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Cell Growth and Development

Evidence that Immunoglobulin VH-DJ Recombination Does Not Require Germ Line Transcription of the Recombining Variable Gene Segment

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Pages 6253-6264 | Received 16 Jun 1998, Accepted 28 Jul 1998, Published online: 28 Mar 2023
 

ABSTRACT

The importance of V(D)J recombination for generating diversity in the immune system is well established, but the mechanisms which regulate V(D)J recombination are still poorly understood. Although transcription of unrearranged (germ line) immunoglobulin and T-cell receptor gene segments often precedes V(D)J recombination and has been implicated in its control, the actual role of germ line transcripts in V(D)J recombination is not known. We used a sensitive reverse transcription-PCR assay to study immunoglobulin VH germ line transcripts in proB lines from RAG-deficient mice. All 10 VH families analyzed were germ line transcribed, and germ line transcription was found in all of the cell lines examined, indicating that active chromatin was present in the VHregion. However, not all VH families were germ line transcribed in every cell line, and there was a surprising lack of uniformity in the number and family distribution of germ line VH transcripts in individual lines. When V(D)J recombination was activated by restoration of RAG activity, recombinational activity of endogenous VH genes for which germ line transcription was observed could be compared with those of genes for which it was not observed. This analysis revealed multiple examples of endogenous VH gene segments which were rearranged in cells where their germ line transcription was not detectable prior to RAG expression. Thus, our data provide strong support for the idea that V-(D)J recombination does not require germ line transcription of the recombining variable gene segment.

ACKNOWLEDGMENTS

We are grateful to A. Henderson, P. Rothman, and C. Tunyaplin for critically reading the manuscript and to members of the Calame laboratory for many helpful discussions. We thank K. Merrell for lines AR2, AR3, AR8, and AR19; C. Roman and D. Baltimore for lines 1-1, 1-2, and AH7; and G. Rathbun and F. Alt for lines 63-12 and RAG expression vectors PDR1 and PDR2.

This work was supported by grant RO1 GM29361 to K.C.

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