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首页> 外文期刊>Proceedings of the Nutrition Society >Plenary Lecture 2 Transcription factors, regulatory elements and nutrient–gene communication: Conference on ‘Over- and undernutrition: challenges and approaches’
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Plenary Lecture 2 Transcription factors, regulatory elements and nutrient–gene communication: Conference on ‘Over- and undernutrition: challenges and approaches’

机译:全体会议第2讲转录因子,调节成分和营养基因交流:“营养过剩和营养不足:挑战与方法”会议

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Dramatic advances have been made in the understanding of the differing molecular mechanisms used by nutrients to regulate genes that are essential for their biological roles to carry out normal metabolism. Classical studies have focused on nutrients as ligands to activate specific transcription factors. New interest has focused on histone acetylation as a process for either global or limited gene activation and is the first mechanism to be discussed. Nuclear ATP-citrate lyase generates acetyl-CoA, which has been shown to have a role in the activation of specific genes via selective histone acetylation. Transcription factor acetylation may provide a second mode of control of nutrient-responsive gene transcription. The third mechanism relates to the availability of response elements within chromatin, which as well as the location of the elements in the gene may allow or prevent transcription. A fourth mechanism involves intracellular transport of Zn ions, which can orchestrate localized enzyme inhibitiona€“activation. This process in turn influences signalling molecules that regulate gene expression. The examples provided in the present review point to a new level of complexity in understanding nutrienta€“gene communication.
机译:在理解营养素用来调节基因的不同分子机制方面取得了巨大进步,这些分子机制对于基因的生物学功能进行正常的代谢至关重要。经典研究集中于营养素作为激活特定转录因子的配体。新的兴趣集中在组蛋白乙酰化作为整体或有限的基因激活过程中,并且是要讨论的第一个机制。核苷ATP柠檬酸裂解酶产生乙酰辅酶A,乙酰辅酶A已显示在通过选择性组蛋白乙酰化作用激活特定基因中起作用。转录因子乙酰化可提供第二种控制营养应答基因转录的模式。第三种机制涉及染色质内反应元件的可用性,以及该元件在基因中的位置可能允许或阻止转录。第四个机制涉及锌离子的细胞内转运,这可以协调局部酶的抑制和活化。这个过程反过来影响调节基因表达的信号分子。本综述提供的例子表明,在理解营养素基因交流方面的复杂性达到了新的水平。

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