Kim Sharon, Bugga Lakshmi, Hong Eugenie S, Zabinsky Rebecca, Edwards Rebecca G, Deodhar Parimal A, Armstrong Jennifer A
The W.M. Keck Science Department, Claremont McKenna College, Scripps College and Pitzer College, California 91711.
The W.M. Keck Science Department, Claremont McKenna College, Scripps College and Pitzer College, California 91711
G3 (Bethesda). 2015 Nov 23;6(2):245-54. doi: 10.1534/g3.115.021691.
The conserved chromatin remodeling and assembly factor CHD1 (chromodomains, helicase, DNA-binding domain) is present at active genes where it participates in histone turnover and recycling during transcription. In order to gain a more complete understanding of the mechanism of action of CHD1 during development, we created a novel genetic assay in Drosophila melanogaster to evaluate potential functional interactions between CHD1 and other chromatin factors. We found that overexpression of CHD1 results in defects in wing development and utilized this fully penetrant and reliable phenotype to conduct a small-scale RNAi-based candidate screen to identify genes that functionally interact with chd1 in vivo. Our results indicate that CHD1 may act in opposition to other remodeling factors, including INO80, and that the recruitment of CHD1 to active genes by RTF1 is conserved in flies.
保守的染色质重塑和组装因子CHD1(色域、解旋酶、DNA结合结构域)存在于活跃基因中,在转录过程中参与组蛋白的周转和循环利用。为了更全面地了解CHD1在发育过程中的作用机制,我们在黑腹果蝇中创建了一种新的遗传检测方法,以评估CHD1与其他染色质因子之间潜在的功能相互作用。我们发现,CHD1的过表达会导致翅膀发育缺陷,并利用这种完全显性且可靠的表型进行了基于RNA干扰的小规模候选筛选,以鉴定在体内与chd1发生功能相互作用的基因。我们的结果表明,CHD1可能与包括INO80在内的其他重塑因子起相反作用,并且RTF1将CHD1招募到活跃基因上这一过程在果蝇中是保守的。