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1.
Bioconjug Chem ; 18(3): 806-14, 2007.
Artículo en Inglés | MEDLINE | ID: mdl-17370997

RESUMEN

The mutant beta1,4-galactosyltransferase (beta4Gal-T1), beta4Gal-T1-Y289L, in contrast to wild-type beta4Gal-T1, can transfer GalNAc from the sugar donor UDP-GalNAc to the acceptor, GlcNAc, with efficiency as good as that of galactose from UDP-Gal. Furthermore, the mutant can also transfer a modified sugar, C2 keto galactose, from its UDP derivative to O-GlcNAc modification on proteins that provided a functional handle for developing a highly sensitive chemoenzymatic method for detecting O-GlcNAc post-translational modification on proteins. We report herein that the modified sugar, C2 keto galactose, can be transferred to free GlcNAc residues on N-linked glycoproteins, such as ovalbumin or asialo-agalacto IgG1. The transfer is strictly dependent on the presence of both the mutant enzyme and the ketone derivative of the galactose. Moreover, the PNGase F treatment of the glycoproteins, which cleaves the N-linked oligosaccharide chain, shows that the modified sugar has been transferred to the N-glycan chains of the glycoproteins and not to the protein portion. The application of the mutant galactosyltransferase, beta4Gal-T1-Y289L, to produce glycoconjugates carrying sugar moieties with reactive groups, is demonstrated. We envision a broad potential for this technology such as the possibilities to link cargo molecules to glycoproteins, such as monoclonal antibodies, via glycan chains, thereby assisting in the glycotargeting of drugs to the site of action or used as biological probes.


Asunto(s)
Acetilglucosamina/análisis , Galactosa/química , Galactosiltransferasas/química , Glicoconjugados/biosíntesis , Glicoproteínas/química , Polisacáridos/química , Animales , Biotinilación , Galactosiltransferasas/genética , Glicoconjugados/química , Inmunoglobulina G/química , Cetosas/química , Mutación , Ovalbúmina/química , Oxidación-Reducción , Péptidos/química , Espectrometría de Masa por Láser de Matriz Asistida de Ionización Desorción
2.
Nat Chem Biol ; 3(6): 339-48, 2007 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-17496889

RESUMEN

The addition of the monosaccharide beta-N-acetyl-D-glucosamine to proteins (O-GlcNAc glycosylation) is an intracellular, post-translational modification that shares features with phosphorylation. Understanding the cellular mechanisms and signaling pathways that regulate O-GlcNAc glycosylation has been challenging because of the difficulty of detecting and quantifying the modification. Here, we describe a new strategy for monitoring the dynamics of O-GlcNAc glycosylation using quantitative mass spectrometry-based proteomics. Our method, which we have termed quantitative isotopic and chemoenzymatic tagging (QUIC-Tag), combines selective, chemoenzymatic tagging of O-GlcNAc proteins with an efficient isotopic labeling strategy. Using the method, we detect changes in O-GlcNAc glycosylation on several proteins involved in the regulation of transcription and mRNA translocation. We also provide the first evidence that O-GlcNAc glycosylation is dynamically modulated by excitatory stimulation of the brain in vivo. Finally, we use electron-transfer dissociation mass spectrometry to identify exact sites of O-GlcNAc modification. Together, our studies suggest that O-GlcNAc glycosylation occurs reversibly in neurons and, akin to phosphorylation, may have important roles in mediating the communication between neurons.


Asunto(s)
Acetilglucosamina/metabolismo , Encéfalo/metabolismo , Glicoproteínas/biosíntesis , Proteoma , Acetilglucosamina/química , Animales , Conformación de Carbohidratos , Glicoproteínas/genética , Glicosilación , Cinética , Mamíferos , Modelos Moleculares , Proteínas del Tejido Nervioso/química , Proteínas del Tejido Nervioso/metabolismo , Péptidos/química , Procesamiento Proteico-Postraduccional
3.
Org Biomol Chem ; 2(1): 1-7, 2004 Jan 07.
Artículo en Inglés | MEDLINE | ID: mdl-14737652

RESUMEN

Proteins undergo a remarkable variety of posttranslational modifications, with more than 200 distinct modifications identified to date. Increasing evidence suggests that many proteins bear multiple, distinct modifications, and the ability of one modification to antagonize or synergize the deposition of another can have significant biological consequences. Here, we illustrate the importance of posttranslational modifications within the context of transcriptional regulation, and we offer a perspective on the emerging role of combinatorial networks of modifications. Finally, we discuss the potential for chemical approaches to transform our understanding of the field.


Asunto(s)
Proteínas Nucleares/metabolismo , Procesamiento Proteico-Postraduccional , Transcripción Genética , Secuencia de Aminoácidos , Animales , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/química , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/fisiología , Histonas/química , Datos de Secuencia Molecular , Proteínas Nucleares/química , Proteínas Nucleares/fisiología , Conformación Proteica , ARN Polimerasa II/química , Proteína p53 Supresora de Tumor/química , Proteína p53 Supresora de Tumor/fisiología
4.
Proc Natl Acad Sci U S A ; 101(36): 13132-7, 2004 Sep 07.
Artículo en Inglés | MEDLINE | ID: mdl-15340146

RESUMEN

The covalent modification of intracellular proteins by O-linked beta-N-acetylglucosamine (O-GlcNAc) is emerging as a crucial regulatory posttranslational modification akin to phosphorylation. Numerous studies point to the significance of O-GlcNAc in cellular processes such as nutrient sensing, protein degradation, and gene expression. Despite its importance, the breadth and functional roles of O-GlcNAc are only beginning to be elucidated. Advances in our understanding will require the development of new strategies for the detection and study of O-GlcNAc-modified proteins in vivo. Herein we report the direct, high-throughput analysis of O-GlcNAc-glycosylated proteins from the mammalian brain. The proteins were identified by using a chemoenzymatic approach that exploits an engineered galactosyltransferase enzyme to selectively label O-GlcNAc proteins with a ketone-biotin tag. The tag permits enrichment of low-abundance O-GlcNAc species from complex mixtures and localization of the modification to short amino acid sequences. Using this approach, we discovered 25 O-GlcNAc-glycosylated proteins from the brain, including regulatory proteins associated with gene expression, neuronal signaling, and synaptic plasticity. The functional diversity represented by this set of proteins suggests an expanded role for O-GlcNAc in regulating neuronal function. Moreover, the chemoenzymatic strategy described here should prove valuable for identifying O-GlcNAc-modified proteins in various tissues and facilitate studies of the physiological significance of O-GlcNAc across the proteome.


Asunto(s)
Acetilglucosamina/metabolismo , Química Encefálica , Procesamiento Proteico-Postraduccional , Proteoma , Secuencia de Aminoácidos , Animales , Bovinos , Glicosilación , Datos de Secuencia Molecular , Ratas , Ratas Sprague-Dawley , Cadena A de alfa-Cristalina/química
5.
J Am Chem Soc ; 126(34): 10500-1, 2004 Sep 01.
Artículo en Inglés | MEDLINE | ID: mdl-15327282

RESUMEN

We report a new strategy for the parallel identification of O-GlcNAc-glycosylated proteins from cell lysates. The approach permits specific proteins of interest to be rapidly interrogated for the modification in any tissue or cell type and can be extended to peptides to facilitate the mapping of glycosylation sites. As an illustration of the approach, we identified four new O-GlcNAc-glycosylated proteins of low cellular abundance (c-Fos, c-Jun, ATF-1, and CBP) and two short regions of glycosylation in the enzyme O-GlcNAc transferase (OGT). The ability to target specific proteins across various tissue or cell types complements emerging proteomic technologies and should advance our understanding of this important posttranslational modification.


Asunto(s)
Acetilglucosamina/metabolismo , Factores de Transcripción/metabolismo , Acetilglucosamina/química , Factor de Transcripción Activador 1 , Secuencia de Aminoácidos , Proteína de Unión a CREB , Proteínas de Unión al ADN/química , Proteínas de Unión al ADN/metabolismo , Glicosilación , Células HeLa , Humanos , Espectrometría de Masas , Datos de Secuencia Molecular , N-Acetilglucosaminiltransferasas/química , N-Acetilglucosaminiltransferasas/metabolismo , Proteínas Nucleares/química , Proteínas Nucleares/metabolismo , Proteínas Proto-Oncogénicas c-fos/química , Proteínas Proto-Oncogénicas c-fos/metabolismo , Proteínas Proto-Oncogénicas c-jun/química , Proteínas Proto-Oncogénicas c-jun/metabolismo , Transactivadores/química , Transactivadores/metabolismo , Factores de Transcripción/química
6.
J Am Chem Soc ; 125(52): 16162-3, 2003 Dec 31.
Artículo en Inglés | MEDLINE | ID: mdl-14692737

RESUMEN

We report a new chemoenzymatic strategy for the rapid and sensitive detection of O-GlcNAc posttranslational modifications. The approach exploits the ability of an engineered mutant of beta-1,4-galactosyltransferase to selectively transfer an unnatural ketone functionality onto O-GlcNAc glycosylated proteins. Once transferred, the ketone moiety serves as a versatile handle for the attachment of biotin, thereby enabling chemiluminescent detection of the modified protein. Importantly, this approach permits the rapid visualization of proteins that are at the limits of detection using traditional methods. Moreover, it bypasses the need for radioactive precursors and captures the glycosylated species without perturbing metabolic pathways. We anticipate that this general chemoenzymatic strategy will have broad application to the study of posttranslational modifications.


Asunto(s)
Acetilglucosamina/metabolismo , Glicoproteínas/metabolismo , N-Acetil-Lactosamina Sintasa/metabolismo , Acetilglucosamina/análisis , Animales , Proteínas Bacterianas/química , Proteínas Bacterianas/metabolismo , Biotina , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/análisis , Proteína de Unión a Elemento de Respuesta al AMP Cíclico/metabolismo , Glicoproteínas/análisis , Glicosilación , Peroxidasa de Rábano Silvestre/química , Peroxidasa de Rábano Silvestre/metabolismo , Mediciones Luminiscentes , N-Acetil-Lactosamina Sintasa/química , alfa-Cristalinas/análisis , alfa-Cristalinas/metabolismo
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