RRC ID 21813
著者 Itoh TQ, Matsumoto A, Tanimura T.
タイトル C-terminal binding protein (CtBP) activates the expression of E-box clock genes with CLOCK/CYCLE in Drosophila.
ジャーナル PLoS One
Abstract In Drosophila, CLOCK/CYCLE heterodimer (CLK/CYC) is the primary activator of circadian clock genes that contain the E-box sequence in their promoter regions (hereafter referred to as "E-box clock genes"). Although extensive studies have investigated the feedback regulation of clock genes, little is known regarding other factors acting with CLK/CYC. Here we show that Drosophila C-terminal binding protein (dCtBP), a transcriptional co-factor, is involved in the regulation of the E-box clock genes. In vivo overexpression of dCtBP in clock cells lengthened or abolished circadian locomotor rhythm with up-regulation of a subset of the E-box clock genes, period (per), vrille (vri), and PAR domain protein 1ε (Pdp1ε). Co-expression of dCtBP with CLK in vitro also increased the promoter activity of per, vri, Pdp1ε and cwo depending on the amount of dCtBP expression, whereas no effect was observed without CLK. The activation of these clock genes in vitro was not observed when we used mutated dCtBP which carries amino acid substitutions in NAD+ domain. These results suggest that dCtBP generally acts as a putative co-activator of CLK/CYC through the E-box sequence.
巻・号 8(4)
ページ e63113
公開日 2013-4-30
DOI 10.1371/journal.pone.0063113
PII PONE-D-11-16374
PMID 23646183
PMC PMC3640014
MeSH ARNTL Transcription Factors / chemistry ARNTL Transcription Factors / genetics* Alcohol Oxidoreductases / genetics Alcohol Oxidoreductases / metabolism* Animals Biological Clocks / genetics CLOCK Proteins / chemistry CLOCK Proteins / genetics* Circadian Rhythm / genetics DNA-Binding Proteins / genetics DNA-Binding Proteins / metabolism* Drosophila / genetics* Drosophila / metabolism* Drosophila Proteins / chemistry Drosophila Proteins / genetics* Drosophila Proteins / metabolism E-Box Elements* Female Gene Expression Gene Expression Regulation* Gene Knockdown Techniques Male Protein Multimerization Transcription, Genetic
IF 2.74
引用数 5
WOS 分野 BIOCHEMISTRY & MOLECULAR BIOLOGY
リソース情報
ショウジョウバエ 7583R-1 7583R-2