单体
半胱氨酸
聚合物
化学
非共价相互作用
二硫键
烷基化
分子
丝氨酸
马来酰亚胺
高分子化学
组合化学
立体化学
有机化学
生物化学
氢键
催化作用
酶
作者
Erik J. Wiersma,Marc J. Shulman
出处
期刊:Journal of Immunology
[American Association of Immunologists]
日期:1995-05-15
卷期号:154 (10): 5265-5272
被引量:52
标识
DOI:10.4049/jimmunol.154.10.5265
摘要
Abstract Polymeric IgM is usually envisaged as an array of mu 2L2 monomers in which the mu heavy chains are held together by disulfide bonds involving cysteines at positions 337, 414, and 575. We have studied the importance of inter-mu-chain disulfide bonds for formation of IgM polymers and monomers by analyzing the effects of eliminating one or more of these disulfide bondings. Ablation of all inter-chain bonds by either chemical reduction and alkylation or by mutagenesis resulted in the exclusive production of halfmers (muL) molecules. IgM composed of mu-chains bearing each of the other six possible combinations of cysteine to serine replacements was produced as different mixtures of polymers, monomers, and halfmers. Cysteine 575 was both necessary and sufficient for efficient assembly of IgM polymers and sufficient but not necessary for efficient assembly of monomers. Cysteine 337 was sufficient but not necessary for efficient assembly of monomers, and was neither sufficient nor necessary for formation of polymers. Cysteine 414 was neither necessary nor sufficient for efficient formation of either monomers or polymers. Data also suggest that noncovalent interactions between C mu 2 domains are stronger than the interactions between C mu 4/tail domains.
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