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赖氨酸乙酰化化学计量学和蛋白质组学分析揭示了人类细胞中沉默调节蛋白1调控的通路。

Lysine acetylation stoichiometry and proteomics analyses reveal pathways regulated by sirtuin 1 in human cells.

作者信息

Gil Jeovanis, Ramírez-Torres Alberto, Chiappe Diego, Luna-Peñaloza Juan, Fernandez-Reyes Francis C, Arcos-Encarnación Bolivar, Contreras Sandra, Encarnación-Guevara Sergio

机构信息

From the Programa de Genómica Funcional de Procariotes and.

Programa de Doctorado en Ciencias Biomédicas, Centro de Ciencias Genómicas-Universidad Nacional Autónoma de México, Avenida Universidad s/n, Colonia Chamilpa, Cuernavaca, Morelos CP 62210, México.

出版信息

J Biol Chem. 2017 Nov 3;292(44):18129-18144. doi: 10.1074/jbc.M117.784546. Epub 2017 Sep 11.

Abstract

Lysine acetylation is a widespread posttranslational modification affecting many biological pathways. Recent studies indicate that acetylated lysine residues mainly exhibit low acetylation occupancy, but challenges in sample preparation and analysis make it difficult to confidently assign these numbers, limiting understanding of their biological significance. Here, we tested three common sample preparation methods to determine their suitability for assessing acetylation stoichiometry in three human cell lines, identifying the acetylation occupancy in more than 1,300 proteins from each cell line. The stoichiometric analysis in combination with quantitative proteomics also enabled us to explore their functional roles. We found that higher abundance of the deacetylase sirtuin 1 (SIRT1) correlated with lower acetylation occupancy and lower levels of ribosomal proteins, including those involved in ribosome biogenesis and rRNA processing. Treatment with the SIRT1 inhibitor EX-527 confirmed SIRT1's role in the regulation of pre-rRNA synthesis and processing. Specifically, proteins involved in pre-rRNA transcription, including subunits of the polymerase I and SL1 complexes and the RNA polymerase I-specific transcription initiation factor RRN3, were up-regulated after SIRT1 inhibition. Moreover, many protein effectors and regulators of pre-rRNA processing needed for rRNA maturation were also up-regulated after EX-527 treatment with the outcome that pre-rRNA and 28S rRNA levels also increased. More generally, we found that SIRT1 inhibition down-regulates metabolic pathways, including glycolysis and pyruvate metabolism. Together, these results provide the largest data set thus far of lysine acetylation stoichiometry (available via ProteomeXchange with identifier PXD005903) and set the stage for further biological investigations of this central posttranslational modification.

摘要

赖氨酸乙酰化是一种广泛存在的翻译后修饰,影响着许多生物途径。最近的研究表明,乙酰化赖氨酸残基主要表现出低乙酰化占有率,但样品制备和分析方面的挑战使得难以可靠地确定这些数值,限制了对其生物学意义的理解。在这里,我们测试了三种常见的样品制备方法,以确定它们在三种人类细胞系中评估乙酰化化学计量的适用性,鉴定了每个细胞系中1300多种蛋白质的乙酰化占有率。化学计量分析与定量蛋白质组学相结合还使我们能够探索它们的功能作用。我们发现,去乙酰化酶沉默调节蛋白1(SIRT1)的丰度较高与较低的乙酰化占有率以及核糖体蛋白水平较低相关,包括那些参与核糖体生物合成和rRNA加工的蛋白。用SIRT1抑制剂EX-527处理证实了SIRT1在调节前体rRNA合成和加工中的作用。具体而言,参与前体rRNA转录的蛋白质,包括聚合酶I和SL1复合物的亚基以及RNA聚合酶I特异性转录起始因子RRN3,在SIRT1抑制后上调。此外,rRNA成熟所需的许多前体rRNA加工的蛋白质效应器和调节因子在EX-527处理后也上调,结果前体rRNA和28S rRNA水平也增加。更普遍地说,我们发现SIRT1抑制下调了包括糖酵解和丙酮酸代谢在内的代谢途径。总之,这些结果提供了迄今为止最大的赖氨酸乙酰化化学计量数据集(可通过ProteomeXchange获得,标识符为PXD005903),为进一步对这种核心翻译后修饰进行生物学研究奠定了基础。

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