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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Biotin is not a natural histone modification.
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Biotin is not a natural histone modification.

机译:生物素不是天然的组蛋白修饰。

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In addition to its role as the cofactor of biotin-dependent carboxylases, biotin has been demonstrated to have a role in cellular processes including transcription and gene silencing. Histones have been proposed to be modified by biotin in a site-specific manner, providing a pathway by which biotin acts as a regulatory molecule for gene expression. However, there is uncertainty whether biotin attachment to histones in vitro can be extrapolated to biotin as a native histone modification. We critically examined a number of methods used to detect biotin attachment on histones, including [(3)H]-biotin uptake, Western blot analysis of histones, and mass spectrometry of affinity purified histone fragments with the objective of determining if the in vivo occurrence of histone biotinylation could be conclusively established. We found for each of these methods that, while biotin could be readily detected on native carboxylases or histones biotinylated in vitro, biotin attachment on native histones could not be detected in cell cultures from various sources. We conclude that biotin is absent in native histones to a sensitivity of at least one part per 100,000, suggesting that the regulatory impact of biotin on gene expression must be through alternate mechanisms.
机译:除了作为生物素依赖性羧化酶的辅因子发挥作用外,生物素还被证明在包括转录和基因沉默在内的细胞过程中也具有重要作用。已经提出组蛋白可以被生物素以位点特异性方式修饰,从而提供一种途径,通过该途径生物素可以充当基因表达的调节分子。但是,尚不确定是否可以将生物素在体外与组蛋白的结合作为天然组蛋白修饰推断到生物素上。我们严格检查了用于检测组蛋白上生物素附着的许多方法,包括[(3)H]-生物素摄取,组蛋白的蛋白质印迹分析和亲和纯化组蛋白片段的质谱分析,目的是确定体内是否存在可以最终确定组蛋白的生物素化。我们发现,对于每种方法,虽然可以在体外生物素化的天然羧化酶或组蛋白上轻松检测到生物素,但在各种来源的细胞培养物中都无法检测到天然组蛋白上的生物素附着。我们得出的结论是,天然组蛋白中不存在生物素,其敏感性至少为每100,000之一,这表明生物素对基因表达的调节作用必须通过其他机制进行。

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