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蚯蚓(陆正蚓)的细胞外血红蛋白。分离链、三聚体及重新缔合产物的氧合特性。

The extracellular hemoglobin of the earthworm, Lumbricus terrestris. Oxygenation properties of isolated chains, trimer, and a reassociated product.

作者信息

Fushitani K, Riggs A F

机构信息

Department of Zoology, University of Texas, Austin 78712.

出版信息

J Biol Chem. 1991 Jun 5;266(16):10275-81.

PMID:2037579
Abstract

The extracellular hemoglobin of the earthworm Lumbricus terrestris has a two-tiered hexagonal structure that can be dissociated into 1/12 subunits. The Hb contains four major kinds of oxygen-binding chains, a, b, c, and d, of which a-c form a disulfide-linked trimer. Additional non-heme chains are necessary for the assembly of the intact 3800-kDa molecule of approximately 200 subunits. Oxygen equilibria have been measured for chains c and d, the abc trimer, the partially reassembled product of addition of chain d to the trimer, and the intact molecule. The results show that oxygenation of the trimer but not the isolated c or d subunits is modulated by both pH and Ca2+ ions. Cooperativity of oxygen binding by the trimer is low (Hill coefficient approximately 1.3). However, addition of chain d results in a substantial decrease in oxygen affinity and a large increase in cooperativity so that the oxygen equilibrium becomes indistinguishable from that of the intact native molecule at pH 6.8. Light-scattering data show that the smallest observed trimeric abc unit is the dimer (abc)2 at pH 6.8. Analysis of the major sedimentation velocity boundary of the product of the abc unit and chain d in the CO form in the absence of calcium surprisingly can be accounted for entirely in terms of a nondissociating dimer, (abc)2, and chain d. The data for the CO form in the presence of calcium are best fitted in terms of (abc)2.d. Although both subunits c and d also form dimers, oxygen binding by subunit c, but not d, is highly cooperative. These observations, taken together, suggest that the two dimers (abc)2 and d2 are likely to be the major participants in forming the primary functional unit, (abcd)2, which at pH 7.4 is partially dissociated when in the CO form. Subunit d is clearly necessary for the formation of a cooperative unit. The hypothesis that (abcd)2 is a primary functional unit is consistent with a stoichiometry of 2 (abcd)2 units per 1/12 subunit or 24 such units in each molecule of Hb which would contain, in all, 192 heme-containing chains.

摘要

蚯蚓(Lumbricus terrestris)的细胞外血红蛋白具有两层六边形结构,可解离成1/12亚基。该血红蛋白包含四种主要的氧结合链,即a、b、c和d,其中a - c形成一个二硫键连接的三聚体。完整的由约200个亚基组成的3800 kDa分子的组装需要额外的非血红素链。已对链c和d、abc三聚体、将链d添加到三聚体后部分重新组装的产物以及完整分子进行了氧平衡测量。结果表明,三聚体的氧合作用(而非分离的c或d亚基)受pH值和Ca2 +离子的调节。三聚体的氧结合协同性较低(希尔系数约为1.3)。然而,添加链d会导致氧亲和力大幅降低,协同性大幅增加,因此在pH 6.8时,氧平衡与完整天然分子的氧平衡难以区分。光散射数据表明,在pH 6.8时观察到的最小三聚体abc单元是二聚体(abc)2。令人惊讶的是,在没有钙的情况下,对abc单元与链d的产物在CO形式下的主要沉降速度边界进行分析,完全可以用非解离二聚体(abc)2和链d来解释。在有钙的情况下,CO形式的数据最好用(abc)2.d来拟合。虽然亚基c和d也都形成二聚体,但亚基c(而非d)的氧结合具有高度协同性。综合这些观察结果表明,两个二聚体(abc)2和d2可能是形成主要功能单元(abcd)2的主要参与者,该功能单元在pH 7.4时处于CO形式时会部分解离。亚基d显然是形成协同单元所必需的。(abcd)2是主要功能单元的假设与每1/12亚基有2个(abcd)2单元的化学计量关系一致,或者在每个血红蛋白分子中有24个这样的单元,总共将包含192条含血红素的链。

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