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Mapping of Lysine Methylation and Acetylation in Core Histones of Neurospora crassa

机译:景天孢子核心组蛋白中赖氨酸甲基化和乙酰化的定位

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Core histones are susceptible to a variety of post-translational modifications (PTMs), among which methylation and acetylation play critical roles in various chromatin-dependent processes. The nature and biological functions of these PTMs have been extensively studied in plants, animals, and yeasts. In contrast, the histone modifications in Neurospora crassa, a convenient model organism for multicellular eukaryotes, remained largely undefined. In this study, we used several mass spectrometric techniques, coupled with H PLC separation and multiple-protease digestion, to identify the methylation and acetylation sites in core histones isolated from Neurospora. Electron transfer dissociation (ETD) was employed to fragment the heavily modified long N-terminal peptides. In addition, accurate mass measurement of fragment ions allowed for unambiguous differentiation of acetylation from trimethylation. Many modification sites conserved in other organisms were identified in Neurospora. In addition, some unique modification sites in histone H2B, including N-terminal alpha methylation, methylation at K3, and acetylation at K19, K28, and K29, were observed. Our analysis provides a potentially comprehensive picture of methylation and acetylation of core histones in Neurospora, which should serve as a foundation for future studies of the function of histone PTMs in this model organism.
机译:核心组蛋白易受多种翻译后修饰(PTM)的影响,其中甲基化和乙酰化在各种依赖染色质的过程中起关键作用。这些PTM的性质和生物学功能已经在植物,动物和酵母中进行了广泛研究。相比之下,神经孢子虫(一种方便的多细胞真核生物的模型生物)中的组蛋白修饰在很大程度上还不确定。在这项研究中,我们使用了几种质谱技术,结合H PLC分离和多种蛋白酶消化,来鉴定从Neurospora中分离出的核心组蛋白中的甲基化和乙酰化位点。电子转移解离(ETD)用于片段化严重修饰的长N端肽。此外,碎片离子的精确质量测量可实现乙酰化与三甲基化的明确区分。在神经孢菌中鉴定出许多其他生物中保守的修饰位点。此外,观察到组蛋白H2B中的一些独特修饰位点,包括N端α甲基化,K3处的甲基化以及K19,K28和K29处的乙酰化。我们的分析为Neurospora中核心组蛋白的甲基化和乙酰化提供了潜在的全面图片,这应该为将来研究此模型生物中组蛋白PTM的功能奠定基础。

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