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来自抗半乳聚糖骨髓瘤蛋白的免疫球蛋白重链中独立连接区基因的结构证据及其在互补决定区产生多样性中的潜在作用。

Structural evidence for independent joining region gene in immunoglobulin heavy chains from anti-galactan myeloma proteins and its potential role in generating diversity in complementarity-determining regions.

作者信息

Rao D N, Rudikoff S, Krutzsch H, Potter M

出版信息

Proc Natl Acad Sci U S A. 1979 Jun;76(6):2890-4. doi: 10.1073/pnas.76.6.2890.

Abstract

We have determined the variable region sequences of four heavy chains from beta(1-6)D-galactan-binding myeloma proteins. Two of these proteins are identical to position 100 which is located in the third complementarity-determining region (CDR-3). The remaining two differ at a total of 8 positions over the first 100 amino acids, and all of the differences can be explained by single-base mutations at the DNA level. When an assessment is made of the protein segment following CDR-3, which has been termed "J segment" or "FR4," a completely different pattern of variation is observed. The J segments from the four proteins can be divided into two sets. Members of each set share a series of linked amino acids not found in members of the alternative set. The two proteins identical to position 100 have J segments from the two different sets, suggesting that recombination has occurred between V and J genes. An examination of the CDR-3 sequences from the four heavy chains reveals substitutions at positions 100 and 105. Gly is found at 100 in two of the proteins and His in the remaining two. In the two proteins with Gly-100, the following J sequence is limited to one of the two sets of J segments defined by linked amino acids. Similarly, the two heavy chains with His-100 have J segments from the second set. Thus, at the protein level an apparent association is seen between CDR-3 and J segment. If CDR-3 should be found linked to J segment at the DNA level, a new mechanism would be introduced for increasing antibody diversity by recombining various CDR-3 plus J genes with genes coding for the remainder of the variable region. Alternatively, if CDR-3 were coded for by the V gene, then the recombination of V with J may provide an opportunity to introduce mutations in CDR-3. In this case the linkage of amino acids in CDR-3 and the J segments would suggest that recognition signals are used such that certain V genes only pair with a given J gene.

摘要

我们已经确定了来自β(1-6)D-半乳糖结合型骨髓瘤蛋白的四条重链的可变区序列。其中两条蛋白在位于第三个互补决定区(CDR-3)的第100位氨基酸处是相同的。其余两条在前100个氨基酸上总共存在8个位置差异,所有这些差异都可以通过DNA水平的单碱基突变来解释。当对CDR-3之后的蛋白片段(已被称为“J片段”或“FR4”)进行评估时,观察到了一种完全不同的变异模式。来自这四种蛋白的J片段可以分为两组。每组的成员共享一系列在另一组成员中未发现的相连氨基酸。在第100位氨基酸相同的这两种蛋白具有来自两个不同组的J片段,这表明V基因和J基因之间发生了重组。对这四条重链的CDR-3序列进行检查发现,在第100位和第105位存在替换。在其中两种蛋白的第100位发现的是甘氨酸,其余两种则是组氨酸。在第100位为甘氨酸的这两种蛋白中,随后的J序列仅限于由相连氨基酸定义的两组J片段中的一组。同样,第100位为组氨酸的两条重链具有来自第二组的J片段。因此,在蛋白水平上,CDR-3和J片段之间存在明显的关联。如果在DNA水平上发现CDR-3与J片段相连,那么将引入一种新的机制,通过将各种CDR-3加J基因与编码可变区其余部分的基因重组来增加抗体多样性。或者,如果CDR-3由V基因编码,那么V基因与J基因的重组可能提供一个在CDR-3中引入突变的机会。在这种情况下,CDR-3和J片段中氨基酸的连锁将表明使用了识别信号,使得某些V基因仅与特定的J基因配对。

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