首页> 美国卫生研究院文献>Molecular Cellular Proteomics : MCP >Identification of O-Linked N-Acetylglucosamine (O-GlcNAc)-modified Osteoblast Proteins by Electron Transfer Dissociation Tandem Mass Spectrometry Reveals Proteins Critical for Bone Formation
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Identification of O-Linked N-Acetylglucosamine (O-GlcNAc)-modified Osteoblast Proteins by Electron Transfer Dissociation Tandem Mass Spectrometry Reveals Proteins Critical for Bone Formation

机译:通过电子转移解离串联质谱鉴定O链N-乙酰氨基葡萄糖(O-GlcNAc)修饰的成骨细胞蛋白揭示了骨形成关键蛋白

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摘要

The nutrient-responsive β-O-linked N-acetylglucosamine (O-GlcNAc) modification of critical effector proteins modulates signaling and transcriptional pathways contributing to cellular development and survival. An elevation in global protein O-GlcNAc modification occurs during the early stages of osteoblast differentiation and correlates with enhanced transcriptional activity of RUNX2, a key regulator of osteogenesis. To identify other substrates of O-GlcNAc transferase in differentiating MC3T3E1 osteoblasts, O-GlcNAc-modified peptides were enriched by wheat germ agglutinin lectin weak affinity chromatography and identified by tandem mass spectrometry using electron transfer dissociation. This peptide fragmentation approach leaves the labile O-linkage intact permitting direct identification of O-GlcNAc-modified peptides. O-GlcNAc modification was observed on enzymes involved in post-translational regulation, including MAST4 and WNK1 kinases, a ubiquitin-associated protein (UBAP2l), and the histone acetyltransferase CREB-binding protein. CREB-binding protein, a transcriptional co-activator that associates with CREB and RUNX2, is O-GlcNAcylated at Ser-147 and Ser-2360, the latter of which is a known site of phosphorylation. Additionally, O-GlcNAcylation of components of the TGFβ-activated kinase 1 (TAK1) signaling complex, TAB1 and TAB2, occurred in close proximity to known sites of Ser/Thr phosphorylation and a putative nuclear localization sequence within TAB2. These findings demonstrate the presence of O-GlcNAc modification on proteins critical to bone formation, remodeling, and fracture healing and will enable evaluation of this modification on protein function and regulation.
机译:关键效应蛋白的营养响应性β-O联结N-乙酰氨基葡萄糖(O-GlcNAc)修饰可调节信号传导和转录途径,从而促进细胞发育和存活。整体蛋白O-GlcNAc修饰的升高发生在成骨细胞分化的早期,并且与成骨的关键调节因子RUNX2的转录活性增强相关。为了在分化MC3T3E1成骨细胞中鉴定O-GlcNAc转移酶的其他底物,O-GlcNAc修饰的肽通过小麦胚芽凝集素凝集素弱亲和色谱进行了富集,并通过串联质谱法使用电子转移解离进行了鉴定。这种肽片段化方法使完整的不稳定O链保持完整,从而可以直接鉴定O-GlcNAc修饰的肽。在参与翻译后调节的酶上观察到O-GlcNAc修饰,包括MAST4和WNK1激酶,泛素相关蛋白(UBAP21)和组蛋白乙酰转移酶CREB结合蛋白。 CREB结合蛋白是与CREB和RUNX2相关的转录共激活因子,在Ser-147和Ser-2360处被O-GlcNAcy酰化,后者是磷酸化的已知位点。此外,TGFβ活化激酶1(TAK1)信号复合物TAB1和TAB2的组分的O-GlcNAcylation紧邻已知的Ser / Thr磷酸化位点和TAB2内的假定核定位序列。这些发现证明了O-GlcNAc修饰对骨形成,重塑和骨折愈合至关重要的蛋白质的存在,并将能够评估这种修饰对蛋白质功能和调控的作用。

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