Metabolic cross-talk allows labeling of O-linked β-N-acetylglucosamine-modified proteins via the N-acetylgalactosamine salvage pathway

被引:255
作者
Boyce, Michael [1 ]
Carrico, Isaac S. [1 ,5 ]
Ganguli, Anjali S. [1 ]
Yu, Seok-Ho [6 ]
Hangauer, Matthew J. [1 ,7 ]
Hubbard, Sarah C. [1 ]
Kohler, Jennifer J. [6 ]
Bertozzi, Carolyn R. [1 ,2 ,3 ,4 ]
机构
[1] Univ Calif Berkeley, Dept Chem, Berkeley, CA 94720 USA
[2] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA
[3] Univ Calif Berkeley, Howard Hughes Med Inst, Berkeley, CA 94720 USA
[4] Univ Calif Berkeley, Lawrence Berkeley Lab, Mol Foundry, Div Mat Sci, Berkeley, CA 94720 USA
[5] SUNY Stony Brook, Dept Chem, Stony Brook, NY 11794 USA
[6] Univ Texas SW Med Ctr Dallas, Div Translat Res, Dept Internal Med, Dallas, TX 75390 USA
[7] Univ Calif San Francisco, Dept Microbiol & Immunol, San Francisco, CA 94143 USA
基金
美国国家卫生研究院;
关键词
GLCNAC TRANSFERASE; UDP-GLCNAC; IN-VIVO; CYTOSOLIC PROTEINS; MOLECULAR-CLONING; DEFICIENT MUTANT; GLYCOSYLATION; NUCLEAR; PHOSPHORYLATION; EXPRESSION;
D O I
10.1073/pnas.1010045108
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Hundreds of mammalian nuclear and cytoplasmic proteins are reversibly glycosylated by O-linked beta-N-acetylglucosamine (O-GlcNAc) to regulate their function, localization, and stability. Despite its broad functional significance, the dynamic and posttranslational nature of O-GlcNAc signaling makes it challenging to study using traditional molecular and cell biological techniques alone. Here, we report that metabolic cross-talk between the N-acetylgalactosamine salvage and O-GlcNAcylation pathways can be exploited for the tagging and identification of O-GlcNAcylated proteins. We found that N-azidoacetylgalactosamine (GalNAz) is converted by endogenous mammalian biosynthetic enzymes to UDP-GalNAz and then epimerized to UDP-N-azidoacetylglucosamine (GlcNAz). O-GlcNAc transferase accepts UDP-GlcNAz as a nucleotide-sugar donor, appending an azidosugar onto its native substrates, which can then be detected by covalent labeling using azide-reactive chemical probes. In a proof-of-principle proteomics experiment, we used metabolic GalNAz labeling of human cells and a bioorthogonal chemical probe to affinity-purify and identify numerous O-GlcNAcylated proteins. Our work provides a blueprint for a wide variety of future chemical approaches to identify, visualize, and characterize dynamic O-GlcNAc signaling.
引用
收藏
页码:3141 / 3146
页数:6
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