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Conservation of transcriptional activation functions of the NF-kappa B p50 and p65 subunits in mammalian cells and Saccharomyces cerevisiae.

机译:哺乳动物细胞和酿酒酵母中NF-κBp50和p65亚基的转录激活功能的保守性。

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摘要

The NF-kappa B transcription factor complex is composed of a 50-kDa (p50) and a 65-kDa (p65) subunit. Both subunits bind to similar DNA motifs and elicit transcriptional activation as either homo- or heterodimers. By using chimeric proteins that contain the DNA binding domain of the yeast transcriptional activator GAL4 and subdomains of p65, three distinct transcriptional activation domains were identified. One domain was localized to a region of 42 amino acids containing a potential leucin zipper structure, consistent with earlier reports. Two other domains, both acidic and rich in prolines, were also identified. Of perhaps more significance, the same minimal activation domains that were functional in mammalian cells were also functional in the yeast Saccharomyces cerevisiae. Coexpression of the NF-kappa B inhibitory molecule, I kappa B, reduced the transcriptional activity of p65 significantly, suggesting the ability of I kappa B to function in a similar manner in S. cerevisiae. Surprisingly, while the conserved rel homology domain of p65 demonstrated no transcriptional activity in either mammalian cells or S. cerevisiae, the corresponding domain in p50 was a strong transcriptional activator in S. cerevisiae. The observation that similar domains elicit transcriptional activation in mammalian cells and S. cerevisiae demonstrates strong conservation of the transcriptional machinery required for NF-kappa B function and provides a powerful genetic system to study the transcriptional mechanisms of these proteins.
机译:NF-κB转录因子复合物由50-kDa(p50)和65-kDa(p65)亚基组成。两个亚基都结合到相似的DNA基序上,并引起同型或异型二聚体的转录激活。通过使用包含酵母转录激活子GAL4的DNA结合结构域和p65的亚结构域的嵌合蛋白,鉴定出三个不同的转录激活结构域。与先前的报道一致,一个结构域位于含有潜在的亮氨酸拉链结构的42个氨基酸区域。还确定了两个其他的域,既酸性又富含脯氨酸。可能更重要的是,在哺乳动物细胞中起作用的相同最小激活结构域在啤酒酵母中也起作用。 NF-κB抑制分子IκB的共表达显着降低了p65的转录活性,表明IκB在酿酒酵母中以类似方式起作用的能力。出人意料的是,尽管p65的保守的rel同源结构域在哺乳动物细胞或酿酒酵母中均未显示转录活性,但p50中的相应结构域在酿酒酵母中是强转录激活因子。相似域在哺乳动物细胞和酿酒酵母中引起转录激活的观察结果表明,NF-κB功能所需的转录机制具有强大的保守性,并为研究这些蛋白质的转录机制提供了强大的遗传系统。

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