MRC Centre for Regenerative Medicine, Institute for Stem Cell Research, School of Biological Sciences, University of Edinburgh, Edinburgh, UK.
EMBO J. 2013 Aug 14;32(16):2231-47. doi: 10.1038/emboj.2013.161. Epub 2013 Jul 26.
Embryonic stem (ES) cell self-renewal efficiency is determined by the Nanog protein level. However, the protein partners of Nanog that function to direct self-renewal are unclear. Here, we identify a Nanog interactome of over 130 proteins including transcription factors, chromatin modifying complexes, phosphorylation and ubiquitination enzymes, basal transcriptional machinery members, and RNA processing factors. Sox2 was identified as a robust interacting partner of Nanog. The purified Nanog-Sox2 complex identified a DNA recognition sequence present in multiple overlapping Nanog/Sox2 ChIP-Seq data sets. The Nanog tryptophan repeat region is necessary and sufficient for interaction with Sox2, with tryptophan residues required. In Sox2, tyrosine to alanine mutations within a triple-repeat motif (S X T/S Y) abrogates the Nanog-Sox2 interaction, alters expression of genes associated with the Nanog-Sox2 cognate sequence, and reduces the ability of Sox2 to rescue ES cell differentiation induced by endogenous Sox2 deletion. Substitution of the tyrosines with phenylalanine rescues both the Sox2-Nanog interaction and efficient self-renewal. These results suggest that aromatic stacking of Nanog tryptophans and Sox2 tyrosines mediates an interaction central to ES cell self-renewal.
胚胎干细胞(ES)自我更新效率由 Nanog 蛋白水平决定。然而,指导自我更新的 Nanog 蛋白伴侣尚不清楚。在这里,我们鉴定了超过 130 种蛋白质的 Nanog 相互作用组,包括转录因子、染色质修饰复合物、磷酸化和泛素化酶、基础转录机制成员和 RNA 处理因子。Sox2 被鉴定为 Nanog 的一个强有力的相互作用伙伴。纯化的 Nanog-Sox2 复合物鉴定了多个重叠的 Nanog/Sox2 ChIP-Seq 数据集中存在的 DNA 识别序列。Nanog 的色氨酸重复区是与 Sox2 相互作用所必需和充分的,色氨酸残基是必需的。在 Sox2 中,三重复基序(S X T/S Y)内的酪氨酸到丙氨酸突变会破坏 Nanog-Sox2 相互作用,改变与 Nanog-Sox2 同源序列相关的基因表达,并降低 Sox2 拯救内源性 Sox2 缺失诱导的 ES 细胞分化的能力。用苯丙氨酸取代酪氨酸可挽救 Sox2-Nanog 相互作用和有效的自我更新。这些结果表明,Nanog 色氨酸和 Sox2 酪氨酸的芳族堆积介导了 ES 细胞自我更新的核心相互作用。