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Sumoylation of heterogeneous nuclear ribonucleoproteins, zinc finger proteins, and nuclear pore complex proteins: A proteomic analysis

机译:异种核糖核糖核蛋白,锌指蛋白和核孔复合蛋白的糖基化:蛋白质组学分析

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摘要

SUMO, a small ubiquitin-related modifier, is known to covalently attach to a number of nuclear regulatory proteins such as p53, IκB, promyelocytic leukemia protein and c-Jun. The sumoylation reaction is catalyzed by the SUMO protease, which exposes the C-terminal active glycine residue of the nascent SUMO, the heterodimeric SUMO activating enzyme, the SUMO conjugating enzyme, Ubc9, and SUMO protein ligases, in a manner similar to ubiquitinylation. Identification of SUMO-regulated proteins is hampered by the fact that many sumoylated proteins are present at a level below normal detection limit. This limitation was overcome by either in vivo overexpression of Myc-SUMO or in vitro sumoylation with excess biotin–SUMO and Ubc9. Sumoylated proteins so obtained were affinity purified or isolated by immunoprecipitation. The isolated sumoylated proteins were identified by sequence analysis using mass spectrometric methods. Results reveal that several heterogeneous nuclear ribonucleoproteins (hnRNPs), zinc finger proteins, and nuclear pore complex proteins were sumoylated. The sumoylation of hnRNP A1, hnRNP F, and hnRNP K were confirmed in vivo by coimmunoprecipitation. In view of the facts that hnRNPs have been implicated in RNA splicing, transport, stability, and translation, our findings suggest that sumoylation could play an important role in regulating mRNA metabolism.
机译:SUMO是一种与泛素相关的小修饰剂,已知可以共价附于许多核调节蛋白,例如p53,IκB,早幼粒细胞白血病蛋白和c-Jun。 SUMO蛋白酶催化SUMO化反应,该酶以类似于泛素化的方式暴露新生SUMO的C端活性甘氨酸残基,异二聚体SUMO活化酶,SUMO偶联酶,Ubc9和SUMO蛋白连接酶。 SUMO调节蛋白的鉴定受到以下事实的困扰:许多磺酰化蛋白的含量低于正常检测极限。通过体内过量表达Myc-SUMO或用过量生物素SUMO和Ubc9进行体外磺酰化可以克服这一限制。如此获得的糖基化蛋白通过免疫沉淀亲和纯化或分离。分离的磺酰化蛋白通过使用质谱法的序列分析来鉴定。结果表明,几种异质核核糖核蛋白(hnRNPs),锌指蛋白和核孔复合蛋白被sumoylated。体内通过共免疫沉淀法确认了hnRNP A1,hnRNP F和hnRNP K的磺酰化作用。鉴于hnRNPs已参与RNA剪接,转运,稳定性和翻译的事实,我们的发现表明,sumoylation可能在调节mRNA代谢中起重要作用。

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