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来自天然缺失轻链的骆驼重链免疫球蛋白VH结构域的序列和结构

Sequence and structure of VH domain from naturally occurring camel heavy chain immunoglobulins lacking light chains.

作者信息

Muyldermans S, Atarhouch T, Saldanha J, Barbosa J A, Hamers R

机构信息

Vrije Universiteit Brussel, Instituut voor Moleculaire Biologie, Sint Genesius Rode, Belgium.

出版信息

Protein Eng. 1994 Sep;7(9):1129-35. doi: 10.1093/protein/7.9.1129.

Abstract

We cloned 17 different PCR fragments encoding VH genes of camel (Camelus dromedarius). These clones were derived from the camel heavy chain immunoglobulins lacking the light chain counterpart of normal immunoglobulins. Insight into the camel VH sequences and structure may help the development of single domain antibodies. The most remarkable difference in the camel VH, consistent with the absence of the VL interaction, is the substitution of the conserved Leu45 by an Arg or Cys. Another noteworthy substitution is the Leu11 to Ser. This amino acid normally interacts with the CH1 domain, a domain missing in the camel heavy chain immunoglobulins. The nature of these substitutions agrees with the increased solubility behavior of an isolated camel VH domain. The VH domains of the camels are also characterized by a long CDR3, possibly compensating for the absence of the VL contacts with the antigen. The CDR3 lacks the salt bridge between Arg94 and Asp101. However, the frequent occurrence of additional Cys residues in both the CDR1 and CDR3 might lead to the formation of a second internal disulfide bridge, thereby stabilizing the CDR structure as in the DAW antibody. Within CDRs of the camel VH domains we observe a broad size distribution and a different amino acid pattern compared with the mouse or human VH. Therefore the camel hypervariable regions might adopt structures which differ substantially from the known canonical structures, thereby increasing the repertoire of the camel antigen binding sites within a VH.

摘要

我们克隆了17个不同的编码骆驼(单峰驼)重链可变区(VH)基因的PCR片段。这些克隆来源于缺乏正常免疫球蛋白轻链对应物的骆驼重链免疫球蛋白。深入了解骆驼VH序列和结构可能有助于单域抗体的开发。骆驼VH最显著的差异,与缺乏VL相互作用一致,是保守的Leu45被Arg或Cys取代。另一个值得注意的取代是Leu11被Ser取代。该氨基酸通常与CH1结构域相互作用,而该结构域在骆驼重链免疫球蛋白中缺失。这些取代的性质与分离的骆驼VH结构域增加的溶解性一致。骆驼的VH结构域还具有长互补决定区3(CDR3)的特征,这可能补偿了缺乏VL与抗原的接触。CDR3缺乏Arg94和Asp101之间的盐桥。然而,CDR1和CDR3中频繁出现额外的半胱氨酸残基可能导致形成第二个内部二硫桥,从而像DAW抗体一样稳定CDR结构。在骆驼VH结构域的互补决定区内,我们观察到与小鼠或人类VH相比有广泛的大小分布和不同的氨基酸模式。因此,骆驼高变区可能采用与已知经典结构有很大差异的结构,从而增加VH内骆驼抗原结合位点的多样性。

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