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B cell-specific loss of histone 3 lysine 9 methylation in the V(H) locus depends on Pax5.


ABSTRACT: Immunoglobulin heavy chain rearrangement (V(H)-to-DJ(H)) occurs only in B cells, suggesting it is inhibited in other lineages. Here we found that in the mouse V(H) locus, methylation of lysine 9 on histone H3 (H3-K9), a mark of inactive chromatin, was present in non-B lineage cells but was absent in B cells. As others have shown that H3-K9 methylation can inhibit V(D)J recombination on engineered substrates, our data support the idea that H3-K9 methylation inhibits endogenous V(H)-to-DJ(H) recombination. We also show that Pax5, a transcription factor required for B cell commitment, is necessary and sufficient for the removal of H3-K9 methylation in the V(H) locus and provide evidence that one function of Pax5 is to remove this inhibitory modification by a mechanism of histone exchange, thus allowing B cell-specific V(H)-to-DJ(H) recombination.

SUBMITTER: Johnson K 

PROVIDER: S-EPMC1635547 | biostudies-literature | 2004 Aug

REPOSITORIES: biostudies-literature

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B cell-specific loss of histone 3 lysine 9 methylation in the V(H) locus depends on Pax5.

Johnson Kristen K   Pflugh David L DL   Yu Duonan D   Hesslein David G T DG   Lin Kuo-I KI   Bothwell Alfred L M AL   Thomas-Tikhonenko Andrei A   Schatz David G DG   Calame Kathryn K  

Nature immunology 20040718 8


Immunoglobulin heavy chain rearrangement (V(H)-to-DJ(H)) occurs only in B cells, suggesting it is inhibited in other lineages. Here we found that in the mouse V(H) locus, methylation of lysine 9 on histone H3 (H3-K9), a mark of inactive chromatin, was present in non-B lineage cells but was absent in B cells. As others have shown that H3-K9 methylation can inhibit V(D)J recombination on engineered substrates, our data support the idea that H3-K9 methylation inhibits endogenous V(H)-to-DJ(H) recom  ...[more]

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