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构成赤子爱胜蚓细胞外血红蛋白三聚体亚基的a、b和c链的氨基酸序列。

The amino acid sequences of chains a, b, and c that form the trimer subunit of the extracellular hemoglobin from Lumbricus terrestris.

作者信息

Fushitani K, Matsuura M S, Riggs A F

机构信息

Department of Zoology, University of Texas, Austin 78712.

出版信息

J Biol Chem. 1988 May 15;263(14):6502-17.

PMID:3360792
Abstract

The extracellular hemoglobin of Lumbricus terrestris comprises four major heme-containing chains, a, b, c, and d in equal proportions. We have determined the amino acid sequences of chains a, b, and c which form a disulfide-linked trimer. Chains a, b, and c have 151, 145, and 153 residues and calculated molecular weights of 17,525, 16,254, and 17,289, respectively. The sequence of chain b, reported previously (Garlick, R. L., and Riggs, A. F. (1982) J. Biol. Chem. 287, 9005-9015) has been completely redetermined and found to contain 12 fewer residues than originally reported. Chains a and c both contain unusual, highly polar NH2-terminal extensions of 7 residues before the A helix. These segments must be close together because they are joined by a disulfide bond. We suggest that this structure, with seven negatively charged groups, may be part of a functionally important Ca2+-binding site in the trimer. Comparison of the sequences of chains a, b, and c with those of chain d (Shishikura, F., Snow, J. W., Gotoh, T., Vinogradov, S. N., and Walz, D. A. (1987) J. Biol. Chem. 262, 3123-3131) and the four chains of the hemoglobin of Tylorrhynchus heterochaetus (Suzuki, T., and Gotoh, T. (1986) J. Biol. Chem. 261, 9257-9267) shows that the number and positions of the cysteinyl residues are all conserved. This suggests that the extracellular hemoglobins from both the Oligochaeta and Polychaeta have the same number and configuration of disulfide bonds within the molecule. Phylogenetic analysis suggests that gene duplication first generated an intracellular hemoglobin branch and an extracellular hemoglobin branch. DNA coding for a signal peptide would have been acquired by the extracellular globin gene after this event. At least two further gene duplications are required to account for the present four polypeptide chains.

摘要

蚯蚓的细胞外血红蛋白由比例相等的四条主要含血红素链,即a、b、c和d组成。我们已经确定了形成二硫键连接三聚体的a、b和c链的氨基酸序列。a、b和c链分别有151、145和153个残基,计算所得分子量分别为17,525、16,254和17,289。先前报道的b链序列(Garlick, R. L., and Riggs, A. F. (1982) J. Biol. Chem. 287, 9005 - 9015)已被完全重新测定,发现其残基比最初报道的少12个。a链和c链在A螺旋之前都含有7个残基的不寻常的高度极性的NH2 - 末端延伸段。这些片段必定靠得很近,因为它们通过一个二硫键相连。我们认为,这种带有7个负电荷基团的结构可能是三聚体中一个功能重要的Ca2 + 结合位点的一部分。将a、b和c链的序列与d链的序列(Shishikura, F., Snow, J. W., Gotoh, T., Vinogradov, S. N., and Walz, D. A. (1987) J. Biol. Chem. 262, 3123 - 3131)以及杂毛蚓血红蛋白的四条链的序列(Suzuki, T., and Gotoh, T. (1986) J. Biol. Chem. 261, 9257 - 9267)进行比较,结果表明半胱氨酰残基的数量和位置都是保守的。这表明寡毛纲和多毛纲的细胞外血红蛋白在分子内具有相同数量和构型的二硫键。系统发育分析表明,基因复制首先产生了一个细胞内血红蛋白分支和一个细胞外血红蛋白分支。在此事件之后,编码信号肽的DNA会被细胞外球蛋白基因获取。至少还需要两次基因复制才能解释目前的四条多肽链。

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