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通过细菌人工染色体转基因拯救分析,研究了 MITF 磷酸化位点在小鼠毛色和眼睛发育中的作用。

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

机构信息

Department of Biochemistry and Molecular Biology, Biomedical Center, Faculty of Medicine, University of Iceland, Reykjavik, Iceland.

出版信息

Genetics. 2009 Oct;183(2):581-94. doi: 10.1534/genetics.109.103945. Epub 2009 Jul 27.

Abstract

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 an important role in melanoma. In vitro, the activity of MITF is regulated by multiple signaling pathways, including the KITL/KIT/B-Raf pathway, which results in phosphorylation of MITF on serine residues 73 and 409. However, the precise role of signaling to MITF 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 Ser73 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 an important role in melanomas, our findings may lead to novel insights into this resilient disease.

摘要

小眼畸形相关转录因子(Mitf)已成为真核生物基因调控的重要模型。在脊椎动物中,它调节包括黑色素细胞在内的几种细胞类型的发育,并且已被证明在黑色素瘤中也发挥着重要作用。在体外,MITF 的活性受多种信号通路的调节,包括 KITL/KIT/B-Raf 通路,其导致 MITF 在丝氨酸残基 73 和 409 上的磷酸化。然而,信号传递到 MITF 的精确作用在体内仍然很大程度上未知。在这里,我们使用 BAC 转基因拯救方法在 MITF 中引入特定突变,以研究特定磷酸化受体位点和蛋白质结构域的重要性。我们表明,携带 BAC 转基因的小鼠,其中 Mitf 基因中的单个氨基酸取代已被拯救出 Mitf 功能丧失突变的表型。这可能表明 KIT 向 MITF 的信号传递会影响 MITF 中的其他磷酸化受体位点,或者当 Ser73 和 Ser409 发生突变时,可以磷酸化替代位点。我们的结果对于理解信号传递到转录因子具有重要意义。此外,由于已经表明 MITF 和信号机制在黑色素瘤中起着重要作用,我们的发现可能会为这种具有弹性的疾病提供新的见解。

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