Heller M, Owens J D, Mushinski J F, Rudikoff S
J Exp Med. 1987 Sep 1;166(3):637-46. doi: 10.1084/jem.166.3.637.
Murine V kappa-J kappa recombination is characterized by a maintenance of size at the site of recombination and the use of nucleic acids found only in germline sequences. This is in contrast to heavy chain VH-D-JH assembly where random nucleotides are added at the recombination sites to produce considerable size variation, even though the heptamer/nonomer recombination sequences are identical in both kappa and heavy chain genes. We have examined the origin of an unusual amino acid, Ile, found at the site of V kappa-J kappa recombination in antigalactan antibodies, by sequence analysis of the corresponding rearranged and germline genes. Results indicate that the Ile codon can be generated by use of a single nucleotide 3' of the V kappa segment in combination with the second and third nucleotides of the first codon of J kappa 5 or J kappa 4. However, several antigalactan antibodies express Ile in combination with J kappa 2. An Ile codon cannot be generated by recombination in any reading frame between germline V kappa and J kappa 2 segments. These results suggest that the origin of the Ile codon in lines using J kappa 2 may represent a novel even in murine light chain assembly, possibly similar to the de novo addition of nucleotides observed in heavy chain gene recombination.
小鼠Vκ-Jκ重组的特点是重组位点处大小保持不变,且使用仅在种系序列中发现的核酸。这与重链VH-D-JH组装形成对比,在重链组装中,随机核苷酸被添加到重组位点以产生相当大的大小变异,尽管七聚体/九聚体重组序列在κ链和重链基因中是相同的。我们通过对相应的重排基因和种系基因进行序列分析,研究了在抗半乳聚糖抗体的Vκ-Jκ重组位点发现的异常氨基酸异亮氨酸(Ile)的起源。结果表明,Ile密码子可通过使用Vκ区段3'端的单个核苷酸与Jκ5或Jκ4第一个密码子的第二个和第三个核苷酸组合产生。然而,几种抗半乳聚糖抗体将Ile与Jκ2组合表达。在种系Vκ和Jκ2区段之间的任何阅读框中,重组都无法产生Ile密码子。这些结果表明,使用Jκ2的品系中Ile密码子的起源可能代表了小鼠轻链组装中的一种新现象,可能类似于在重链基因重组中观察到的核苷酸从头添加。