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血红蛋白贝塞斯达(α2β2 145His)的结构与功能研究,这是一种与代偿性红细胞增多症相关的变体。

Structural and functional studies on hemoglobin Bethesda (alpha2beta2 145His), a varient associated with compensatory erythrocytosis.

作者信息

Bunn H F, Bradley T B, Davis W E, Drysdale J W, Burke J F, Beck W S, Laver M B

出版信息

J Clin Invest. 1972 Sep;51(9):2299-309. doi: 10.1172/JCI107040.

Abstract

Studies have been performed on a 12-yr-old Chinese girl with compensatory erythrocytosis due to the presence of hemoglobin Bethesda comprising about 45% of the red cell hemoglobin. Her parents and three siblings were normal. The oxygen affinity of her blood was markedly increased: under physiological conditions (pH 7.40, 37 degrees C). P(50) was 12.8 mm Hg (normal = 26.5 mm Hg). The red cell 2,3-diphosphoglycerate (2.3-DPG) level was normal. The abnormal hemoglobin could not be separated from hemoglobin A by zone electrophoresis at pH 8.6 or isoelectric focusing on polyacrylamide gel. However, after the hemoglobin was split into free alpha and beta chains by treatment with p-hydroxymercuribenzoate (PMB) or 6 M urea, an abnormal beta chain was readily demonstrated having a higher isoelectric point (more positive net charge) than normal beta(A). Structural analysis of the variant beta chain demonstrated the substitution of histidine for tyrosine at position 145: hemoglobin Bethesda (alpha(2)beta(2) (145His)). From earlier chemical and crystallographic studies, it has been postulated that this residue is a critical determinant of hemoglobin function. Hemoglobin Bethesda was separated from hemoglobin A by column chromatography. Oxygen equilibria of purified hemoglobin Bethesda revealed an extremely high oxygen affinity (exceeding that of isolated alpha and beta chains), and markedly reduced cooperativity. The Bohr effect of hemoglobin Bethesda was 1/3 that of hemoglobin A. However, hemoglobin Bethesda showed a significant interaction with 2.3-DPG and inositol hexaphosphate.

摘要

对一名12岁的中国女孩进行了研究,她因存在约占红细胞血红蛋白45%的血红蛋白贝塞斯达而出现代偿性红细胞增多症。她的父母和三个兄弟姐妹均正常。她血液的氧亲和力明显增加:在生理条件下(pH 7.40,37℃),P(50)为12.8 mmHg(正常为26.5 mmHg)。红细胞2,3 - 二磷酸甘油酸(2,3 - DPG)水平正常。在pH 8.6的区带电泳或聚丙烯酰胺凝胶等电聚焦中,异常血红蛋白无法与血红蛋白A分离。然而,在用对羟基汞苯甲酸(PMB)或6 M尿素处理使血红蛋白裂解为游离的α和β链后,很容易证明存在一条异常的β链,其等电点比正常β(A)更高(净电荷更正)。对变异β链的结构分析表明,在第145位酪氨酸被组氨酸取代:血红蛋白贝塞斯达(α₂β₂(145His))。从早期的化学和晶体学研究推测,该残基是血红蛋白功能的关键决定因素。通过柱色谱法将血红蛋白贝塞斯达与血红蛋白A分离。纯化的血红蛋白贝塞斯达的氧平衡显示出极高的氧亲和力(超过分离的α和β链),且协同性明显降低。血红蛋白贝塞斯达的玻尔效应是血红蛋白A的1/3。然而,血红蛋白贝塞斯达与2,3 - DPG和肌醇六磷酸有显著相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ffd/292395/6ec0f9eeeb6b/jcinvest00205-0095-a.jpg

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