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

The Ig heavy chain (IgH) constant region (C H ) genes are organized from 5′ to 3′ in the order Cμ, Cδ, Cγ3, Cγ1, Cγ2b, Cγ2a, Cɛ, and Cα. Expression of C H genes downstream of Cδ involves class-switch recombination (CSR), a process that is targeted by germ-line transcription (GT) of the corresponding...

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Bibliographic Details
Published in:Proceedings of the National Academy of Sciences - PNAS 1999-03, Vol.96 (6), p.3000-3005
Main Authors: Seidl, K J, Manis, J P, Bottaro, A, Zhang, J, Davidson, L, Kisselgof, A, Oettgen, H, Alt, F W
Format: Article
Language:English
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Summary:The Ig heavy chain (IgH) constant region (C H ) genes are organized from 5′ to 3′ in the order Cμ, Cδ, Cγ3, Cγ1, Cγ2b, Cγ2a, Cɛ, and Cα. Expression of C H genes downstream of Cδ involves class-switch recombination (CSR), a process that is targeted by germ-line transcription (GT) of the corresponding C H gene. Previously, we demonstrated that insertion of a PGK- neo r cassette at two sites downstream of Cα inhibits, in cultured B cells , GT of and CSR to a subset of C H genes (including Cγ3, Cγ2a, Cγ2b, and Cɛ) that lie as far as 120 kb upstream. Here we show that insertion of the PGK- neo r 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- neo r 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- neo r 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 C H genes and suggest that PGK- neo r cassette insertion into the locus short circuits the ability of this region to facilitate GT of dependent C H genes upstream of the insertion.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.96.6.3000