Malopolska Centre of Biotechnology, Jagiellonian University in Kraków, Gronostajowa 7A, 30-387, Kraków, Poland.
Department of Cell Biochemistry, Jagiellonian University in Kraków, Gronostajowa 7, 30-387, Kraków, Poland.
Sci Rep. 2018 Jan 11;8(1):519. doi: 10.1038/s41598-017-19003-4.
IgM is a multivalent antibody which evolved as a first line defense of adaptive immunity. It consists of heavy and light chains assembled into a complex oligomer. In mouse serum there are two forms of IgM, a full-length and a truncated one. The latter contains μ' chain, which lacks a variable region. Although μ' chain was discovered many years ago, its origin has not yet been elucidated. Our results indicate that μ' chain is generated from a full-length heavy chain by non-enzymatic cleavage of the protein backbone. The cleavage occurred specifically after Asn209 and is prevented by mutating this residue into any other amino acid. The process requires the presence of other proteins, preferentially with an acidic isoelectric point, and is facilitated by neutral or alkaline pH. This unique characteristic of the investigated phenomenon distinguishes it from other, already described, Asn-dependent protein reactions. A single IgM molecule is able to bind up to 12 epitopes via its antigen binding fragments (Fabs). The cleavage at Asn209 generates truncated IgM molecules and free Fabs, resulting in a reduced IgM valence and probably affecting IgM functionality in vivo.
IgM 是一种多价抗体,是适应性免疫的第一道防线。它由重链和轻链组装成复杂的寡聚体。在鼠血清中有两种形式的 IgM,一种是全长的,另一种是截断的。后者包含 μ'链,它缺乏可变区。虽然 μ'链多年前就被发现了,但它的起源尚未阐明。我们的结果表明,μ'链是由全长重链通过非酶切蛋白骨架产生的。这种切割特别发生在 Asn209 之后,通过将该残基突变为任何其他氨基酸可以防止这种切割。该过程需要其他蛋白质的存在,优先是具有酸性等电点的蛋白质,并且在中性或碱性 pH 下更容易发生。这种被研究的现象的独特特征将其与其他已经描述的依赖于 Asn 的蛋白质反应区分开来。单个 IgM 分子可以通过其抗原结合片段(Fabs)结合多达 12 个表位。Asn209 处的切割会产生截断的 IgM 分子和游离的 Fab,从而降低 IgM 的价数,并可能影响体内 IgM 的功能。