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首页> 外文期刊>Pigment cell research >A Dominant Negative Mutant of Microphthalmia Transcription Factor (MITF) Lacking Two Transactivation Domains Suppresses Transcription Mediated by Wild Type MITF and a Hyperactive MITF Derivative
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A Dominant Negative Mutant of Microphthalmia Transcription Factor (MITF) Lacking Two Transactivation Domains Suppresses Transcription Mediated by Wild Type MITF and a Hyperactive MITF Derivative

机译:缺乏两个反式激活域的小眼症转录因子(MITF)的一个主要的负突变体抑制野生型MITF和一个活跃的MITF衍生物介导的转录。

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摘要

Microphthalmia transcription factor (MITF) positively regulates transcription of differentiation-related genes in several cell lineages, including melanocytes. Recent data also indicate a new important role for MITF as a factor that appears to be required for survival of melanoma cells, suggesting a possibility that abrogation of MITF function in transformed melanocytes could lead to a decreased survival via attenuating anti-apoptotic signals. Therefore, to gain a better understanding of the role which MITF plays in melanoma cell survival, it is important to find efficient means of abolishing the transactivation of its target genes. Recently, a dominant negative MITF lacking the N-terminus has been shown to down-regulate tyrosinase and Trp1 expression in normal melanocytes and mouse B16 melanoma cells. Here, a dominant negative mutant of the melanocyte-specific isoform of MITF is described carrying deletions of both N- and C-terminal transactivation domains. Cotransfection of this mutant resulted in a complete inhibition of the wild type MITF function as tested on both the reporter-linked tyrosinase promoter and an endogenous, ectopic MITF-triggered tyrosinase gene in U2-OS cells. The dominant negative construct also strongly repressed the activity of a hyperactive MITF-Vp16 chimera. Importantly, deletion of both activation domains was necessary to eliminate the residual transcription activity observed when only the N-terminal domain was removed and to achieve the repressive effect in human melanoma cells. If the activity of MITF plays a role in the long term survival of malignant melanocytes, overexpression of a strong dominant negative MITF mutant might be a useful strategy to suppress its transactivation function.
机译:小眼症转录因子(MITF)在包括黑素细胞在内的多个细胞谱系中积极调节分化相关基因的转录。最近的数据还表明,MITF作为似乎是黑素瘤细胞存活所必需的因子,起着新的重要作用,这暗示了在转化的黑素细胞中废除MITF功能可能会通过减弱抗凋亡信号而导致存活期降低。因此,为了更好地了解MITF在黑色素瘤细胞存活中的作用,重要的是找到消除其靶基因反式激活的有效方法。最近,缺乏N端的显性负MITF已显示下调正常黑色素细胞和小鼠B16黑色素瘤细胞中的酪氨酸酶和Trp1表达。在此,描述了MITF的黑素细胞特异性同工型的显性负突变体,其带有N端和C端反式激活域的缺失。如在报告子连锁的酪氨酸酶启动子和U2-OS细胞中内源性,异位MITF触发的酪氨酸酶基因上所测试的,该突变体的共转染导致野生型MITF功能的完全抑制。显性负性构建体还强烈抑制过度活跃的MITF-Vp16嵌合体的活性。重要的是,两个激活结构域的缺失对于消除当仅去除N末端结构域时观察到的残留转录活性并实现对人黑素瘤细胞的阻抑作用是必要的。如果MITF的活性在恶性黑素细胞的长期存活中起作用,则强表达的显性负MITF突变体的过表达可能是抑制其反式激活功能的有用策略。

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