The role of MITF phosphorylation sites during coat color and eye development in mice analyzed by bacterial artificial chromosome transgene rescue.

msra(2009)

引用 40|浏览23
暂无评分
摘要
The microphthalmia-associated transcription factor (Mitf) has emerged as an important model for gene regulation in eukaryotic organisms. In vertebrates, it regulates the development of several cell types including melanocytes and has also been shown to play all important role in melanoma. In vitro, the activity of MITE is regulated by multiple signaling pathways, including the KITL/KIT/B-Raf pathway, which results in phosphorylation of MITE on serine residues 73 and 409. However, the precise role of signaling to MITE in. vivo remains largely unknown. Here, we use a BAC transgene rescue approach to introduce specific mutations in MITF to study the importance of specific phospho-acceptor sites and protein domains. We show that mice that carry a BAC transgene where single-amino-acid substitutions have been made in the Mitf gene rescue the phenotype of the loss-of-function mutations in Mitf. This may indicate that. signaling from KIT to MITF affects other phospho-acceptor sites in MITF or that alternative sites can be phosphorylated when Set73 and Ser409 have been mutated. Our results have implications for understanding signaling to transcription factors. Furthermore, as MITF and signaling mechanisms have been shown to play all important. role in melanomas, our findings may lead to novel insights into this resilient disease.
更多
查看译文
关键词
protein domains,phenotype,phosphorylation,mutation,transcription factor,alternative splicing,skin,gene regulation,microphthalmia associated transcription factor,signaling pathway,transgenes,binding sites,exons,bacterial artificial chromosome
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要