζ-珠蛋白亚基替代Hb S(α(2)β(2)(S))的正常α-珠蛋白成分而产生的。最近已证明这种新型血红蛋白在体外可抑制Hb S的聚合,并在体内使镰状细胞病小鼠模型的病理表型正常化。然而,尽管它有望成为人类疾病的治疗工具,但Hb ζ(2)β(2)(S)的基本氧气运输特性尚未得到描述。我们使用从复杂的转基因敲除小鼠中纯化的人血红蛋白,发现Hb ζ(2)β(2)(S)在体外表现出的氧气亲和力、希尔系数、波尔效应和变构特性,并不最适合体内的生理性氧气运输。原位分析证实了这些数据,该分析表明表达Hb ζ(2)β(2)(S)的小鼠完整红细胞的氧气亲和力增加。然而,令人惊讶的是,Hb ζ(2)β(2)(S)的共表达导致镰状细胞病模型小鼠的组织氧合有显著改善。这些分析表明,在镰状细胞病的背景下,Hb ζ(2)β(2)(S)的有益抗镰状化作用超过了其氧气运输方面的不足。在这些新观察结果的背景下,讨论了Hb ζ(2)β(2)(S)抗镰状化特性的潜在结构基础。