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1.
Adv Sci (Weinh) ; 11(8): e2305608, 2024 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-38095542

RESUMO

As a vital project of forward chemical genetic research, target deconvolution aims to identify the molecular targets of an active hit compound. Chemoproteomics, either with chemical probe-facilitated target enrichment or probe-free, provides a straightforward and effective approach to profile the target landscape and unravel the mechanisms of action. Canonical methods rely on chemical probes to enable target engagement, enrichment, and identification, whereas click chemistry and photoaffinity labeling techniques improve the efficiency, sensitivity, and spatial accuracy of target recognition. In comparison, recently developed probe-free methods detect protein-ligand interactions without the need to modify the ligand molecule. This review provides a comprehensive overview of different approaches and recent advancements for target identification and highlights the significance of chemoproteomics in investigating biological processes and advancing drug discovery processes.


Assuntos
Descoberta de Drogas , Marcadores de Fotoafinidade , Ligantes , Descoberta de Drogas/métodos , Marcadores de Fotoafinidade/química , Química Click
2.
Nat Commun ; 14(1): 8016, 2023 Dec 04.
Artigo em Inglês | MEDLINE | ID: mdl-38049406

RESUMO

Understanding how small molecules bind to specific protein complexes in living cells is critical to understanding their mechanism-of-action. Unbiased chemical biology strategies for direct readout of protein interactome remodelling by small molecules would provide advantages over target-focused approaches, including the ability to detect previously unknown ligand targets and complexes. However, there are few current methods for unbiased profiling of small molecule interactomes. To address this, we envisioned a technology that would combine the sensitivity and live-cell compatibility of proximity labelling coupled to mass spectrometry, with the specificity and unbiased nature of chemoproteomics. In this manuscript, we describe the BioTAC system, a small-molecule guided proximity labelling platform that can rapidly identify both direct and complexed small molecule binding proteins. We benchmark the system against µMap, photoaffinity labelling, affinity purification coupled to mass spectrometry and proximity labelling coupled to mass spectrometry datasets. We also apply the BioTAC system to provide interactome maps of Trametinib and analogues. The BioTAC system overcomes a limitation of current approaches and supports identification of both inhibitor bound and molecular glue bound complexes.


Assuntos
Biotina , Proteínas , Proteínas/metabolismo , Cromatografia de Afinidade , Espectrometria de Massas/métodos , Marcadores de Fotoafinidade/química
3.
Bioconjug Chem ; 34(12): 2181-2186, 2023 12 20.
Artigo em Inglês | MEDLINE | ID: mdl-38052453

RESUMO

Target identification studies are a major hurdle in probe and drug discovery pipelines due to the need to chemically modify small molecules of interest, which can be time intensive and have low throughput. Here, we describe a versatile and scalable method for attaching chemical moieties to a small molecule, isocyanate-mediated chemical tagging (IMCT). By preparation of a template resin with an isocyanate capture group and a cleavable linker, nucleophilic groups on small molecules can be modified with an enforced one-to-one stoichiometry. We demonstrate a small molecule substrate scope that includes primary and secondary amines, thiols, phenols, benzyl alcohols, and primary alcohols. Cheminformatic analyses predict that IMCT is reactive with more than 25% of lead-like compounds in publicly available databases. To demonstrate that the method can produce biologically active molecules, we generated FKBP12 photoaffinity labeling (PAL) compounds with a wide range of affinities and showed that purified and crude cleavage products can bind to and label FKBP12. This method could be used to rapidly modify small molecules for many applications, including the synthesis of PAL probes, fluorescence polarization probes, pull-down probes, and degraders.


Assuntos
Isocianatos , Proteína 1A de Ligação a Tacrolimo , Descoberta de Drogas , Compostos de Sulfidrila , Marcadores de Fotoafinidade/química
4.
Angew Chem Int Ed Engl ; 62(49): e202314248, 2023 12 04.
Artigo em Inglês | MEDLINE | ID: mdl-37847865

RESUMO

Glycan recognition by glycan-binding proteins is central to the biology of all living organisms. The efficient capture and characterization of relatively weak non-covalent interactions remains an important challenge in various fields of research. Photoaffinity labeling strategies can create covalent bonds between interacting partners, and photoactive scaffolds such as benzophenone, diazirines and aryl azides have proved widely useful. Since their first introduction, relatively few improvements have been advanced and products of photoaffinity labeling remain difficult to detect. We report a fluorinated azido-coumarin scaffold which enables photolabeling under fast and mild activation, and which can leave a fluorescent tag on crosslinked species. Coupling this scaffold to an α-fucoside, we demonstrate fluorogenic photolabeling of glycan-protein interactions over a wide range of affinities. We expect this strategy to be broadly applicable to other chromophores and we envision that such "fluoro-crosslinkers" could become important tools for the traceable capture of non-covalent binding events.


Assuntos
Proteínas de Transporte , Proteínas , Proteínas/química , Marcadores de Fotoafinidade/química , Cumarínicos , Azidas/metabolismo , Polissacarídeos
5.
Nat Chem ; 15(9): 1267-1275, 2023 09.
Artigo em Inglês | MEDLINE | ID: mdl-37322100

RESUMO

Target identification involves deconvoluting the protein target of a pharmacologically active, small-molecule ligand, a process that is critical for early drug discovery yet technically challenging. Photoaffinity labelling strategies have become the benchmark for small-molecule target deconvolution, but covalent protein capture requires the use of high-energy ultraviolet light, which can complicate downstream target identification. Thus, there is a strong demand for alternative technologies that allow for controlled activation of chemical probes to covalently label their protein target. Here we introduce an electroaffinity labelling platform that leverages the use of a small, redox-active diazetidinone functional group to enable chemoproteomic-based target identification of pharmacophores within live cell environments. The underlying discovery to enable this platform is that the diazetidinone can be electrochemically oxidized to reveal a reactive intermediate useful for covalent modification of proteins. This work demonstrates the electrochemical platform to be a functional tool for drug-target identification.


Assuntos
Descoberta de Drogas , Proteínas , Proteínas/metabolismo , Marcadores de Fotoafinidade/química , Ligantes , Farmacóforo
6.
ACS Chem Biol ; 18(4): 686-692, 2023 04 21.
Artigo em Inglês | MEDLINE | ID: mdl-36920024

RESUMO

Aspartic proteases are a small class of proteases implicated in a wide variety of human diseases. Covalent chemical probes for photoaffinity labeling (PAL) of these proteases are underdeveloped. We here report a full on-resin synthesis of clickable PAL probes based on the natural product inhibitor pepstatin incorporating a minimal diazirine reactive group. The position of this group in the inhibitor determines the labeling efficiency. The most effective probes sensitively detect cathepsin D, a biomarker for breast cancer, in cell lysates. Moreover, through chemical proteomics experiments and deep learning algorithms, we identified sequestosome-1, an important player in autophagy, as a direct interaction partner and substrate of cathepsin D.


Assuntos
Ácido Aspártico Endopeptidases , Catepsina D , Pepstatinas , Marcadores de Fotoafinidade , Humanos , Ácido Aspártico Endopeptidases/química , Catepsina D/química , Diazometano , Pepstatinas/química , Pepstatinas/farmacologia , Marcadores de Fotoafinidade/química , Proteína Sequestossoma-1/química
7.
Molecules ; 28(3)2023 Feb 01.
Artigo em Inglês | MEDLINE | ID: mdl-36771073

RESUMO

In materials (polymer) science and medicinal chemistry, heteroaromatic derivatives play the role of the central skeleton in development of novel devices and discovery of new drugs. On the other hand, (3-trifluoromethyl)phenyldiazirine (TPD) is a crucial chemical method for understanding biological processes such as ligand-receptor, nucleic acid-protein, lipid-protein, and protein-protein interactions. In particular, use of TPD has increased in recent materials science to create novel electric and polymer devices with comparative ease and reduced costs. Therefore, a combination of heteroaromatics and (3-trifluoromethyl)diazirine is a promising option for creating better materials and elucidating the unknown mechanisms of action of bioactive heteroaromatic compounds. In this review, a comprehensive synthesis of (3-trifluoromethyl)diazirine-substituted heteroaromatics is described.


Assuntos
Ácidos Nucleicos , Marcadores de Fotoafinidade , Marcadores de Fotoafinidade/química , Diazometano/química , Química Farmacêutica , Proteínas/química
8.
J Am Chem Soc ; 144(46): 21174-21183, 2022 11 23.
Artigo em Inglês | MEDLINE | ID: mdl-36350779

RESUMO

Alkyl diazirines are frequently used in photoaffinity labeling to map small molecule-protein interactions in target identification studies. However, the alkyl diazirines can preferentially label acidic amino acids and acidic protein surfaces in a pH-dependent manner, presumably via a reactive alkyl diazo intermediate. Here, we explore the use of ring strain to alter these reactivity preferences and report the development of a cyclobutane diazirine photoaffinity tag with reduced pH-dependent reactivity, termed PALBOX. We show that PALBOX possesses differential reactivity profiles as compared to other diazirine tags in vitro and is readily incorporated into small molecules to profile their binding interactions in cells. Using a set of small molecule fragments and ligands, we show that photoaffinity probes equipped with PALBOX can label the known protein targets in cells with reduced labeling of known alkyl diazirine off-targets. Finally, we demonstrate that ligands equipped with PALBOX can accurately map small molecule-protein binding sites. Thus, PALBOX is a versatile diazirine-based photoaffinity tag for use in the development of chemical probes for photoaffinity labeling experiments, including the study of small molecule-protein interactions.


Assuntos
Ciclobutanos , Diazometano , Diazometano/química , Alcinos , Marcadores de Fotoafinidade/química , Ligantes , Proteínas de Membrana
9.
Angew Chem Int Ed Engl ; 61(47): e202209947, 2022 11 21.
Artigo em Inglês | MEDLINE | ID: mdl-36151600

RESUMO

Photoaffinity labeling is a powerful technique to interrogate drug-protein interactions in native cellular environments. Photo-cross-linkers are instrumental for this technique. However, the introduction of unnatural photo-cross-linkers may significantly reduce the bioactivity of the drug, thus impairing the chemoproteomic outcomes. Herein, we developed a common pharmacophore, isoxazole, into a natively embedded photo-cross-linker for chemoproteomics, which minimally perturbs the drug structure. The photo-cross-linking reactions of the isoxazole were thoroughly investigated for the first time. Functionalized isoxazoles were then designed and applied to protein labeling, demonstrating the superior photo-cross-linking efficiency. Subsequently, two isoxazole-based drugs, Danazol and Luminespib, were employed in chemoproteomic studies, revealing their potential cellular targets. These results provide valuable strategies for future chemoproteomic study and drug development.


Assuntos
Marcadores de Fotoafinidade , Proteínas , Marcadores de Fotoafinidade/química , Proteínas/química , Isoxazóis , Reagentes de Ligações Cruzadas/química
10.
Bioorg Med Chem ; 62: 116721, 2022 05 15.
Artigo em Inglês | MEDLINE | ID: mdl-35358862

RESUMO

Small molecules remain an important category of therapeutic agents. Their binding to different proteins can lead to both desired and undesired biological effects. Identification of the proteins that a drug binds to has become an important step in drug development because it can lead to safer and more effective drugs. Parent bioactive molecules can be converted to appropriate probes that allow for visualization and identification of their target proteins. Typically, these probes are designed and synthesized utilizing some or all of five major tools; a photoactivatable group, a reporter tag, a linker, an affinity tag, and a bioorthogonal handle. This review covers two of the most challenging tools, photoactivation and bioorthogonal ligation. We provide a historical and theoretical background along with synthetic routes to prepare them. In addition, the review provides comparative analyses of the available tools that can assist decision making when designing such probes. A survey of most recent literature reports is included as well to identify recent trends in the field.


Assuntos
Marcadores de Fotoafinidade , Proteínas , Animais , Marcadores de Fotoafinidade/química , Proteínas/química
11.
Cell Chem Biol ; 29(1): 133-144.e20, 2022 01 20.
Artigo em Inglês | MEDLINE | ID: mdl-34478637

RESUMO

2'3'-cyclic GMP-AMP (2'3'-cGAMP), generated by cyclic GMP-AMP synthase (cGAS) under activation by cytosolic DNA, has a vital role in innate immune response via its receptor protein stimulator of interferon genes (STING) to fight viral infections and tumors. In order to have a complete understanding of biological functions of 2'3'-cGAMP, it is important to find out whether 2'3'-cGAMP has other unrevealed binding proteins present in mammalian cells and executes unknown functions. Here we report the 2'3'-cGAMP-based photoaffinity probes that capture and isolate 2'3'-cGAMP-binding proteins. These probes enable the identification of some potential 2'3'-cGAMP-binding proteins from HeLa cells. EF1A1, an essential protein regulating protein synthesis, is further validated to associate with 2'3'-cGAMP in vitro and in cells to impede protein synthesis. Thus, our studies provide a powerful approach to enable identification of the 2'3'-cGAMP interactome, discover unknown functions of 2'3'-cGAMP, and understand its physiological/pathological roles in tumor immunity and immune-related diseases.


Assuntos
Nucleotídeos Cíclicos/química , Fator 1 de Elongação de Peptídeos/análise , Marcadores de Fotoafinidade/química , Linhagem Celular , Humanos , Estrutura Molecular , Nucleotídeos Cíclicos/imunologia , Fator 1 de Elongação de Peptídeos/imunologia
12.
Nat Commun ; 12(1): 5808, 2021 10 04.
Artigo em Inglês | MEDLINE | ID: mdl-34608152

RESUMO

The nucleotides diadenosine triphosphate (Ap3A) and diadenosine tetraphosphate (Ap4A) are formed in prokaryotic and eukaryotic cells. Since their concentrations increase significantly upon cellular stress, they are considered to be alarmones triggering stress adaptive processes. However, their cellular roles remain elusive. To elucidate the proteome-wide interactome of Ap3A and Ap4A and thereby gain insights into their cellular roles, we herein report the development of photoaffinity-labeling probes and their employment in chemical proteomics. We demonstrate that the identified ApnA interactors are involved in many fundamental cellular processes including carboxylic acid and nucleotide metabolism, gene expression, various regulatory processes and cellular response mechanisms and only around half of them are known nucleotide interactors. Our results highlight common functions of these ApnAs across the domains of life, but also identify those that are different for Ap3A or Ap4A. This study provides a rich source for further functional studies of these nucleotides and depicts useful tools for characterization of their regulatory mechanisms in cells.


Assuntos
Fosfatos de Dinucleosídeos/metabolismo , Proteômica , Trifosfato de Adenosina/metabolismo , Fosfatos de Dinucleosídeos/química , Endorribonucleases/metabolismo , Escherichia coli/metabolismo , Proteínas de Escherichia coli/metabolismo , Células HEK293 , Humanos , L-Lactato Desidrogenase/metabolismo , Fosfoglicerato Quinase/metabolismo , Marcadores de Fotoafinidade/síntese química , Marcadores de Fotoafinidade/química , Marcadores de Fotoafinidade/metabolismo , Ligação Proteica , Enzimas Ativadoras de Ubiquitina/metabolismo
13.
ACS Chem Biol ; 16(8): 1493-1507, 2021 08 20.
Artigo em Inglês | MEDLINE | ID: mdl-34355883

RESUMO

Aliphatic diazirine analogues of cholesterol have been used previously to elaborate the cholesterol proteome and identify cholesterol binding sites on proteins. Cholesterol analogues containing the trifluoromethylphenyl diazirine (TPD) group have not been reported. Both classes of diazirines have been prepared for neurosteroid photolabeling studies and their combined use provided information that was not obtainable with either diazirine class alone. Hence, we prepared cholesterol TPD analogues and used them along with previously reported aliphatic diazirine analogues as photoaffinity labeling reagents to obtain additional information on the cholesterol binding sites of the pentameric Gloeobacter ligand-gated ion channel (GLIC). We first validated the TPD analogues as cholesterol substitutes and compared their actions with those of previously reported aliphatic diazirines in cell culture assays. All the probes bound to the same cholesterol binding site on GLIC but with differences in photolabeling efficiencies and residues identified. Photolabeling of mammalian (HEK) cell membranes demonstrated differences in the pattern of proteins labeled by the two classes of probes. Collectively, these date indicate that cholesterol photoaffinity labeling reagents containing an aliphatic diazirine or TPD group provide complementary information and will both be useful tools in future studies of cholesterol biology.


Assuntos
Colesterol/análogos & derivados , Diazometano/análogos & derivados , Canais Iônicos de Abertura Ativada por Ligante/química , Marcadores de Fotoafinidade/química , Alcinos/síntese química , Alcinos/química , Alcinos/metabolismo , Sítios de Ligação , Colesterol/síntese química , Colesterol/metabolismo , Cianobactérias/química , Diazometano/síntese química , Diazometano/metabolismo , Corantes Fluorescentes/química , Canais Iônicos de Abertura Ativada por Ligante/metabolismo , Simulação de Acoplamento Molecular , Simulação de Dinâmica Molecular , Marcadores de Fotoafinidade/síntese química , Marcadores de Fotoafinidade/metabolismo , Ligação Proteica
14.
Angew Chem Int Ed Engl ; 60(31): 17080-17087, 2021 07 26.
Artigo em Inglês | MEDLINE | ID: mdl-34060195

RESUMO

Here we explored the reactivity of a set of multivalent electrophiles cofunctionalized with a carbohydrate ligand on gold nanoparticles to achieve efficient affinity labeling for target protein analysis. Evaluation of the reactivity and selectivity of the electrophiles against three different cognate binding proteins identified arylsulfonyl fluoride as the most efficient protein-reactive group in this study. We demonstrated that multivalent arylsulfonyl fluoride probe 4 at 50 nm concentration achieved selective affinity labeling and enrichment of a model protein PNA in cell lysate, which was more effective than photoaffinity probe 1 with arylazide group. Labeling site analysis by LC-MS/MS revealed that the nanoparticle-immobilized arylsulfonyl fluoride group can target multiple amino acid residues around the ligand binding site of the target proteins. Our study highlights the utility of arylsulfonyl fluoride as a highly effective multivalent affinity label suitable for covalently capturing unknown target proteins.


Assuntos
Marcadores de Fotoafinidade/química , Proteínas/análise , Ácidos Sulfínicos/química , Cromatografia Líquida , Estrutura Molecular , Espectrometria de Massas em Tandem
15.
J Am Chem Soc ; 143(17): 6691-6700, 2021 05 05.
Artigo em Inglês | MEDLINE | ID: mdl-33876925

RESUMO

Diazirines are widely used in photoaffinity labeling (PAL) to trap noncovalent interactions with biomolecules. However, design and interpretation of PAL experiments is challenging without a molecular understanding of the reactivity of diazirines with protein biomolecules. Herein, we report a systematic evaluation of the labeling preferences of alkyl and aryl diazirines with individual amino acids, single proteins, and in the whole cell proteome. We find that alkyl diazirines exhibit preferential labeling of acidic amino acids in a pH-dependent manner that is characteristic of a reactive alkyl diazo intermediate, while the aryl-fluorodiazirine labeling pattern reflects reaction primarily through a carbene intermediate. From a survey of 32 alkyl diazirine probes, we use this reactivity profile to rationalize why alkyl diazirine probes preferentially enrich highly acidic proteins or those embedded in membranes and why probes with a net positive charge tend to produce higher labeling yields in cells and in vitro. These results indicate that alkyl diazirines are an especially effective chemistry for surveying the membrane proteome and will facilitate design and interpretation of biomolecular labeling experiments with diazirines.


Assuntos
Compostos de Diazônio/química , Marcadores de Fotoafinidade/química , Proteínas/química , Aminoácidos/análise , Aminoácidos/química , Sítios de Ligação , Diazometano/química , Humanos , Concentração de Íons de Hidrogênio , Conformação Proteica , Proteínas/análise , Proteoma/análise , Proteoma/química , Canal de Ânion 1 Dependente de Voltagem/química
16.
Chembiochem ; 22(13): 2206-2218, 2021 07 01.
Artigo em Inglês | MEDLINE | ID: mdl-33544409

RESUMO

Protein kinases, one of the largest enzyme superfamilies, regulate many physiological and pathological processes. They are drug targets for multiple human diseases, including various cancer types. Probes for the photoaffinity labelling of kinases are important research tools for the study of members of this enzyme superfamily. In this review, we discuss the design principles of these probes, which are mainly derived from inhibitors targeting the ATP pocket. Overall, insights from crystal structures guide the placement of photoreactive groups and detection tags. This has resulted in a wide variety of probes, of which we provide a comprehensive overview. We also discuss several areas of application of these probes, including the identification of targets and off-targets of kinase inhibitors, mapping of their binding sites, the development of inhibitor screening assays, the imaging of kinases, and identification of protein binding partners.


Assuntos
Marcadores de Fotoafinidade/química , Proteínas Quinases/química , Sítios de Ligação , Humanos , Proteínas Quinases/metabolismo
17.
Arch Biochem Biophys ; 699: 108751, 2021 03 15.
Artigo em Inglês | MEDLINE | ID: mdl-33421380

RESUMO

Antimicrobial and cell-penetrating peptides have been the object of extensive studies for more than 60 years. Initially these two families were studied separately, and more recently parallels have been drawn. These studies have given rise to numerous methodological developments both in terms of observation techniques and membrane models. This review presents some of the most recent original and innovative developments in this field, namely droplet interface bilayers (DIBs), new fluorescence approaches, force measurements, and photolabelling.


Assuntos
Peptídeos Catiônicos Antimicrobianos/metabolismo , Membrana Celular/metabolismo , Peptídeos Penetradores de Células/metabolismo , Sequência de Aminoácidos , Peptídeos Catiônicos Antimicrobianos/química , Membrana Celular/química , Peptídeos Penetradores de Células/química , Corantes Fluorescentes/química , Bicamadas Lipídicas/química , Bicamadas Lipídicas/metabolismo , Microscopia de Fluorescência/métodos , Marcadores de Fotoafinidade/química , Espectrometria de Fluorescência/métodos
18.
Org Biomol Chem ; 19(6): 1268-1273, 2021 02 18.
Artigo em Inglês | MEDLINE | ID: mdl-33331841

RESUMO

Rapid access to appropriately functionalized probes is crucial in chemical labeling approaches to target identification studies. We designed and synthesized clickable gold-nanoparticles as generic probe precursors that enable (1) one-step ligand derivatization by click chemistry, and (2) facile photoaffinity labeling application. Using cholesterol as a model ligand, we successfully demonstrated the utility of the ligand-clicked probe in photoaffinity labeling of endogenously expressed oxysterol-binding protein (OSBP) in cell lysate.


Assuntos
Nanopartículas Metálicas/química , Marcadores de Fotoafinidade/química , Alcinos/química , Animais , Azidas/química , Anidrase Carbônica II/química , Bovinos , Colesterol/análogos & derivados , Química Click , Ouro/química , Ligantes , Marcadores de Fotoafinidade/síntese química , Marcadores de Fotoafinidade/efeitos da radiação , Receptores de Esteroides/química , Raios Ultravioleta
19.
ACS Chem Biol ; 15(12): 3106-3111, 2020 12 18.
Artigo em Inglês | MEDLINE | ID: mdl-33290055

RESUMO

Inositol-requiring enzyme 1α (IRE1α) is one of three endoplasmic reticulum stress sensors. Upon activation of its kinase domain, IRE1α splices the mRNA substrate XBP1, which activates the unfolded protein response. IRE1α has emerged as a therapeutic target as its hyperactivation is implicated in various diseases. Kinase inhibiting RNase attenuator 6 (KIRA6) is an allosteric IRE1α inhibitor targeting the ATP binding pocket, resulting in effective blockage of the IRE1α-XBP1 pathway in mouse models of diabetes and pain. However, recent studies indicate that KIRA6 is not as selective as initially thought. Here, we developed a photoaffinity-based KIRA6 probe to reveal its selectivity. Surprisingly, the majority of off-targets that we identified were not protein kinases but mostly nucleotide-binding proteins. Furthermore, we found that the promiscuous off-target profile of KIRA6 is not cell-line-dependent. Overall, this study calls for caution when KIRA6 is used in IRE1α-targeted studies and illustrates the power of kinase photoaffinity probes.


Assuntos
Endorribonucleases/antagonistas & inibidores , Imidazóis/farmacologia , Naftalenos/farmacologia , Marcadores de Fotoafinidade/química , Inibidores de Proteínas Quinases/farmacologia , Proteínas Serina-Treonina Quinases/antagonistas & inibidores , Pirazinas/farmacologia , Linhagem Celular , Estresse do Retículo Endoplasmático/efeitos dos fármacos , Humanos , Proteômica , Transdução de Sinais/efeitos dos fármacos , Resposta a Proteínas não Dobradas/efeitos dos fármacos
20.
J Am Chem Soc ; 142(32): 13672-13676, 2020 08 12.
Artigo em Inglês | MEDLINE | ID: mdl-32786811

RESUMO

Glycosaminoglycan (GAG)-protein interactions mediate critical physiological and pathological processes, such as neuronal plasticity, development, and viral invasion. However, mapping GAG-protein interaction networks is challenging as these interactions often require specific GAG sulfation patterns and involve transmembrane receptors or extracellular matrix-associated proteins. Here, we report the first GAG polysaccharide-based photoaffinity probes for the system-wide identification of GAG-binding proteins in living cells. A general platform for the modular, efficient assembly of various chondroitin sulfate (CS)-based photoaffinity probes was developed. Systematic evaluations led to benzophenone-containing probes that efficiently and selectively captured known CS-E-binding proteins in vitro and in cells. Importantly, the probes also enabled the identification of >50 new proteins from living neurons that interact with the neuroplasticity-relevant CS-E sulfation motif. Several candidates were independently validated and included membrane receptors important for axon guidance, innate immunity, synapse development, and synaptic plasticity. Overall, our studies provide a powerful approach for mapping GAG-protein interaction networks, revealing new potential functions for these polysaccharides and linking them to diseases such as Alzheimer's and autism.


Assuntos
Benzofenonas/química , Glicosaminoglicanos/química , Marcadores de Fotoafinidade/química , Proteínas/química , Sítios de Ligação , Sulfatos de Condroitina , Estrutura Molecular
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