Perlot Thomas, Alt Frederick W, Bassing Craig H, Suh Heikyung, Pinaud Eric
The CBR Institute for Biomedical Research, Inc., and Department of Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2005 Oct 4;102(40):14362-7. doi: 10.1073/pnas.0507090102. Epub 2005 Sep 26.
Studies of chimeric mice demonstrated that the core Ig heavy chain (IgH) intronic enhancer (iEmu) functions in V(D)J and class switch recombination at the IgH locus. To more fully evaluate the role of this element in these and other processes, we generated mice homozygous for germ-line mutations in which the core sequences of iEmu (cEmu) were either deleted (cEmu(Delta/Delta) mice) or replaced with a pgk-Neo(R) cassette (cEmu(N/N) mice). The cEmu(Delta/Delta) mice had reduced B cell numbers, in association with impaired D to J(H) and V(H) to DJ(H) rearrangement, whereas cEmu(N/N) mice had a complete block in IgH V(D)J(H) recombination, confirming that additional cis elements cooperate with iEmu to enforce D to J(H) recombination. In addition, developing cEmu(Delta/Delta) and cEmu(N/N) B lineage cells had correspondingly decreased levels of germ-line transcripts from the J(H) region of the IgH locus (mu0 and Imu transcripts); although both had normal levels of germ-line V(H) transcripts, suggesting that cEmu may influence IgH locus V(D)J recombination by influencing accessibility of J(H) proximal regions of the locus. Consistent with chimera studies, peripheral cEmu(Delta/Delta) B cells had normal surface Ig and relatively normal class switch recombination. However, cEmu(Delta/Delta) B cells also had relatively normal somatic hypermutation of their IgH variable region genes, showing unexpectedly that the cEmu is not required for this process. The availability of mice with the iEmu mutation in their germ line will facilitate future studies to elucidate the roles of iEmu in V(H)(D)J(H) recombination in the context of IgH chromatin structure and germ-line transcription.
嵌合小鼠研究表明,核心免疫球蛋白重链(IgH)内含子增强子(iEmu)在IgH基因座的V(D)J和类别转换重组中发挥作用。为了更全面地评估该元件在这些及其他过程中的作用,我们构建了种系突变纯合小鼠,其中iEmu的核心序列(cEmu)要么被删除(cEmu(Δ/Δ)小鼠),要么被pgk-Neo(R)盒取代(cEmu(N/N)小鼠)。cEmu(Δ/Δ)小鼠的B细胞数量减少,与D到J(H)以及V(H)到DJ(H)重排受损相关,而cEmu(N/N)小鼠在IgH V(D)J(H)重组中完全受阻,这证实了其他顺式元件与iEmu协同作用以促进D到J(H)重组。此外,发育中的cEmu(Δ/Δ)和cEmu(N/N)B系细胞中,来自IgH基因座J(H)区域的种系转录本(μ0和Imu转录本)水平相应降低;尽管两者的种系V(H)转录本水平正常,这表明cEmu可能通过影响基因座J(H)近端区域的可及性来影响IgH基因座V(D)J重组。与嵌合体研究一致,外周cEmu(Δ/Δ)B细胞具有正常的表面免疫球蛋白和相对正常的类别转换重组。然而,cEmu(Δ/Δ)B细胞的IgH可变区基因也具有相对正常的体细胞高频突变,意外地表明该过程不需要cEmu。种系中带有iEmu突变的小鼠的可用性将有助于未来研究阐明iEmu在IgH染色质结构和种系转录背景下V(H)(D)J(H)重组中的作用。