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Position-dependent inhibition of class-switch recombination by PGK-neor cassettes inserted into the immunoglobulin heavy chain constant region locus

机译:插入免疫球蛋白重链恒定区基因座的PGK-neor盒对位置开关重组的位置依赖性抑制

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摘要

The Ig heavy chain (IgH) constant region (CH) genes are organized from 5′ to 3′ in the order Cμ, Cδ, Cγ3, Cγ1, Cγ2b, Cγ2a, Cɛ, and Cα. Expression of CH genes downstream of Cδ involves class-switch recombination (CSR), a process that is targeted by germ-line transcription (GT) of the corresponding CH gene. Previously, we demonstrated that insertion of a PGK-neor cassette at two sites downstream of Cα inhibits, in cultured B cells, GT of and CSR to a subset of CH genes (including Cγ3, Cγ2a, Cγ2b, and Cɛ) that lie as far as 120 kb upstream. Here we show that insertion of the PGK-neor cassette in place of sequences in the Iγ2b locus inhibits GT of and CSR to the upstream Cγ3 gene, but has no major effect on the downstream Cγ2a and Cɛ genes. Moreover, replacement of the Cɛ exons with a PGK-neor cassette in the opposite transcriptional orientation also inhibits, in culture, GT of and CSR to the upstream Cγ3, Cγ2b, and Cγ2a genes. As with the PGK-neor insertions 3′ of Cα studied previously, the Cγ1 and Cα genes were less affected by these mutations both in culture and in mice, whereas the Cγ2b gene appeared less affected in vivo. Our findings support the existence of a long-range 3′ IgH regulatory region required for GT of and CSR to multiple CH genes and suggest that PGK-neor cassette insertion into the locus short circuits the ability of this region to facilitate GT of dependent CH genes upstream of the insertion.
机译:Ig重链(IgH)恒定区(CH)基因从5′到3′按Cμ,Cδ,Cγ3,Cγ1,Cγ2b,Cγ2a,C1和Cα的顺序组织。 CH基因在Cδ下游的表达涉及类开关重组(CSR),该过程是相应CH基因的种系转录(GT)靶向的过程。以前,我们证明了在培养的B细胞中,在Cα下游的两个位点插入PGK-neor盒会抑制CH基因的一个子集(包括Cγ3,Cγ2a,Cγ2b和Cɛ)的GT和CSR。上游120 kb。在这里,我们表明,PGK-neor盒代替Iγ2b基因座中的序列的插入抑制了GT和CSR对上游Cγ3基因的抑制,但对下游Cγ2a和Cɛ基因没有重大影响。此外,在相反的转录方向上用PGK-neor盒替代C 1外显子在培养中也抑制了上游Cγ3,Cγ2b和Cγ2a基因的GT和CSR。与先前研究的Cα的PGK-neor插入3'一样,在培养物中和小鼠中Cγ1和Cα基因受这些突变的影响较小,而Cγ2b基因在体内受到的影响较小。我们的发现支持存在多个CH基因的GT和CSR所需的长距离3'IgH调节区,并表明PGK-neor盒插入基因座短路了该区域促进依赖的CH基因的GT的能力。插入的上游。

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