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1.
J Am Chem Soc ; 146(12): 8480-8485, 2024 Mar 27.
Article in English | MEDLINE | ID: mdl-38484471

ABSTRACT

Mosquito control methods are vital to curtail the spread of life-threatening illnesses, such as dengue fever, malaria, and yellow fever. Vector control technologies must be selective to minimize deleterious effects on our ecosystem. Successful methods that control mosquito larva populations utilize the uniquely high alkaline nature of the midgut. Here, we present novel protected triazabutadienes (pTBD) that are deprotected under basic conditions of the larval midgut, releasing an aryl diazonium ion (ADI) that results in protein modification. The probes contain a bioorthogonal terminal alkyne handle, enabling a selective Cu-click reaction with an azidofluorophore for quantification by SDS PAGE and visualization using fluorescence microscopy. A control TBD, unable to release an ADI, did not label the midgut. We envision our chemical probes will aid in the development of new selective mosquito control methods, thus preventing the spread of mosquito-borne illnesses with minimal impact on other organisms in the ecosystem.


Subject(s)
Ecosystem , Malaria , Animals , Larva , Extreme Environments , Mosquito Control/methods , Malaria/prevention & control
2.
bioRxiv ; 2023 Dec 27.
Article in English | MEDLINE | ID: mdl-38234773

ABSTRACT

Mosquito control methods are vital for the spread of life-threatening illnesses such as dengue fever, malaria, and yellow fever. Vector control technologies must be selective to minimize deleterious effects to our ecosystem. Successful methods that control mosquito larva populations utilize the uniquely high alkaline nature of the midgut. Here, we present novel protected triazabutadienes (pTBD) which are deprotected under basic conditions of the larval midgut, releasing an aryl diazonium ion (ADI) that results in protein modification. The probes contain a bioorthogonal terminal alkyne handle, enabling a selective Cu-click reaction with an azido-fluorophore for quantification by SDS PAGE and visualization using fluorescence microscopy. A control TBD, unable to release an ADI, did not label the midgut. We envision our chemical probes will aid in the development of new selective mosquito control methods thus preventing the spread of mosquito-borne illnesses with minimal impact on other organisms in the ecosystem.

4.
Biochemistry ; 61(8): 656-664, 2022 04 19.
Article in English | MEDLINE | ID: mdl-35302352

ABSTRACT

A challenge within the field of bioconjugation is developing probes to uncover novel information on proteins and other biomolecules. Intracellular delivery of these probes offers the promise of giving relevant context to this information, and these probes can serve as hypothesis-generating tools within complex systems. Leveraging the utility of triazabutadiene chemistry, herein, we discuss the development of a probe that undergoes reduction-mediated deprotection to rapidly deliver a benzene diazonium ion (BDI) into cells. The intracellular BDI resulted in an increase in global tyrosine phosphorylation levels. Seeing phosphatase dysregulation as a potential source of this increase, a tyrosine phosphatase (PTP1B) was tested and shown to be both inhibited and covalently modified by the BDI. In addition to the expected azobenzene formation at tyrosine side chains, key reactive histidine residues were also modified.


Subject(s)
Benzene , Protein Tyrosine Phosphatase, Non-Receptor Type 1 , Ions , Phosphorylation , Protein Tyrosine Phosphatase, Non-Receptor Type 1/metabolism , Proteins/chemistry , Tyrosine/metabolism
6.
Bioconjug Chem ; 32(11): 2432-2438, 2021 11 17.
Article in English | MEDLINE | ID: mdl-34730351

ABSTRACT

This work describes the development of phenyl diazenyl piperidine triazene derivatives that can be activated to release aryl diazonium ions for labeling of proteins using light. These probes show marked bench stability at room temperature and can be photoisomerized via low-intensity UVA irradiation at physiological pH. Upon isomerization, the triazenes are rendered more basic and readily protonate to release reactive aryl diazonium ions. It was discovered that the intensity and duration of the UV light was essential to the observed diazonium ion reactivity in competition with the traditionally observed photolytic radical pathways. The combination of their synthetic efficiency coupled with their overall stability makes triazenes an attractive candidate for use in bioconjugation applications. Bioorthogonal handles on the triazenes are used to demonstrate the ease by which proteins can be modified.


Subject(s)
Protein Processing, Post-Translational
7.
J Org Chem ; 86(24): 17550-17559, 2021 12 17.
Article in English | MEDLINE | ID: mdl-34818017

ABSTRACT

A two-step multicomponent reaction oxidation protocol is reported herein, which affords novel tunable fluorescent tetracyclic indolizines. The procedure involves a novel 4-center-3-component reaction, which proceeds via a sequential Knoevenagel condensation, [4+1] cycloaddition, and imine condensation to afford imino-indolizines. Products then undergo cyclization and are oxidized in situ to afford fluorescent tetracycles, which are readily tunable through modification of diversity elements.


Subject(s)
Indolizines , Coloring Agents , Cyclization , Cycloaddition Reaction , Molecular Structure
8.
Org Lett ; 23(5): 1851-1855, 2021 03 05.
Article in English | MEDLINE | ID: mdl-33570414

ABSTRACT

Aryl diazonium ions are important in synthesis and chemical biology, and the acid-labile triazabutadiene can protect this handle for future use. We report a Suzuki coupling strategy that is compatible with the triazabutadiene scaffold, expanding the scope of synthetically available triazabutadienes. Shown herein, the triazabutadiene scaffold remains intact and reactive after coupling, as demonstrated by releasing the aryl diazonium ion to label a tyrosine-rich model protein.


Subject(s)
Diazonium Compounds/chemistry , Ions/chemistry , Proteins/chemistry , Molecular Structure
9.
Bioconjug Chem ; 32(2): 254-258, 2021 02 17.
Article in English | MEDLINE | ID: mdl-33492934

ABSTRACT

Aryl diazonium ions have long been used in bioconjugation due to their reactivity toward electron-rich aryl residues, such as tyrosine. However, their utility in biological systems has been restricted due to the requirement of harsh conditions for their generation in situ, as well as limited hydrolytic stability. Previous work describing a scaffold known as triazabutadiene (TBD) has shown the ability to protect aryl diazonium ions allowing for increased synthetic utility, as well as triggered release under biologically relevant conditions. Herein, we describe the synthesis and application of a novel TBD, capable of installation of a cyclooctyne on protein surfaces for later use of copper-free click reactions involving functional azides. The probe shows efficient protein labeling across a wide pH range that can be accomplished in a convenient and timely manner. Orthogonality of the cyclooctyne modification was showcased by labeling a model protein in the presence of hen egg proteins, using an azide-containing fluorophore. We further confirmed that the azobenzene modification can be cleaved using sodium dithionite treatment.


Subject(s)
Butadienes/chemistry , Click Chemistry , Copper/chemistry , Proteins/chemistry , Electrophoresis, Polyacrylamide Gel
10.
Protein Sci ; 29(8): 1784-1793, 2020 08.
Article in English | MEDLINE | ID: mdl-32483864

ABSTRACT

Chemical modification of proteins has been crucial in engineering protein-based therapies, targeted biopharmaceutics, molecular probes, and biomaterials. Here, we explore the use of a conjugation-based approach to sense alternative conformational states in proteins. Tyrosine has both hydrophobic and hydrophilic qualities, thus allowing it to be positioned at protein surfaces, or binding interfaces, or to be buried within a protein. Tyrosine can be conjugated with 4-phenyl-3H-1,2,4-triazole-3,5(4H)-dione (PTAD). We hypothesized that individual protein conformations could be distinguished by labeling tyrosine residues in the protein with PTAD. We conjugated tyrosine residues in a well-folded protein, bovine serum albumin (BSA), and quantified labeled tyrosine with liquid chromatography with tandem mass spectrometry. We applied this approach to alternative conformations of BSA produced in the presence of urea. The amount of PTAD labeling was found to relate to the depth of each tyrosine relative to the protein surface. This study demonstrates a new use of tyrosine conjugation using PTAD as an analytic tool able to distinguish the conformational states of a protein.


Subject(s)
Serum Albumin, Bovine/chemistry , Triazoles/chemistry , Animals , Cattle , Chromatography, Liquid , Protein Domains , Tandem Mass Spectrometry , Tyrosine/chemistry
11.
Org Lett ; 22(7): 2626-2629, 2020 04 03.
Article in English | MEDLINE | ID: mdl-32191483

ABSTRACT

This work describes the development of a highly stable and pH-responsive probe for lysine modification. The scaffold has marked stability in the presence of several biological nucleophiles and across a wide pH range (2-12). Several functional analogs showed robust labeling of a protein at pH > 9. Taken together, our system displays versatility and can be easily adapted for variety of applications, while demonstrating stability suitable for a wide range of biologically compatible systems.


Subject(s)
Amines/chemistry , Dioxanes/chemistry , Hydrogen-Ion Concentration , Lysine/chemistry , Molecular Structure , Water/chemistry
12.
Chembiochem ; 19(24): 2550-2552, 2018 12 18.
Article in English | MEDLINE | ID: mdl-30341988

ABSTRACT

The use of small-molecule fluorophores to label proteins with minimal perturbation in response to an external stimulus is a powerful tool to probe chemical and biochemical environments. Herein, we describe the use of a coumarin-modified triazabutadiene that can deliver aryl diazonium ions to fluorescently label proteins by tyrosine-selective modification. The labeling can be triggered by low-pH-induced liberation of the diazonium species, thus making the fluorophore especially useful in labeling biochemical surroundings such as those found within the late endosome. Additionally, we show that a variety of coumarin triazabutadienes might also be prone to releasing their diazonium cargo after irradiation with UV light.


Subject(s)
Coumarins/chemistry , Fluorescent Dyes/chemistry , Molecular Probes/chemistry , Proteins/chemistry , Triazenes/chemistry , Coumarins/chemical synthesis , Fluorescence , Fluorescent Dyes/chemical synthesis , Molecular Probes/chemical synthesis , Triazenes/chemical synthesis
13.
Org Biomol Chem ; 15(29): 6076-6079, 2017 Jul 26.
Article in English | MEDLINE | ID: mdl-28685790

ABSTRACT

A concise one-pot three-component reaction that affords fluorescent indolizines, benzo[d]pyrrolo[2,1-b]thiazoles, and pyrrolo[1,2-a]pyrazines is reported. The methodology involves the formation of a heterocyclic 1-aza-1,3-diene derived from a Knoevenagel condensation between an aldehyde and 2-methyl-ene-cyano aza-heterocycles, followed by [4 + 1] cycloaddition of acetyl cyanide behaving as a non-classical isocyanide replacement.

14.
Chembiochem ; 17(23): 2220-2222, 2016 12 02.
Article in English | MEDLINE | ID: mdl-27662242

ABSTRACT

Recent work on triazabutadienes has shown that they have the ability to release aryl diazonium ions under exceptionally mild acidic conditions. There are instances that require that this release be prevented or minimized. Accordingly, a base-labile protection strategy for the triazabutadiene is presented. It affords enhanced synthetic and practical utility of the triazabutadiene. The effects of steric and electronic factors in the rate of removal are discussed, and the triazabutadiene protection is shown to be compatible with the traditional acid-labile protection strategy used in solid phase peptide synthesis.


Subject(s)
Acids/chemistry , Butadienes/chemistry , Molecular Structure , Peptides/chemical synthesis , Peptides/chemistry
15.
Chembiochem ; 17(23): 2216-2219, 2016 12 02.
Article in English | MEDLINE | ID: mdl-27647786

ABSTRACT

Chemical crosslinking is a versatile tool for the examination of biochemical interactions, in particular host-pathogen interactions. We report the critical first step toward the goal of probing these interactions by the synthesis and use of a new heterobifunctional crosslinker containing a triazabutadiene scaffold. The triazabutadiene is stable to protein conjugation and liberates a reactive aryl diazonium species upon irradiation with 350 nm light. We highlight the use of this technology by modifying the surface of several proteins, including the dengue virus envelope protein.


Subject(s)
Butadienes/chemistry , Butadienes/radiation effects , Dengue Virus/chemistry , Ultraviolet Rays , Viral Envelope Proteins/chemistry , Cross-Linking Reagents/chemistry , Molecular Structure , Surface Properties
16.
Org Lett ; 18(19): 4948-4950, 2016 10 07.
Article in English | MEDLINE | ID: mdl-27619479

ABSTRACT

Triazabutadienes can be used to readily generate reactive aryl diazonium ions under mild, physiologically relevant conditions. These conditions are compatible with a range of functionalities that do not tolerate traditional aryl diazonium ion generation. To increase the utility of this aryl diazonium ion releasing chemistry an alkyne-containing triazabutadiene was synthesized. The copper-catalyzed azide-alkyne cycloaddition ("Cu-click") reaction was utilized to modify the alkyne-containing triazabutadiene and shown to be compatible with the nitrogen-rich triazabutadiene. One of the triazole products was tethered to a fluorophore, thus enabling the direct fluorescent labeling of a model protein.

17.
J Virol Methods ; 235: 125-130, 2016 09.
Article in English | MEDLINE | ID: mdl-27265428

ABSTRACT

Dengue virus (DENV) is a mosquito-transmitted flavivirus that infects approximately 100 million people annually. Multi-day protocols for purification of DENV reduce the infective titer due to viral sensitivity to both temperature and pH. Herein we describe a 5-h protocol for the purification of all DENV serotypes, utilizing traditional gradient-free ultracentrifugation followed by selective virion precipitation. This protocol allows for the separation of DENV from contaminating proteins - including intact C6/36 densovirus, for the production of infective virus at high concentration for protein-level analysis.


Subject(s)
Dengue Virus/isolation & purification , Virology/methods , Aedes/virology , Animals , Cell Line , Dengue/virology , Dengue Virus/classification , Dengue Virus/physiology , Densovirus/isolation & purification , Mosquito Vectors/virology , Serogroup , Time Factors , Ultracentrifugation , Virus Replication
18.
J Am Chem Soc ; 137(31): 9764-7, 2015 Aug 12.
Article in English | MEDLINE | ID: mdl-26214020

ABSTRACT

Controlling chemical reactivity using light is a longstanding practice within organic chemistry, yet little has been done to modulate the basicity of compounds. Reported herein is a triazabutadiene that is rendered basic upon photoisomerization. The pH of an aqueous solution containing the water-soluble triazabutadiene can be adjusted with 350 nm light. Upon synthesizing a triazabutadiene that is soluble in aprotic organic solvents, we noted a similar light-induced change in basicity. As a proof of concept we took this photobase and used it to catalyze a condensation reaction.

19.
Angew Chem Int Ed Engl ; 54(13): 4051-4, 2015 Mar 23.
Article in English | MEDLINE | ID: mdl-25663253

ABSTRACT

Triazabutadienes are an understudied structural motif that have remarkable reactivity once rendered water-soluble. It is shown that these molecules readily release diazonium species in a pH-dependent manner in a series of buffer solutions with pH ranges similar to those found in cells. Upon further development, we expect that this process will be well suited to cargo-release strategies and organelle-specific bioconjugation reactions. These compounds offer one of the mildest ways of generating diazonium species in aqueous solutions.


Subject(s)
Butadienes/chemistry , Diazonium Compounds/chemistry , Buffers , Hydrogen-Ion Concentration , Magnetic Resonance Spectroscopy , Protons , Solubility , Water
20.
Org Lett ; 15(19): 5060-3, 2013 Oct 04.
Article in English | MEDLINE | ID: mdl-24059816

ABSTRACT

A triarylphosphine reagent that reacts with organic azides to install amide-linked diazirines is reported. This traceless Staudinger reagent reacts with complex organic azides to yield amide-linked diazirines, thus expanding the scope of the utility of both azide and diazirine chemistry.


Subject(s)
Azides/chemistry , Diazomethane/chemistry , Indicators and Reagents/chemistry , Phosphines/chemistry , Molecular Structure
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