Gough N M, Bernard O
Proc Natl Acad Sci U S A. 1981 Jan;78(1):509-13. doi: 10.1073/pnas.78.1.509.
To assess the contribution to immunoglobulin heavy chain diversity made by recombination between variable region (VH) genes and joining region (JH) genes, we have determined the sequence of about 2000 nucleotides spanning the rearranged JH gene cluster associated with the VH gene expressed in plasmacytoma HPC76. The active VH76 gene has recombined with the second germ-line JH gene. The region we have studied contains two other JH genes, designated JH3 and JH4. No other JH gene was found within the region 1000 nucleotides downstream from JH4. Between JH3 and JH4 there is a pseudo-JH sequence with substantial homology to the authentic JH genes. The four JH genes whose sequences now are known can account for all known JH amino acid sequences. The JH genes are more divergent than the Jk genes and vary in length, encoding either 15 or 17 amino acid residues. Because JH regions comprise part of the third hypervariable region (HV3), combinatorial VH--JH joining substantially augments VH diversity. Moreover, a VH gene can recombine with each JH gene at several positions, and either one or two germ-line JH codons can be excised. This JH truncation markedly reduces the length of HV3 and hence must alter antigen-binding specificity. We have also determined the sequence of the JH4 region in two different gamma 2a mRNAs and have found that each has suffered a point mutation (aspartate to asparagine) which would alter the charge of the antigen-binding site.
为了评估可变区(VH)基因与连接区(JH)基因之间的重组对免疫球蛋白重链多样性的贡献,我们测定了约2000个核苷酸的序列,该序列跨越与浆细胞瘤HPC76中表达的VH基因相关的重排JH基因簇。活性VH76基因已与第二个种系JH基因重组。我们研究的区域包含另外两个JH基因,分别命名为JH3和JH4。在JH4下游1000个核苷酸的区域内未发现其他JH基因。在JH3和JH4之间有一个假JH序列,与真实的JH基因有高度同源性。现在已知序列的四个JH基因可以解释所有已知的JH氨基酸序列。JH基因比Jk基因差异更大,长度也不同,编码15或17个氨基酸残基。由于JH区域构成第三个高变区(HV3)的一部分,VH-JH组合连接显著增加了VH多样性。此外,一个VH基因可以在几个位置与每个JH基因重组,并且可以切除一个或两个种系JH密码子。这种JH截短显著缩短了HV3的长度,因此必然会改变抗原结合特异性。我们还测定了两种不同的γ2a mRNA中JH4区域的序列,发现每个都发生了一个点突变(天冬氨酸突变为天冬酰胺),这将改变抗原结合位点的电荷。