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The acetylation of hemoglobin by aspirin. In vitro and in vivo.

机译:阿司匹林使血红蛋白乙酰化。体外和体内。

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摘要

The chemical modification of hemoglobin by aspirin (ASA) has been studied, both in intact human red cells and in purified hemoglobin solutions. After incubation of red cells with 20 mM [acetyl-1minus14C]ASA, incorporation of radioactivity into hemoglobin was observed in agreement with the results of Klotz and Tam (1973. Proc. Natl. Acad. Sci. U. S. A. 70: 1313-1315). In contrast, no labeling of hemoglobin was seen when [carbosyl-14-C]ASA was used. These results indicate that ASA acetylates hemoglobin. The acetylated hemoglobin was readily separated from unmodified hemoglobin by both gel electrofocusing and by column chromatography. Quantitation of the extent of acetylation by densitometric scanning of gels agreed very well with estimates obtained from radioactivity measurements. Hemolysates prepared from red cells incubated with ASA showed normal oxygen affinity and heme-heme interaction. Purified acetylated hemoglobin had a slightly increased oxygen affinity and decreased heme-heme interaction. There was no difference in the rate of acetylation of oxy- and deoxyhemoglobin. ASA acetylated column-purified hemoglobin A more readily than hemoglobin in crude hemolysate, but less rapidly than purified human serum albumin. The rate of acetylation of hemoglobulin increased with pH up to approximately pH 8,5. Structural studies were done on hemoglobin incubated with 2.0 mM and 20 mM [acetyl-1-14-C]ASA. Alpha- and beta-chains were acetylated almost equally. Tryptic digests of purified acetylated subunits were fingerprinted on cellulose thin layer plates and autoradiographed. Both alpha- and beta-chains showed a number of radioactive spots that were either ninhydrin negative or weakly ninhydrin positive. These results indicate that hemoglobin is acetylated at a number of sites, probably at the epislon-amino group of lysine residues. To determine whether ASA acetylates hemoglobin in vivo, hemolysates of 14 patients on long-term high-dose ASA therapy were analyzed by gel electrofocusing and compared to specimens of individuals not receiving ASA. The ASA-treated group had a twofold increase in a minor hemoglobin component having an isoelectric point lower than that of hemoglobin A, and indistinguishable from the minoe component which appears when hemoglobin is incubated with ASA in vitro.
机译:在完整的人类红细胞和纯化的血红蛋白溶液中,都已研究了阿司匹林(ASA)对血红蛋白的化学修饰。用20mM [乙酰基-1minus14C] ASA孵育红细胞后,观察到放射性结合到血红蛋白中,与Klotz和Tam的结果一致(1973.Proc.Natl.Acad.Sci.U.S.A.70:1313-1315)。相反,当使用[carbosyl-14-C] ASA时,未见血红蛋白标记。这些结果表明ASA使血红蛋白乙酰化。通过凝胶电聚焦和柱色谱法很容易将乙酰化的血红蛋白与未修饰的血红蛋白分离。通过凝胶的光密度扫描对乙酰化程度的定量与从放射性测量获得的估计非常吻合。由与ASA一起孵育的红细胞制备的溶血液显示出正常的氧亲和力和血红素-血红素相互作用。纯化的乙酰化血红蛋白的氧亲和力略有增加,血红素与血红素的相互作用降低。氧合和脱氧血红蛋白的乙酰化速率没有差异。 ASA乙酰化柱纯化的血红蛋白A比粗品溶血产物中的血红蛋白更容易,但不如纯化的人血清白蛋白快。血球蛋白的乙酰化速率随pH的增加而增加,直至达到大约pH 8,5。在与2.0 mM和20 mM [乙酰基-1-14-C] ASA孵育的血红蛋白上进行了结构研究。 α和β链几乎被乙酰化。在纤维素薄层板上对纯化的乙酰化亚基的胰蛋白酶消化物进行指纹识别,并进行放射自显影。 α链和β链均显示许多茚三酮阴性或弱茚三酮阳性的放射性斑点。这些结果表明血红蛋白在许多位点被乙酰化,可能在赖氨酸残基的Epislon-氨基上。为了确定ASA是否在体内使血红蛋白乙酰化,对14位长期接受大剂量ASA治疗的患者的溶血产物进行了凝胶电聚焦分析,并与未接受ASA的个体的标本进行了比较。 ASA治疗组的次要血红蛋白成分的等电点低于血红蛋白A的血红蛋白成分增加了两倍,并且与血红蛋白与ASA体外孵育时出现的微小成分没有区别。

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