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首页> 外文期刊>Biochemical and Biophysical Research Communications >A cell-free system toward deciphering the post-translational modification barcodes of Oct4 in different cellular contexts
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A cell-free system toward deciphering the post-translational modification barcodes of Oct4 in different cellular contexts

机译:一个无细胞系统,用于在不同的细胞环境中解密Oct4的翻译后修饰条形码

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摘要

The octamer-binding transcription factor 4 (Oct4) is essential for maintaining the self-renewal and pluripotency of embryonic stem cells (ESCs). Post-translational modifications (PTMs) of Oct4 critically control its structure, function and intracellular localization. However, determination of Oct4 PTM profiles has largely been restricted by the quantity and purity of the Oct4 protein samples required for mass spectrometric analyses. In this study, by incubating the Escherichia coli-derived His-tagged Oct4 proteins with the whole cell lysates of a variety of human cells followed by retrieving the reacted Oct4 proteins with the Ni-NTA beads, we developed a labor- and cost-effective in vitro PTM method that allowed for mass spectrometric determination of the phosphorylation profiles of Oct4 proteins exposed to various cell-free systems. A number of Oct4 phosphorylation sites that were commonly present in all the cell-free systems or specifically present in a particular cellular context were identified, indicating that Oct4 is controlled by both common and distinct PTM regulatory pathways. Our work provided a proof-of-concept that such a cell-free system-based in vitro PTM approach can be applied to systematically map out the physiologically-relevant PTM sites in Oct4 proteins, which opened up an avenue to fully decipher the Oct4 PTM barcodes in various cellular contexts. (C) 2014 The Authors. Published by Elsevier Inc.
机译:八聚物结合转录因子4(Oct4)对于维持胚胎干细胞(ESC)的自我更新和多能性至关重要。 Oct4的翻译后修饰(PTM)严格控制其结构,功能和细胞内定位。但是,Oct4 PTM图谱的确定在很大程度上受到质谱分析所需的Oct4蛋白样品的数量和纯度的限制。在这项研究中,通过将源自大肠杆菌的His标记的Oct4蛋白与多种人类细胞的全细胞裂解液一起孵育,然后用Ni-NTA珠回收反应的Oct4蛋白,我们开发了一种既省力又经济的方法体外PTM方法可以质谱测定暴露于各种无细胞系统的Oct4蛋白的磷酸化谱。鉴定了许多存在于所有无细胞系统中或特定存在于特定细胞环境中的Oct4磷酸化位点,表明Oct4受共同和独特的PTM调节途径控制。我们的工作提供了一种概念证明,即这种无细胞的基于体外系统的体外PTM方法可用于系统地绘制Oct4蛋白中生理相关的PTM位点,从而为完全破译Oct4 PTM开辟了一条途径各种细胞环境中的条形码。 (C)2014作者。由Elsevier Inc.发布

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