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来自热液喷口管虫厚壳贻贝多血红蛋白系统的常见多肽链b的一级结构:对硫化物结合位点的见解。

Primary structure of the common polypeptide chain b from the multi-hemoglobin system of the hydrothermal vent tube worm Riftia pachyptila: an insight on the sulfide binding-site.

作者信息

Zal F, Suzuki T, Kawasaki Y, Childress J J, Lallier F H, Toulmond A

机构信息

Equipe Ecophysiologie, UPMC-CNRS-INSU, Station Biologique, Roscoff, France.

出版信息

Proteins. 1997 Dec;29(4):562-74.

PMID:9408952
Abstract

The deep-sea tube worm Riftia pachyptila Jones possesses a multi-hemoglobin system with three different extracellular Hbs: two dissolved in the vascular blood, V1 (ca. 3,500 kDa) and V2 (ca. 400 kDa), and one in the coelomic fluid, C1 (ca. 400 kDa). V1 Hb consists of four heme-containing, globin chains (b-e) and four linker chains (L1-L4). V2 and C1 Hbs are exclusively built from globin chains, six for V2 (a-f) and five for C1 (a-e). The complete amino acid sequence of the isolated monomeric globin chain b, common to all Riftia Hbs, has been determined by automated Edman degradation sequencing of the peptides derived by digestion with trypsin, chymotrypsin, thermolysin, and CNBr. This polypeptide chain is composed of 144 amino acid residues, providing a M(r) of 16, 135.0 Da. Moreover, the primary sequence of chain b revealed 3 Cys residues at position 4, 75, and 134. Cys-4 and Cys-134 are located at positions where an intra-chain disulfide bridge is formed in all annelid, vestimentiferan, or pogonophoran chains, but Cys-75 is located at a unique position only found in three globin chains belonging to Lamellibrachia and Oligobrachia, a vestimentiferan and a pogonophoran. In both groups, Hbs can bind sulfide reversibly to fuel the chemosynthetic process of the symbiotic bacteria they harbor. Sulfide-binding experiments performed on purified Hb fractions (i.e., V1, V2, and C1 Hbs) suggest that free Cys residues on globin chains, and the numerous Cys found in linker chains, as determined previously by ESI-MS, may be the sulfide binding-sites. Blocking the free Cys by N-ethylmaleimide, we confirmed that free cysteines were involved in sulfide-binding but did not account for the whole sulfide-binding capacity of V1 Hb. Furthermore, a phylogenetic tree was constructed from 18 globin-like chains of annelid, vestimentiferan, and pogonophoran extracellular Hbs to clarify the systematic position of tubeworms. Riftia chain b clearly belongs to the "strain A" family with 30 to 80% identity with the other sequences analyzed. Its position in the tree confirmed a close relationship between vestimentiferan, pogonophoran, and annelid Hbs.

摘要

深海管虫裂铠虫(Riftia pachyptila Jones)拥有一个多血红蛋白系统,该系统包含三种不同的细胞外血红蛋白:两种溶解在血管血液中,即V1(约3500 kDa)和V2(约400 kDa),另一种存在于体腔液中,即C1(约400 kDa)。V1血红蛋白由四条含血红素的珠蛋白链(b - e)和四条连接链(L1 - L4)组成。V2和C1血红蛋白仅由珠蛋白链构成,V2有六条(a - f),C1有五条(a - e)。通过对经胰蛋白酶、糜蛋白酶、嗜热菌蛋白酶和溴化氰消化产生的肽段进行自动埃德曼降解测序,已确定了所有裂铠虫血红蛋白共有的分离单体珠蛋白链b的完整氨基酸序列。这条多肽链由144个氨基酸残基组成,分子量为16135.0 Da。此外,链b的一级序列在第4、75和134位显示有3个半胱氨酸残基。半胱氨酸 - 4和半胱氨酸 - 134位于所有环节动物、前庭虫或帚毛虫链中形成链内二硫键的位置,但半胱氨酸 - 75位于一个独特位置,仅在属于鳃腕虫属和寡腕虫属(一种前庭虫和一种帚毛虫)的三条珠蛋白链中发现。在这两个类群中,血红蛋白都能可逆地结合硫化物,为它们所携带的共生细菌的化学合成过程提供能量。对纯化的血红蛋白组分(即V1、V2和C1血红蛋白)进行的硫化物结合实验表明,珠蛋白链上的游离半胱氨酸残基以及先前通过电喷雾电离质谱法确定的连接链中大量的半胱氨酸,可能是硫化物结合位点。用N - 乙基马来酰亚胺封闭游离半胱氨酸后,我们证实游离半胱氨酸参与了硫化物结合,但并不能解释V1血红蛋白的全部硫化物结合能力。此外,构建了一个由环节动物、前庭虫和帚毛虫细胞外血红蛋白的18条类珠蛋白链组成的系统发育树,以阐明管虫的系统位置。裂铠虫链b明显属于“A菌株”家族,与其他分析序列的同源性为30%至80%。它在树中的位置证实了前庭虫、帚毛虫和环节动物血红蛋白之间的密切关系。

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