Landry Joseph, Sharov Alexei A, Piao Yulan, Sharova Lioudmila V, Xiao Hua, Southon Eileen, Matta Jennifer, Tessarollo Lino, Zhang Ying E, Ko Minoru S H, Kuehn Michael R, Yamaguchi Terry P, Wu Carl
Laboratory of Biochemistry and Molecular Cell Biology, National Cancer Institute, National Institutes of Heath, Bethesda, MD, USA.
PLoS Genet. 2008 Oct;4(10):e1000241. doi: 10.1371/journal.pgen.1000241. Epub 2008 Oct 31.
We have characterized the biological functions of the chromatin remodeling protein Bptf (Bromodomain PHD-finger Transcription Factor), the largest subunit of NURF (Nucleosome Remodeling Factor) in a mammal. Bptf mutants manifest growth defects at the post-implantation stage and are reabsorbed by E8.5. Histological analyses of lineage markers show that Bptf(-/-) embryos implant but fail to establish a functional distal visceral endoderm. Microarray analysis at early stages of differentiation has identified Bptf-dependent gene targets including homeobox transcriptions factors and genes essential for the development of ectoderm, mesoderm, and both definitive and visceral endoderm. Differentiation of Bptf(-/-) embryonic stem cell lines into embryoid bodies revealed its requirement for development of mesoderm, endoderm, and ectoderm tissue lineages, and uncovered many genes whose activation or repression are Bptf-dependent. We also provide functional and physical links between the Bptf-containing NURF complex and the Smad transcription factors. These results suggest that Bptf may co-regulate some gene targets of this pathway, which is essential for establishment of the visceral endoderm. We conclude that Bptf likely regulates genes and signaling pathways essential for the development of key tissues of the early mouse embryo.
我们已对染色质重塑蛋白Bptf(溴结构域PHD指转录因子)的生物学功能进行了表征,它是哺乳动物中NURF(核小体重塑因子)的最大亚基。Bptf突变体在植入后阶段表现出生长缺陷,并在E8.5时被重吸收。谱系标记的组织学分析表明,Bptf(-/-)胚胎能够植入,但未能建立起功能性的远端内脏内胚层。分化早期的微阵列分析已确定了Bptf依赖性基因靶点,包括同源框转录因子以及外胚层、中胚层、定形内胚层和内脏内胚层发育所必需的基因。将Bptf(-/-)胚胎干细胞系分化为胚状体揭示了其对中胚层、内胚层和外胚层组织谱系发育的需求,并发现了许多其激活或抑制依赖于Bptf的基因。我们还提供了含Bptf的NURF复合物与Smad转录因子之间的功能和物理联系。这些结果表明,Bptf可能共同调节该途径的一些基因靶点,这对于内脏内胚层的建立至关重要。我们得出结论,Bptf可能调节早期小鼠胚胎关键组织发育所必需的基因和信号通路。