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Oct4:Sox2 结合对于在多能细胞中建立但不是维持动态调节基因的活跃和沉默状态是必需的。

Oct4:Sox2 binding is essential for establishing but not maintaining active and silent states of dynamically regulated genes in pluripotent cells.

机构信息

Molecular Biology Institute, Immunology, and Molecular Genetics, University of California at Los Angeles, Los Angeles, California 90095, USA.

Broad Stem Cell Research Center, Immunology, and Molecular Genetics, University of California at Los Angeles, Los Angeles, California 90095, USA.

出版信息

Genes Dev. 2022 Oct 1;36(19-20):1079-1095. doi: 10.1101/gad.350113.122. Epub 2022 Nov 23.

Abstract

Much has been learned about the mechanisms of action of pluripotency factors Oct4 and Sox2. However, as with other regulators of cell identity, little is known about the impact of disrupting their binding motifs in a native environment or the characteristics of genes they regulate. By quantitatively examining dynamic ranges of gene expression instead of focusing on conventional measures of differential expression, we found that Oct4 and Sox2 enhancer binding is strongly enriched near genes subject to large dynamic ranges of expression among cell types, with binding sites near these genes usually within superenhancers. Mutagenesis of representative Oct4:Sox2 motifs near such active, dynamically regulated genes revealed critical roles in transcriptional activation during reprogramming, with more limited roles in transcriptional maintenance in the pluripotent state. Furthermore, representative motifs near silent genes were critical for establishing but not maintaining the fully silent state, while genes whose transcript levels varied by smaller magnitudes among cell types were unaffected by nearby Oct4:Sox2 motifs. These results suggest that Oct4 and Sox2 directly establish both active and silent transcriptional states in pluripotent cells at a large number of genes subject to dynamic regulation during mammalian development, but are less important than expected for maintaining transcriptional states.

摘要

人们已经对多能性因子 Oct4 和 Sox2 的作用机制有了很多了解。然而,与其他细胞身份调控因子一样,人们对破坏它们在天然环境中的结合基序或它们调控的基因特征的影响知之甚少。通过定量研究基因表达的动态范围,而不是关注传统的差异表达测量方法,我们发现 Oct4 和 Sox2 增强子结合在很大程度上富集在表达动态范围较大的基因附近,这些基因附近的结合位点通常位于超级增强子内。对这些活跃的、受动态调控的基因附近具有代表性的 Oct4:Sox2 基序进行诱变,揭示了它们在重编程过程中转录激活中的关键作用,而在多能状态下转录维持中的作用则较为有限。此外,在沉默基因附近的代表性基序对于建立但不是维持完全沉默状态至关重要,而在细胞类型之间转录水平变化幅度较小的基因不受附近 Oct4:Sox2 基序的影响。这些结果表明,Oct4 和 Sox2 在哺乳动物发育过程中对大量受动态调控的基因直接建立活跃和沉默的转录状态,但在维持转录状态方面的重要性不如预期的那么大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45d9/9744233/8671ac719748/1079f01.jpg

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