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碳水化合物黏合,一种环节动物巨型血红蛋白超分子结构中的构建机制。

Carbohydrate gluing, an architectural mechanism in the supramolecular structure of an annelid giant hemoglobin.

作者信息

Ebina S, Matsubara K, Nagayama K, Yamaki M, Gotoh T

机构信息

Nagayama Protein Array Project, Research Development Corporation of Japan, Tsukuba.

出版信息

Proc Natl Acad Sci U S A. 1995 Aug 1;92(16):7367-71. doi: 10.1073/pnas.92.16.7367.

Abstract

We report a carbohydrate-dependent supramolecular architecture in the extracellular giant hemoglobin (Hb) from the marine worm Perinereis aibuhitensis; we call this architectural mechanism carbohydrate gluing. This study is an extension of our accidental discovery of deterioration in the form of the Hb caused by a high concentration of glucose. The giant Hbs of annelids are natural supramolecules consisting of about 200 polypeptide chains that associate to form a double-layered hexagonal structure. This Hb has 0.5% (wt) carbohydrates, including mannose, xylose, fucose, galactose, glucose, N-acetylglucosamine (GlcNAc), and N-acetylgalactosamine (GalNAc). Using carbohydrate-staining assays, in conjunction with two-dimensional polyacrylamide gel electrophoresis, we found that two types of linker chains (L1 and L2; the nomenclature of the Hb subunits followed that for another marine worm, Tylorrhynchus heterochaetus) contained carbohydrates with both GlcNAc and GalNAc. Furthermore, two types of globins (a and A) have only GlcNAc-containing carbohydrates, whereas the other types of globins (b and B) had no carbohydrates. Monosaccharides including mannose, fucose, glucose, galactose, GlcNAc, and GalNAc reversibly dissociated the intact form of the Hb, but the removal of carbohydrate with N-glycanase resulted in irreversible dissociation. These results show that carbohydrate acts noncovalently to glue together the components to yield the complete quaternary supramolecular structure of the giant Hb. We suggest that this carbohydrate gluing may be mediated through lectin-like carbohydrate-binding by the associated structural chains ("linkers").

摘要

我们报道了来自海洋蠕虫双齿围沙蚕的细胞外巨型血红蛋白(Hb)中一种依赖碳水化合物的超分子结构;我们将这种结构机制称为碳水化合物黏合。本研究是我们意外发现高浓度葡萄糖导致Hb形态恶化的延伸。环节动物的巨型Hb是由约200条多肽链组成的天然超分子,这些多肽链缔合形成双层六边形结构。这种Hb含有0.5%(重量)的碳水化合物,包括甘露糖、木糖、岩藻糖、半乳糖、葡萄糖、N - 乙酰葡糖胺(GlcNAc)和N - 乙酰半乳糖胺(GalNAc)。通过碳水化合物染色分析,并结合二维聚丙烯酰胺凝胶电泳,我们发现两种类型的连接链(L1和L2;Hb亚基的命名遵循另一种海洋蠕虫杂毛虫的命名)含有同时带有GlcNAc和GalNAc的碳水化合物。此外,两种类型的珠蛋白(a和A)仅含有含GlcNAc的碳水化合物,而其他类型的珠蛋白(b和B)不含碳水化合物。包括甘露糖、岩藻糖、葡萄糖、半乳糖、GlcNAc和GalNAc在内的单糖可使Hb的完整形式可逆解离,但用N - 糖苷酶去除碳水化合物会导致不可逆解离。这些结果表明,碳水化合物通过非共价作用将各组分黏合在一起,从而产生巨型Hb完整的四级超分子结构。我们认为这种碳水化合物黏合可能是通过相关结构链(“连接链”)的类凝集素碳水化合物结合来介导的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc04/41340/c89a79876cbe/pnas01494-0241-a.jpg

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