首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Double Zinc Finger Domain and Adjacent Accessory Domain from the Transcription Factor Loss of Zinc Sensing 1 (Loz1) Are Necessary for DNA Binding and Zinc Sensing
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The Double Zinc Finger Domain and Adjacent Accessory Domain from the Transcription Factor Loss of Zinc Sensing 1 (Loz1) Are Necessary for DNA Binding and Zinc Sensing

机译:DNA结合和锌感测需要从锌感测1(Loz1)的转录因子丢失中获得双锌指结构域和相邻的辅助结构域。

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摘要

The Loz1 transcription factor from Schizosaccharomyces pombe plays an essential role in zinc homeostasis by repressing target gene expression in zinc-replete cells. To determine how Loz1 function is regulated by zinc, we employed a genetic screen to isolate mutants with impaired zinc-dependent gene expression and analyzed Loz1 protein truncations to map a minimal zinc-responsive domain. In the screen, we isolated 36 new loz1 alleles. 27 of these alleles contained mutations resulting in the truncation of the Loz1 protein. The remaining nine alleles contained point mutations leading to an amino acid substitution within a C-terminal double zinc finger domain. Further analysis of two of these substitutions revealed that they disrupted Loz1 DNA activity in vitro. By analyzing Loz1 protein truncations, we found that the last 96 amino acids of Loz1 was the smallest region that was able to confer partial zinc-dependent repression in vivo. This 96-amino acid region contains the double zinc finger domain and an accessory domain that enhances DNA binding. These results were further supported by the findings that MtfA, a transcription factor from Aspergillus nidulans that contains a related double zinc finger, is unable to complement loz1Δ, whereas a chimera of MtfA containing the Loz1 accessory domain is able to complement loz1Δ. Together, our studies indicate that the double zinc finger domain and adjacent accessory domain preceding zinc finger 1 are necessary for DNA binding and zinc-dependent repression.
机译:来自粟酒裂殖酵母的Loz1转录因子通过抑制富锌细胞中的靶基因表达,在锌稳态中起着重要作用。为了确定锌如何调控Loz1功能,我们采用了遗传筛选方法来分离具有依赖锌的基因表达受损的突变体,并分析了Loz1蛋白的截短图,以绘制一个最小的锌响应域。在屏幕上,我们分离了36个新的loz1等位基因。这些等位基因中的27个包含导致Loz1蛋白被截断的突变。其余九个等位基因包含点突变,导致C端双锌指结构域内的氨基酸取代。对其中两个取代的进一步分析表明,它们在体外破坏了Loz1 DNA的活性。通过分析Loz1蛋白的截短,我们发现Loz1的最后96个氨基酸是能够赋予体内部分锌依赖性抑制的最小区域。这个96个氨基酸的区域包含双锌指结构域和一个增强DNA结合的辅助结构域。这些结果进一步得到以下发现的支持:MtfA,来自构巢曲霉的含相关双锌指的转录因子,不能互补loz1Δ,而含有Loz1辅助结构域的MtfA嵌合体则能够互补loz1Δ。总之,我们的研究表明,锌指1之前的双锌指结构域和相邻的辅助结构域对于DNA结合和锌依赖性抑制是必需的。

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