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首页> 外文期刊>eLife journal >The pioneer factor OCT4 requires the chromatin remodeller BRG1 to support gene regulatory element function in mouse embryonic stem cells
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The pioneer factor OCT4 requires the chromatin remodeller BRG1 to support gene regulatory element function in mouse embryonic stem cells

机译:先锋因子OCT4需要染色质重塑剂BRG1来支持小鼠胚胎干细胞中的基因调控元件功能

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All cells in your body contain the same genetic information in the form of genes encoded within DNA. Yet, cells use this information in different ways so that the activities of individual genes within that DNA can vary from cell to cell. This allows identical cells to become different to each other and to adapt to changing circumstances. A group of proteins called transcription factors control the activity of certain genes by binding to specific sites on DNA. However, this isn’t a straightforward process because DNA in human and other animal cells is usually associated with structures called nucleosomes that can block access to the DNA. Pioneer transcription factors, such as OCT4, are a specific group of transcription factors that can attach to DNA in spite of the nucleosomes, but it’s not clear how this is possible. Once pioneer transcription factors attach to DNA they can help other transcription factors to bind alongside them. King et al. studied OCT4 in stem cells from mouse embryos to investigate how it is able to act as a pioneer transcription factor and control gene activity. The experiments show that several other transcription factors lose the ability to bind to DNA when OCT4 is absent. This leads to widespread changes in gene activity in the cells, which seems to be due to other transcription factors being unable to get past the nucleosomes to attach to the DNA. Further experiments showed that OCT4 needs a protein called BRG1 in order to act as a pioneer transcription factor. BRG1 is an enzyme that is able to move and remove (remodel) nucleosomes attached to DNA, suggesting that normal transcription factor binding requires this activity. The next challenge is to investigate whether BRG1, or similar enzymes, are also needed by other pioneer transcription factors that are required for normal gene activity and cell identity. This will be important because many enzymes that remodel nucleosomes are disrupted in human diseases like cancer where cells lose their normal identity.
机译:您体内的所有细胞都以DNA内编码的基因形式包含相同的遗传信息。但是,细胞以不同的方式使用此信息,因此该DNA中单个基因的活性可能因细胞而异。这允许相同的单元变得彼此不同并适应不断变化的环境。一组称为转录因子的蛋白质通过与DNA上的特定位点结合来控制某些基因的活性。但是,这不是一个简单的过程,因为人类和其他动物细胞中的DNA通常与称为核小体的结构有关,这种结构可以阻止DNA的进入。先锋转录因子(如OCT4)是一类特殊的转录因子,尽管存在核小体,它们仍可以附着在DNA上,但目前尚不清楚这是怎么可能的。先锋转录因子一旦与DNA结合,便可以帮助其他转录因子与DNA结合。金等。研究了小鼠胚胎干细胞中的OCT4,以研究其如何充当先驱转录因子并控制基因活性。实验表明,缺少OCT4时,其他几种转录因子也会失去与DNA结合的能力。这导致细胞中基因活性的广泛变化,这似乎是由于其他转录因子无法越过核小体而附着在DNA上。进一步的实验表明,OCT4需要一种称为BRG1的蛋白质才能充当先驱转录因子。 BRG1是一种能够移动和去除(重塑)附着于DNA的核小体的酶,表明正常的转录因子结合需要这种活性。下一个挑战是研究正常基因活性和细胞身份所必需的其他先驱转录因子是否还需要BRG1或类似的酶。这很重要,因为许多重塑核小体的酶在人类疾病(如癌症)中会被破坏,而癌症会失去细胞的正常身份。

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