首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Presence of immunoglobulin (Ig) M and IgG double isotype-bearing cells and defect of switch recombination in hyper IgM immunodeficiency.
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Presence of immunoglobulin (Ig) M and IgG double isotype-bearing cells and defect of switch recombination in hyper IgM immunodeficiency.

机译:免疫球蛋白(Ig)M和IgG双同种型细胞的存在以及超IgM免疫缺陷的开关重组缺陷。

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摘要

We established a transformed B cell line expressing both IgM and IgG on the cell surface from a patient with hyper IgM immunodeficiency using Epstein-Barr viruses. DNA and RNA of the cells were analyzed. DNA rearrangements of Ig JH gene loci were observed on both chromosomes. Cloning and DNA sequence analyses showed that one has a VHDHJH structure while the other has a DHJH structure. Southern hybridization with 5'-S mu and S gamma region-containing probes indicated germline configuration in the switch regions of mu and gamma genes on both chromosomes. To test expression of mu and gamma chains in the transformed cells at the mRNA-level, we used the polymerase chain reaction with three kinds of synthetic oligonucleotides as primers, one of which was part of the VH gene, while the other two were complementary to parts of C mu and C gamma genes. Sequence analysis of the amplified products showed that the same VHDHJH sequence is directly connected with either the C mu or the C gamma sequence in the mRNAs. This is direct evidence showing that in double isotype-bearing cells one VHDHJH exon in the transcript is alternatively spliced to C mu or C gamma without DNA rearrangement. The defect in this disease could be at the S-S recombination stage.
机译:我们建立了一个转化的B细胞系,使用爱泼斯坦-巴尔病毒从患有高IgM免疫缺陷的患者的细胞表面表达IgM和IgG。分析细胞的DNA和RNA。在两个染色体上均观察到了Ig JH基因基因座的DNA重排。克隆和DNA序列分析表明,一个具有VHDHJH结构,而另一个具有DHJH结构。用含有5'-S mu和Sγ区域的探针进行的Southern杂交表明在两个染色体上的mu和γ基因的转换区域中的种系构型。为了在mRNA水平上检测转化细胞中mu和γ链的表达,我们使用了聚合酶链式反应,以三种合成的寡核苷酸作为引物,其中一种是VH基因的一部分,而另外两种与VH基因互补C mu和Cγ基因的一部分。扩增产物的序列分析表明,相同的VHDHJH序列与mRNA中的C mu或C gamma序列直接相连。这是直接的证据表明,在带有双同型体的细胞中,转录物中的一个VHDHJH外显子可以选择性地剪接至C mu或Cγ,而无DNA重排。该疾病的缺陷可能在S-S重组阶段。

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