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小鼠免疫球蛋白VH基因座内基因和间隔序列的组织方式。

Organization of genes and spacers within the mouse immunoglobulin VH locus.

作者信息

Kemp D J, Tyler B, Bernard O, Gough N, Gerondakis S, Adams J M, Cory S

出版信息

J Mol Appl Genet. 1981;1(3):245-61.

PMID:6286826
Abstract

The germline organization of mouse immunoglobulin VH genes has been investigated using cloned VH sequences. Hybridization studies with VH probes from plasmacytomas HPC76 (H76), S107, HOPC1 (H1), and lymphoma ABLS-8 (A8) demonstrated that the VH locus contains at least three distinct VH gene families. Comparison with other results suggests a total of about 10 such families, and of the order of 160 germline VH genes. Nucleotide sequencing revealed that the H76 family includes anti-inulin VH sequences, and the S107 family is known to encode antiphosphorylcholine sequences. The three VH gene families studied were mapped in the order H76-S107-A8/H1-CH by determining which VH genes had been deleted from several plasmacytomas by VH rearrangement events. Nine genomic clones from athe H76 family, and one each from the S107 and A8/H1 families, were characterized; collectively they span 103 kilobases (kb). Two clones from the H76 family and one from the S107 family each bore a pair of VH genes separated by approximately 14 kb, suggesting that related VH genes in these families are clustered with a typical spacing of approximately 14 kb. No other VH genes were detected within the spacers, arguing against intermingling of different families. Within the VH76 family cluster, however, two closely homologous VH genes were shown not to be adjacent. While spacer sequences were strongly conserved in the A8/H1 family, the H76 family had minimal conservation and that was restricted to regions immediately surrounding the genes. Hence conservation of spacer sequences cannot be essential for VH gene function, nor for maintenance of a VN family. Spacers in both the H76 and S108 family contained small repeat elements, some of which behaved like mobile DNA sequences.

摘要

利用克隆的VH序列对小鼠免疫球蛋白VH基因的种系组织进行了研究。用来自浆细胞瘤HPC76(H76)、S107、HOPC1(H1)和淋巴瘤ABLS - 8(A8)的VH探针进行杂交研究表明,VH基因座至少包含三个不同的VH基因家族。与其他结果比较表明,总共有约10个这样的家族,以及约160个种系VH基因。核苷酸测序显示,H76家族包括抗菊粉VH序列,并且已知S107家族编码抗磷酸胆碱序列。通过确定哪些VH基因因VH重排事件而从几个浆细胞瘤中缺失,将所研究的三个VH基因家族按H76 - S107 - A8/H1 - CH的顺序进行了定位。对来自H76家族的9个基因组克隆以及来自S107和A8/H1家族各1个克隆进行了表征;它们总共跨越103千碱基(kb)。来自H76家族的两个克隆和来自S107家族的一个克隆各自带有一对被约14 kb隔开的VH基因,这表明这些家族中的相关VH基因以约14 kb的典型间距成簇。在间隔区内未检测到其他VH基因,这反对了不同家族的相互混杂。然而,在VH76家族簇内,两个紧密同源的VH基因并不相邻。虽然间隔序列在A8/H1家族中高度保守,但H76家族的保守性最小,且仅限于基因紧邻区域。因此,间隔序列的保守对于VH基因功能或VN家族的维持并非必不可少。H76和S108家族的间隔区都含有小的重复元件,其中一些表现得像可移动DNA序列。

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Organization of genes and spacers within the mouse immunoglobulin VH locus.小鼠免疫球蛋白VH基因座内基因和间隔序列的组织方式。
J Mol Appl Genet. 1981;1(3):245-61.
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Eur J Immunol. 1984 Oct;14(10):922-30. doi: 10.1002/eji.1830141012.

引用本文的文献

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A search for messenger RNA molecules bearing immunoglobulin VH nucleotide sequences in T cells.在T细胞中寻找携带免疫球蛋白VH核苷酸序列的信使RNA分子。
J Exp Med. 1982 Dec 1;156(6):1848-53. doi: 10.1084/jem.156.6.1848.
2
Immunoglobulin genes of different subgroups are interdigitated within the VK locus.不同亚组的免疫球蛋白基因在VK基因座内相互交错。
Nucleic Acids Res. 1984 Dec 21;12(24):9229-36. doi: 10.1093/nar/12.24.9229.
3
Recombination between kappa chain genetic markers in the mouse.小鼠κ链遗传标记之间的重组
Immunogenetics. 1984;20(5):493-501. doi: 10.1007/BF00364352.
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Frequency of expressed immunoglobulin light chain genes in lipopolysaccharide-stimulated BALB/c spleen cells.脂多糖刺激的BALB/c脾细胞中表达的免疫球蛋白轻链基因频率
J Exp Med. 1984 Oct 1;160(4):971-86. doi: 10.1084/jem.160.4.971.
5
Somatic mutation creates diversity in the major group of mouse immunoglobulin kappa light chains.体细胞突变在小鼠免疫球蛋白κ轻链的主要群体中产生多样性。
J Exp Med. 1984 Feb 1;159(2):417-35. doi: 10.1084/jem.159.2.417.
6
Structural relationships among mouse and human immunoglobulin VH genes in the subgroup III.小鼠与人免疫球蛋白VH基因在III亚组中的结构关系。
Nucleic Acids Res. 1983 Nov 25;11(22):7887-97. doi: 10.1093/nar/11.22.7887.
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Evolutionary aspects of immunoglobulin heavy chain variable region (VH) gene subgroups.免疫球蛋白重链可变区(VH)基因亚组的进化方面。
Proc Natl Acad Sci U S A. 1983 Feb;80(3):855-9. doi: 10.1073/pnas.80.3.855.
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Activation of immunoglobulin mu gene expression involves stepwise demethylation.免疫球蛋白μ基因表达的激活涉及逐步去甲基化。
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