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人血红蛋白β亚基及其精氨酰-COOH肽的构象研究

Conformational studies on the beta subunits of human hemoglobin and their arginyl-COOH peptides.

作者信息

Bucci C F, Bucci E

出版信息

Biochemistry. 1975 Oct 7;14(20):4451-8. doi: 10.1021/bi00691a017.

Abstract

The beta subunits of hemoglobin upon alkylation of the cysteinyl residues with iodoacetamide showed a sedimentation velocity with an S20w, near 1.8 as for monomeric subunits. They reacted with alpha chains to give a tetrameric hemoglobin with a sedimentation constant near 4.4. Their CD spectrum was indistinguishable from that of untreated beta chains below 270 nm, otherwise they showed some deviation that became pronounced in the Soret region, where the optical activity of the alkylated subunits was definitely lower than that of the native subunits. Upon removal of the heme the apo-beta subunits showed a decreased optical activity in the far-uv region of the spectrum indicating a substantial loss of helical content. Their sedimentation behavior was consistent with the presence of large aggregates, which dissociates into monomers upon reconstitution with cyanoheme. The apo-beta subunits could be renatured from 6 M guanidine hydrochloride. They showed a stoichiometric reaction with heme in the molar ratio 1:1. Upon reconstitution with the heme their optical activity became similar to that of the native beta chains in the far-uv region of the spectrum, but remained lower in the near-uv and Soret regions. After acylation of the lysyl residues with citraconic anhydride the apo-beta subunits were digested with trypsin and the arginyl-COOH peptides beta(1-30), beta(31-40), beta(41-104), and beta(105-146) were separated by gel chromatography. With the exception of the peptide beta/105-146), which was insoluble at neutral pH, the sedimentation behavior of the other peptides showed the presence of small polymers. The sedimentation behavior of the peptide beta(31-40) was not tested. The percentage of alpha helix, beta conformation, and of random coil (or unordered structure) of the various proteins and peptides was measured fitting their CD spectra in the far-uv region with the parameter published by Y.H. Chen et al. ((1974), Biochemistry 13, 3350) and by N. Greenfield and G.D. Fasman ((1969), Biochemistry 8, 4108). In this way the helical content of the native and reconstituted alkylated beta subunits appeared to be near 76%, a value very near to that present in the same subunits in the hemoglobin crystal. The helical content of the apo-beta subunits in 0.04 M borate buffer at pH 9.6 decreased to a value near 45%. The helical content of the isolated peptides in electrolyte solutions was in any case near 10% indicating an almost complete loss of the structure that they have in the hemoglobin crystal. Cyanoheme reacted with the peptide beta(41-104), however, the reaction was not stoichiometric indicating a low affinity of the heme for the peptide. With the exception of the peptide beta(31-104), all of the other peptides recovered some of their helical structure when dissolved in 50% methanol. Notably also the apo-beta subunits did so suggesting that the loss of structure upon the removal of the heme could be in part due to the exposure of the heme pocket to water.

摘要

用碘乙酰胺对血红蛋白的β亚基的半胱氨酰残基进行烷基化处理后,其沉降速度显示S20w接近1.8,与单体亚基的情况相近。它们与α链反应生成沉降常数接近4.4的四聚体血红蛋白。在270nm以下,其圆二色光谱与未处理的β链无法区分,否则会出现一些偏差,在Soret区域这种偏差变得明显,在此区域烷基化亚基的光学活性明显低于天然亚基。除去血红素后,脱辅基β亚基在光谱的远紫外区域显示出光学活性降低,表明螺旋含量大幅减少。它们的沉降行为与存在大聚集体一致,在用氰化血红素重构时会解离成单体。脱辅基β亚基可以从6M盐酸胍中复性。它们与血红素以1:1的摩尔比发生化学计量反应。在用血红素重构后,其光学活性在光谱的远紫外区域变得与天然β链相似,但在近紫外和Soret区域仍较低。用柠康酸酐对赖氨酰残基进行酰化后,用胰蛋白酶消化脱辅基β亚基,通过凝胶色谱分离出精氨酰-COOH肽β(1 - 30)、β(31 - 40)、β(41 - 104)和β(105 - 146)。除了在中性pH下不溶的肽β(105 - 146)外,其他肽的沉降行为显示存在小聚合物。未测试肽β(31 - 40)的沉降行为。通过用Y.H. Chen等人((1974),《生物化学》13,3350)和N. Greenfield与G.D. Fasman((1969),《生物化学》8,4108)发表的参数拟合它们在远紫外区域的圆二色光谱,测量了各种蛋白质和肽的α螺旋、β构象以及无规卷曲(或无序结构)的百分比。通过这种方式,天然和重构的烷基化β亚基的螺旋含量似乎接近76%,这一数值与血红蛋白晶体中相同亚基的含量非常接近。在pH 9.6的0.04M硼酸盐缓冲液中,脱辅基β亚基的螺旋含量降至接近45%的值。在电解质溶液中,分离出的肽的螺旋含量无论如何都接近10%,表明它们在血红蛋白晶体中的结构几乎完全丧失。然而,氰化血红素与肽β(41 - 104)反应,但该反应不是化学计量的,表明血红素对该肽的亲和力较低。除了肽β(31 - 104)外,所有其他肽在溶解于50%甲醇时都恢复了一些螺旋结构。值得注意的是,脱辅基β亚基也是如此,这表明除去血红素后结构的丧失可能部分归因于血红素口袋暴露于水中。

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