TY - JOUR
T1 - Transcription arrest relief by S-II/TFIIS during gene expression in erythroblast differentiation
AU - Nagata, Makiko
AU - Ito, Takahiro
AU - Arimitsu, Nagisa
AU - Koyama, Hiroshi
AU - Sekimizu, Kazuhisa
PY - 2009
Y1 - 2009
N2 - Transcription stimulator S-II relieves RNA polymerase II (RNAPII) from transcription elongation arrest. Mice lacking the S-II gene (S-II KO mice) die at mid-gestation with impaired erythroblast differentiation, and have decreased expression of the Bcl-x gene. To understand a role of S-II in Bcl-x gene expression, we examined the distribution of transcription complex on the Bcl-x gene in S-II KO mice. The amount of RNAPII at intron 2 of the Bcl-x gene was decreased in S-II KO mice, whereas recruitment of transcription initiation factor TFIIB and RNAPII to the promoter was not decreased. Consistently, in vitro transcription analysis revealed the presence of a transcription arrest site in the Bcl-x gene intron 2, and transcription arrest at this site was overcome by S-II. Furthermore, histone acetylation on the coding region of the Bcl-x gene was decreased in S-II KO mice. In the β major -globin gene, whose expression was also decreased in S-II KO mice, there were no changes in RNAPII distribution or histone acetylation, but the amount of histone H3 occupying the coding region was increased. These results suggest that S-II is involved in transcription of the Bcl-x and β major -globin gene during erythroblast differentiation, by relieving transcription arrest or affecting histone modification on chromatin template.
AB - Transcription stimulator S-II relieves RNA polymerase II (RNAPII) from transcription elongation arrest. Mice lacking the S-II gene (S-II KO mice) die at mid-gestation with impaired erythroblast differentiation, and have decreased expression of the Bcl-x gene. To understand a role of S-II in Bcl-x gene expression, we examined the distribution of transcription complex on the Bcl-x gene in S-II KO mice. The amount of RNAPII at intron 2 of the Bcl-x gene was decreased in S-II KO mice, whereas recruitment of transcription initiation factor TFIIB and RNAPII to the promoter was not decreased. Consistently, in vitro transcription analysis revealed the presence of a transcription arrest site in the Bcl-x gene intron 2, and transcription arrest at this site was overcome by S-II. Furthermore, histone acetylation on the coding region of the Bcl-x gene was decreased in S-II KO mice. In the β major -globin gene, whose expression was also decreased in S-II KO mice, there were no changes in RNAPII distribution or histone acetylation, but the amount of histone H3 occupying the coding region was increased. These results suggest that S-II is involved in transcription of the Bcl-x and β major -globin gene during erythroblast differentiation, by relieving transcription arrest or affecting histone modification on chromatin template.
UR - https://www.scopus.com/pages/publications/61349137050
U2 - 10.1111/j.1365-2443.2008.01277.x
DO - 10.1111/j.1365-2443.2008.01277.x
M3 - 記事
C2 - 19210546
AN - SCOPUS:61349137050
SN - 1356-9597
VL - 14
SP - 371
EP - 380
JO - Genes to Cells
JF - Genes to Cells
IS - 3
ER -