Yamaguchi M, Yoshida H, Hirose F, Inoue Y H, Hayashi Y, Yamagishi M, Nishi Y, Tamai K, Sakaguchi K, Matsukage A
Division of Biochemistry, Aichi Cancer Center Research Institute, Nagoya, Japan.
Chromosoma. 2001 Sep;110(5):313-21. doi: 10.1007/s004120100155.
Transgenic flies were established in which ectopic expression of boundary element-associated factor (BEAF) 32A was targeted to the Drosophila eye imaginal disc. The eyes of the adult fly displayed a severe rough eye phenotype. When these eyes were sectioned, most ommatidia were found to be fused and irregularly shaped rhabdomeres were observed. In the developing eye imaginal disc, expression of BEAF32A inhibited differentiation of photoreceptor cells. Expression of BEAF32A also induced extensive apoptosis of eye imaginal disc cells and, consistent with this, co-expression of baculovirus P35 in the eye imaginal disc suppressed the BEAF32A-induced rough eye phenotype. To investigate the effects of BEAF32A on regulation of chromatin structure, genetic crosses of the BEAF32A-overexpressing flies with loss-of-function mutants for genes encoding other boundary element-binding factors or regulators of chromatin structure were conducted. Interestingly, half-dose reduction of the su(Hw) gene strongly enhanced the rough eye phenotype induced by BEAF32A. Furthermore, genetic crosses of the transgenic flies with loss-of-function mutants for genes interacting with Polycomb revealed specific links between BEAF32A and genes such as Distalless and kohtalo, suggesting a relation to the chromatin insulator function of BEAF. In addition, genetic crosses of transgenic flies expressing BEAF32A with a collection of Drosophila deficiency stocks allowed us to identify several genomic regions, deletions of which caused enhancement or suppression of the BEAF32A-induced rough eye phenotype. The transgenic flies established in this study should be useful to identify targets of BEAF32A and its positive or negative regulators in Drosophila.
构建了转基因果蝇,其中边界元件相关因子(BEAF)32A的异位表达靶向果蝇眼成虫盘。成年果蝇的眼睛表现出严重的粗糙眼表型。对这些眼睛进行切片时,发现大多数小眼融合,并且观察到不规则形状的视杆。在发育中的眼成虫盘中,BEAF32A的表达抑制了光感受器细胞的分化。BEAF32A的表达还诱导了眼成虫盘细胞的广泛凋亡,与此一致的是,在眼成虫盘中共表达杆状病毒P35可抑制BEAF32A诱导的粗糙眼表型。为了研究BEAF32A对染色质结构调控的影响,将过表达BEAF32A的果蝇与编码其他边界元件结合因子或染色质结构调节因子的功能缺失突变体进行遗传杂交。有趣的是,su(Hw)基因剂量减半强烈增强了BEAF32A诱导的粗糙眼表型。此外,将转基因果蝇与与多梳蛋白相互作用的基因的功能缺失突变体进行遗传杂交,揭示了BEAF32A与Distalless和kohtalo等基因之间的特定联系,表明与BEAF的染色质绝缘子功能有关。此外,将表达BEAF32A的转基因果蝇与一系列果蝇缺失品系进行遗传杂交,使我们能够鉴定出几个基因组区域,缺失这些区域会导致BEAF32A诱导的粗糙眼表型增强或受到抑制。本研究中构建的转基因果蝇应有助于鉴定果蝇中BEAF32A的靶标及其正负调节因子。