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蓖麻凝集素B链的突变分析。蓖麻凝集素B链2γ亚结构域的半乳糖结合能力。

Mutational analysis of the Ricinus lectin B-chains. Galactose-binding ability of the 2 gamma subdomain of Ricinus communis agglutinin B-chain.

作者信息

Sphyris N, Lord J M, Wales R, Roberts L M

机构信息

Department of Biological Sciences, University of Warwick, Coventry, United Kingdom.

出版信息

J Biol Chem. 1995 Sep 1;270(35):20292-7. doi: 10.1074/jbc.270.35.20292.

Abstract

Ricin B-chain (RTB) is a galactose-specific lectin that folds into two globular domains, each of which binds a single galactoside. The two binding sites are structurally similar and both contain a conserved tripeptide kink and an aromatic residue that comprises a sugar-binding platform. Whereas the critical RTB residues implicated in lectin activity are conserved in domain 1 of Ricinus communis agglutinin (RCA) B-chain, the sugar platform aromatic residue Tyr-248 present in domain 2 of RTB is replaced by His in RCA B-chain. In this study, key residues in the vicinity of the binding sites of the Ricinus lectin B-chains were altered by site-directed mutagenesis. The recombinant B-chains were produced in Xenopus oocytes in soluble, stable, and core-glycosylated forms. Both sites of RCA B-chain must be simultaneously modified in order to abolish lectin activity, indicating the presence of two independent, functional binding sites/molecule. Activity associated with the domain 2 site of RCA B-chain is abrogated by the conversion of Trp-258 to Ser. Moreover, the domain 2 site appears responsible for a weak binding interaction recombinant RCA B-chain with GalNAc, not observed with native tetrameric RCA. Finally, the introduction of His at position 248 of RTB severely disrupts but does not abolish GalNAc binding.

摘要

蓖麻毒素B链(RTB)是一种半乳糖特异性凝集素,可折叠成两个球状结构域,每个结构域结合一个半乳糖苷。这两个结合位点在结构上相似,均包含一个保守的三肽扭结和一个构成糖结合平台的芳香族残基。尽管蓖麻凝集素(RCA)B链结构域1中与凝集素活性相关的关键RTB残基是保守的,但RTB结构域2中存在的糖平台芳香族残基Tyr-248在RCA B链中被His取代。在本研究中,通过定点诱变改变了蓖麻凝集素B链结合位点附近的关键残基。重组B链在非洲爪蟾卵母细胞中以可溶、稳定和核心糖基化的形式产生。RCA B链的两个位点必须同时修饰才能消除凝集素活性,这表明存在两个独立的、功能性的结合位点/分子。RCA B链结构域2位点的活性因Trp-258转变为Ser而被消除。此外,结构域2位点似乎负责重组RCA B链与GalNAc的弱结合相互作用,而天然四聚体RCA则未观察到这种相互作用。最后,在RTB的248位引入His会严重破坏但不会消除GalNAc结合。

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