Nguyen V K, Hamers R, Wyns L, Muyldermans S
Department Ultrastructure, Vlaams Interuniversitair Instituut voor Biotechnologie, Vrije Universiteit Brussel, Paardenstraat 65, B-1640 Sint Genesius Rode, Belgium.
EMBO J. 2000 Mar 1;19(5):921-30. doi: 10.1093/emboj/19.5.921.
The antigen-binding site of the camel heavy-chain antibodies devoid of light chain consists of a single variable domain (V(H)H) that obviously lacks the V(H)-V(L) combinatorial diversity. To evaluate the extent of the V(H)H antigen-binding repertoire, a germline database was constructed from PCR-amplified V(H)H/V(H) segments of a single specimen of Camelus dromedarius. A total of 33 V(H)H and 39 V()H unique sequences were identified, encoded by 42 and 50 different genes, respectively. Sequence comparison indicates that the V(H)Hs evolved within the V(H) subgroup III. Nevertheless, the V(H)H germline segments are highly diverse, leading to a broad structural repertoire of the antigen-binding loops. Seven V(H)H subfamilies were recognized, of which five were confirmed to be expressed in vivo. Comparison of germline and cDNA sequences demonstrates that the rearranged V(H)Hs are extensively diversified by somatic mutation processes, leading to an additional hypervariable region and a high incidence of nucleotide insertions or deletions. These diversification processes are driven by hypermutation and recombination hotspots embedded in the V(H)H germline genes at the regions affecting the structure of the antigen-binding loops.
骆驼的无轻链重链抗体的抗原结合位点由单个可变结构域(V(H)H)组成,该结构域明显缺乏V(H)-V(L)组合多样性。为了评估V(H)H抗原结合库的范围,从单峰驼单个样本的PCR扩增V(H)H/V(H)片段构建了种系数据库。共鉴定出33个V(H)H和39个独特的V(H)序列,分别由42个和50个不同基因编码。序列比较表明,V(H)H在V(H)亚组III内进化。然而,V(H)H种系片段高度多样,导致抗原结合环具有广泛的结构库。识别出七个V(H)H亚家族,其中五个被证实可在体内表达。种系和cDNA序列的比较表明,重排的V(H)H通过体细胞突变过程广泛多样化,导致额外的高变区以及核苷酸插入或缺失的高发生率。这些多样化过程由嵌入V(H)H种系基因中影响抗原结合环结构区域的高突变和重组热点驱动。