RRC ID 28851
著者 Clough E, Tedeschi T, Hazelrigg T.
タイトル Epigenetic regulation of oogenesis and germ stem cell maintenance by the Drosophila histone methyltransferase Eggless/dSetDB1.
ジャーナル Dev Biol
Abstract The Drosophila melanogaster histone lysine methyltransferase (HKMT) Eggless (Egg/dSETDB1) catalyzes methylation of Histone H3 lysine 9 (H3K9), a signature of repressive heterochromatin. Our previous studies showed that H3K9 methylation by Egg is required for oogenesis. Here we analyze a set of EMS-induced mutations in the egg gene, identify the molecular lesions of these mutations, and compare the effects on oogenesis of both strong loss-of-function and weak hypomorphic alleles. These studies show that H3K9 methylation by Egg is required for multiple stages of oogenesis. Mosaic expression experiments show that the egg gene is not required intrinsically in the germ cells for their early differentiation, but is required in the germ cells for their survival past stage 5 of oogenesis. egg is also required in germ stem cells for their maintenance, since egg- germ stem cells initially survive but are not maintained as females age. Mosaic analysis also reveals that the early egg chamber budding defects in egg- ovaries are due to an intrinsic requirement for egg in follicle stem cells and their descendents, and that egg plays a non-autonomous role in somatic cells in the germarium to influence the differentiation of early germ cells.
巻・号 388(2)
ページ 181-91
公開日 2014-4-15
DOI 10.1016/j.ydbio.2014.01.014
PII S0012-1606(14)00042-6
PMID 24485852
PMC PMC4689207
MeSH Alleles Animals Cell Differentiation DNA Methylation Drosophila Proteins / genetics* Drosophila melanogaster Epigenesis, Genetic* Germ Cells / cytology* Histone-Lysine N-Methyltransferase Mosaicism Oogenesis / genetics* Stem Cells / cytology*
IF 2.896
引用数 20
リソース情報
ショウジョウバエ DGRC#104055