首页> 美国卫生研究院文献>Molecular and Cellular Biology >PAS Domain-Mediated WC-1/WC-2 Interaction Is Essential for Maintaining the Steady-State Level of WC-1 and the Function of Both Proteins in Circadian Clock and Light Responses of Neurospora
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PAS Domain-Mediated WC-1/WC-2 Interaction Is Essential for Maintaining the Steady-State Level of WC-1 and the Function of Both Proteins in Circadian Clock and Light Responses of Neurospora

机译:PAS域介导的WC-1 / WC-2相互作用对于维持WC-1的稳态水平以及这两种蛋白在昼夜节律和神经孢子的光反应中的功能至关重要。

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摘要

In the frq-wc-based circadian feedback loops of Neurospora, two PAS domain-containing transcription factors, WHITE COLLAR-1 (WC-1) and WC-2, form heterodimeric complexes that activate the transcription of frequency (frq). FRQ serves two roles in these feedback loops: repressing its own transcription by interacting with the WC complex and positively upregulating the levels of WC-1 and WC-2 proteins. We report here that the steady-state level of WC-1 protein is independently regulated by both FRQ and WC-2 through different posttranscriptional mechanisms. The WC-1 level is extremely low in wc-2 knockout strains, and this low level of expression is independent of wc-1 transcription and FRQ protein expression. In addition, our data show that the PAS domain of WC-2 mediates the interactions of this protein with both WC-1 and FRQ in vivo. Such interactions are essential for maintaining the steady-state level of WC-1 and the proper function of WC-1 and WC-2 in circadian clock and light responses.
机译:在Neurospora的基于frq-wc的昼夜节律反馈回路中,两个包含PAS域的转录因子WHITE COLLAR-1(WC-1)和WC-2形成异二聚体复合物,可激活频率(frq)的转录。 FRQ在这些反馈回路中起两个作用:通过与WC复合物相互作用来抑制其自身的转录,并积极上调WC-1和WC-2蛋白的水平。我们在这里报告说,WC-1蛋白的稳态水平是通过不同的转录后机制分别受FRQ和WC-2调节的。在wc-2基因敲除菌株中WC-1水平极低,这种低水平的表达与wc-1转录和FRQ蛋白表达无关。此外,我们的数据表明,WC-2的PAS域在体内介导了该蛋白与WC-1和FRQ的相互作用。这种相互作用对于维持WC-1的稳态水平以及WC-1和WC-2在昼夜节律和光响应中的正常功能至关重要。

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