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Role of α-Globin H Helix in the Building of Tetrameric Human Hemoglobin: Interaction with α-Hemoglobin Stabilizing Protein (AHSP) and Heme Molecule

机译:α-球蛋白H螺旋在四聚体人类血红蛋白构建中的作用:与α-血红蛋白稳定蛋白(AHSP)和血红素分子的相互作用

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摘要

Alpha-Hemoglobin Stabilizing Protein (AHSP) binds to α-hemoglobin (α-Hb) or α-globin and maintains it in a soluble state until its association with the β-Hb chain partner to form Hb tetramers. AHSP specifically recognizes the G and H helices of α-Hb. To investigate the degree of interaction of the various regions of the α-globin H helix with AHSP, this interface was studied by stepwise elimination of regions of the α-globin H helix: five truncated α-Hbs α-Hb1-138, α-Hb1-134, α-Hb1-126, α-Hb1-123, α-Hb1-117 were co-expressed with AHSP as two glutathione-S-transferase (GST) fusion proteins. SDS-PAGE and Western Blot analysis revealed that the level of expression of each truncated α-Hb was similar to that of the wild type α-Hb except the shortest protein α-Hb1-117 which displayed a decreased expression. While truncated GST-α-Hb1-138 and GST-α-Hb1-134 were normally soluble; the shorter globins GST-α-Hb1-126 and GST-α-Hb1-117 were obtained in very low quantities, and the truncated GST-α-Hb1-123 provided the least material. Absorbance and fluorescence studies of complexes showed that the truncated α-Hb1-134 and shorter forms led to modified absorption spectra together with an increased fluorescence emission. This attests that shortening the H helix leads to a lower affinity of the α-globin for the heme. Upon addition of β-Hb, the increase in fluorescence indicates the replacement of AHSP by β-Hb. The CO binding kinetics of different truncated AHSPWT/α-Hb complexes showed that these Hbs were not functionally normal in terms of the allosteric transition. The N-terminal part of the H helix is primordial for interaction with AHSP and C-terminal part for interaction with heme, both features being required for stability of α-globin chain.
机译:α-血红蛋白稳定蛋白(AHSP)与α-血红蛋白(α-Hb)或α-球蛋白结合,并保持其可溶状态,直到与β-Hb链伴侣结合形成Hb四聚体。 AHSP专门识别α-Hb的G和H螺旋。为了研究α-球蛋白H螺旋的各个区域与AHSP的相互作用程度,通过逐步消除α-球蛋白H螺旋的区域来研究该界面:五个截短的α-Hbsα-Hb1-138,α- Hb1-134,α-Hb1-126,α-Hb1-123,α-Hb1-117与AHSP共表达为两种谷胱甘肽S-转移酶(GST)融合蛋白。 SDS-PAGE和Western Blot分析显示,除了最短的蛋白质α-Hb1-117表现出降低的表达外,每个截短的α-Hb的表达水平与野生型α-Hb相似。截短的GST-α-Hb1-138和GST-α-Hb1-134通常可溶;较短的球蛋白GST-α-Hb1-126和GST-α-Hb1-117的含量非常低,而截短的GST-α-Hb1-123提供的材料最少。配合物的吸光度和荧光研究表明,截短的α-Hb1-134和较短的形式导致修饰的吸收光谱以及增加的荧光发射。这证明缩短H螺旋会导致α-珠蛋白对血红素的亲和力降低。加入β-Hb后,荧光强度增加,表明AHSP被β-Hb取代。不同截短的AHSP WT /α-Hb配合物的CO结合动力学表明,这些Hb在变构转变方面不是功能正常的。 H螺旋的N末端部分是与AHSP相互作用的原基,而C末端部分是与血红素相互作用的原基,这两个特征都是α-珠蛋白链稳定性所必需的。

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