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1.
Cell Chem Biol ; 31(3): 477-486.e7, 2024 Mar 21.
Article in English | MEDLINE | ID: mdl-38518746

ABSTRACT

Of the targets for HIV-1 therapeutics, the capsid core is a relatively unexploited but alluring drug target due to its indispensable roles throughout virus replication. Because of this, we aimed to identify "clickable" covalent modifiers of the HIV-1 capsid protein (CA) for future functionalization. We screened a library of fluorosulfate compounds that can undergo sulfur(VI) fluoride exchange (SuFEx) reactions, and five compounds were identified as hits. These molecules were further characterized for antiviral effects. Several compounds impacted in vitro capsid assembly. One compound, BBS-103, covalently bound CA via a SuFEx reaction to Tyr145 and had antiviral activity in cell-based assays by perturbing virus production, but not uncoating. The covalent binding of compounds that target the HIV-1 capsid could aid in the future design of antiretroviral drugs or chemical probes that will help study aspects of HIV-1 replication.


Subject(s)
Capsid Proteins , HIV-1 , Capsid Proteins/metabolism , Capsid/chemistry , Capsid/metabolism , Virus Assembly , Virus Replication , Antiviral Agents/pharmacology
2.
Bioorg Med Chem Lett ; 98: 129596, 2024 Jan 15.
Article in English | MEDLINE | ID: mdl-38142914

ABSTRACT

To identify new compounds that can effectively inhibit Mycobacterium tuberculosis (Mtb), the causative agent of tuberculosis (TB), we screened, synthesized, and evaluated a series of novel aryl fluorosulfate derivatives for their in vitro inhibitory activity against Mtb. Compound 21b exhibited an in vitro minimum inhibitory concentration (MIC) of 0.06 µM against Mtb, no cytotoxicity against both HEK293T and HepG2 mammalian cell lines, and had good in vivo mouse plasma exposure and lung concentration with a 20 mg/kg oral dose, which supports advanced development as a new chemical entity for TB treatment.


Subject(s)
Mycobacterium tuberculosis , Tuberculosis , Animals , Humans , Mice , Antitubercular Agents , HEK293 Cells , Mammals , Microbial Sensitivity Tests , Structure-Activity Relationship , Tuberculosis/drug therapy , Sulfuric Acid Esters/chemistry , Sulfuric Acid Esters/pharmacology
3.
Proc Natl Acad Sci U S A ; 119(37): e2208540119, 2022 09 13.
Article in English | MEDLINE | ID: mdl-36070343

ABSTRACT

Diversity Oriented Clicking (DOC) is a discovery method geared toward the rapid synthesis of functional libraries. It combines the best attributes of both classical and modern click chemistries. DOC strategies center upon the chemical diversification of core "SuFExable" hubs-exemplified by 2-Substituted-Alkynyl-1-Sulfonyl Fluorides (SASFs)-enabling the modular assembly of compounds through multiple reaction pathways. We report here a range of stereoselective Michael-type addition pathways from SASF hubs including reactions with secondary amines, carboxylates, 1H-1,2,3-triazole, and halides. These high yielding conjugate addition pathways deliver unprecedented ß-substituted alkenyl sulfonyl fluorides as single isomers with minimal purification, greatly enriching the repertoire of DOC and holding true to the fundamentals of modular click chemistry. Further, we demonstrate the potential for biological function - a key objective of click chemistry - of this family of SASF-derived molecules as covalent inhibitors of human neutrophil elastase.


Subject(s)
Click Chemistry , Fluorides , Leukocyte Elastase , Proteinase Inhibitory Proteins, Secretory , Sulfinic Acids , Click Chemistry/methods , Fluorides/chemical synthesis , Fluorides/chemistry , Fluorides/pharmacology , Humans , Leukocyte Elastase/antagonists & inhibitors , Proteinase Inhibitory Proteins, Secretory/chemical synthesis , Proteinase Inhibitory Proteins, Secretory/chemistry , Proteinase Inhibitory Proteins, Secretory/pharmacology , Sulfinic Acids/chemical synthesis , Sulfinic Acids/chemistry , Sulfinic Acids/pharmacology
4.
Nat Chem ; 13(9): 858-867, 2021 09.
Article in English | MEDLINE | ID: mdl-34400816

ABSTRACT

Sulfur(VI) fluoride exchange (SuFEx) is a category of click chemistry that enables covalent linking of modular units through sulfur(VI) connective hubs. The efficiency of SuFEx and the stability of the resulting bonds have led to polymer chemistry applications. Now, we report the SuFEx click chemistry synthesis of several structurally diverse SOF4-derived copolymers based on the polymerization of bis(iminosulfur oxydifluorides) and bis(aryl silyl ethers). This polymer class presents two key characteristics. First, the [-N=S(=O)F-O-] polymer backbone linkages are themselves SuFExable and undergo precise SuFEx-based post-modification with phenols or amines to yield branched functional polymers. Second, studies of individual polymer chains of several of these new materials indicate helical polymer structures. The robust nature of SuFEx click chemistry offers the potential for post-polymerization modification, enabling the synthesis of materials with control over composition and conformation.

5.
Nat Chem ; 12(10): 906-913, 2020 10.
Article in English | MEDLINE | ID: mdl-32868886

ABSTRACT

Drug candidates that form covalent linkages with their target proteins have been underexplored compared with the conventional counterparts that modulate biological function by reversibly binding to proteins, in part due to concerns about off-target reactivity. However, toxicity linked to off-target reactivity can be minimized by using latent electrophiles that only become activated towards covalent bond formation on binding a specific protein. Here we study sulfuramidimidoyl fluorides, a class of weak electrophiles that undergo sulfur(VI) fluoride exchange chemistry. We show that equilibrium binding of a sulfuramidimidoyl fluoride to a protein can allow nucleophilic attack by a specific amino acid side chain, which leads to conjugate formation. We incubated small molecules, each bearing a sulfuramidimidoyl fluoride electrophile, with human cell lysate, and the protein conjugates formed were identified by affinity chromatography-mass spectrometry. This inverse drug discovery approach identified a compound that covalently binds to and irreversibly inhibits the activity of poly(ADP-ribose) polymerase 1, an important anticancer target in living cells.


Subject(s)
Drug Discovery , Fluorides/chemistry , Sulfhydryl Compounds/chemistry , Sulfur/chemistry , Chromatography, Affinity , HEK293 Cells , Humans , Mass Spectrometry , Molecular Structure , Sulfhydryl Compounds/chemical synthesis
6.
Angew Chem Int Ed Engl ; 59(30): 12460-12469, 2020 07 20.
Article in English | MEDLINE | ID: mdl-32301265

ABSTRACT

Diversity Oriented Clicking (DOC) is a unified click-approach for the modular synthesis of lead-like structures through application of the wide family of click transformations. DOC evolved from the concept of achieving "diversity with ease", by combining classic C-C π-bond click chemistry with recent developments in connective SuFEx-technologies. We showcase 2-Substituted-Alkynyl-1-Sulfonyl Fluorides (SASFs) as a new class of connective hub in concert with a diverse selection of click-cycloaddition processes. Through the selective DOC of SASFs with a range of dipoles and cyclic dienes, we report a diverse click-library of 173 unique functional molecules in minimal synthetic steps. The SuFExable library comprises 10 discrete heterocyclic core structures derived from 1,3- and 1,5-dipoles; while reaction with cyclic dienes yields several three-dimensional bicyclic Diels-Alder adducts. Growing the library to 278 discrete compounds through late-stage modification was made possible through SuFEx click derivatization of the pendant sulfonyl fluoride group in 96 well-plates-demonstrating the versatility of the DOC approach for the rapid synthesis of diverse functional structures. Screening for function against MRSA (USA300) revealed several lead hits with improved activity over methicillin.


Subject(s)
Click Chemistry , Sulfinic Acids/chemistry , Cycloaddition Reaction , Molecular Structure
7.
Proc Natl Acad Sci U S A ; 116(38): 18808-18814, 2019 09 17.
Article in English | MEDLINE | ID: mdl-31484779

ABSTRACT

Sulfur fluoride exchange (SuFEx) has emerged as the new generation of click chemistry. We report here a SuFEx-enabled, agnostic approach for the discovery and optimization of covalent inhibitors of human neutrophil elastase (hNE). Evaluation of our ever-growing collection of SuFExable compounds toward various biological assays unexpectedly revealed a selective and covalent hNE inhibitor: benzene-1,2-disulfonyl fluoride. Synthetic derivatization of the initial hit led to a more potent agent, 2-(fluorosulfonyl)phenyl fluorosulfate with IC50 0.24 µM and greater than 833-fold selectivity over the homologous neutrophil serine protease, cathepsin G. The optimized, yet simple benzenoid probe only modified active hNE and not its denatured form.


Subject(s)
Fluorides/chemistry , Leukocyte Elastase/antagonists & inhibitors , Serine Proteinase Inhibitors/chemistry , Sulfur Compounds/chemistry , Click Chemistry , Enzyme Activation/drug effects , Humans , Inhibitory Concentration 50 , Leukocyte Elastase/chemistry , Leukocyte Elastase/metabolism , Molecular Structure , Protein Binding , Protein Folding , Serine Proteinase Inhibitors/chemical synthesis , Serine Proteinase Inhibitors/pharmacology , Sulfinic Acids/chemical synthesis , Sulfinic Acids/chemistry , Sulfinic Acids/pharmacology
8.
J Am Chem Soc ; 140(8): 2919-2925, 2018 02 28.
Article in English | MEDLINE | ID: mdl-29451783

ABSTRACT

Sulfur(VI) Fluoride Exchange (SuFEx) is a new family of click chemistry transformations which relies on readily available materials to produce compounds bearing the SVI-F motif. The potential of SuFEx in drug discovery has just started to be explored. We report the first method of SuFEx chemistry for the conversion of phenolic compounds to their respective arylfluorosulfate derivatives in situ in 96-well plates. This method is compatible with automated synthesis and screening to quickly assess the biological activities of the in situ generated, crude products. Using this method, we perform late-stage functionalization of a panel of known anticancer drugs to generate the corresponding arylfluorosulfates. These in situ generated arylfluorosulfates are directly tested in a cancer-cell growth inhibition assay in parallel with their phenolic precursors. We discover three arylfluorosulfates that exhibit improved anticancer cell proliferation activities compared to their phenol precursors. Among these three compounds, the fluorosulfate derivative of Fulvestrant possesses significantly enhanced activity to down-regulate estrogen receptor (ER) expression in ER+ breast cancer cell line MCF-7 and the fluorosulfate derivative of Combretastatin A4-a general anticancer drug currently being evaluated under clinical trials-exhibits a 70-fold increase in potency in the drug resistant colon cancer cell line HT-29.


Subject(s)
Antineoplastic Agents/pharmacology , Fluorides/pharmacology , Sulfur/pharmacology , Antineoplastic Agents/chemistry , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Click Chemistry , Dose-Response Relationship, Drug , Drug Resistance, Neoplasm/drug effects , Drug Screening Assays, Antitumor , Fluorides/chemistry , HT29 Cells , Humans , MCF-7 Cells , Molecular Structure , Receptors, Estrogen/antagonists & inhibitors , Receptors, Estrogen/biosynthesis , Structure-Activity Relationship , Sulfur/chemistry
9.
Angew Chem Int Ed Engl ; 56(24): 6874-6877, 2017 06 06.
Article in English | MEDLINE | ID: mdl-28485900

ABSTRACT

The meta-C-H arylation of free phenylacetic acid was realized using 2-carbomethoxynorbornene (NBE-CO2 Me) as a transient mediator. Both the modified norbornene and the mono-protected 3-amino-2-hydroxypyridine type ligand are crucial for this auxiliary-free meta-C-H arylation reaction. A series of phenylacetic acids, including mandelic acid and phenylglycine, react smoothly with various aryl iodides to provide the meta-arylated products in high yields.


Subject(s)
Phenylacetates/chemistry , Carbon/chemistry , Catalysis , Hydrogen/chemistry , Iodides/chemistry , Ligands , Mandelic Acids/chemistry
10.
Angew Chem Int Ed Engl ; 56(6): 1506-1509, 2017 02 01.
Article in English | MEDLINE | ID: mdl-28052530

ABSTRACT

Herein we report acid-directed ß-C(sp3 )-H arylation of α-amino acids enabled by pyridine-type ligands. This reaction does not require the installation of an exogenous directing group, is scalable, and enables the preparation of Fmoc-protected unnatural amino acids in three steps. The pyridine-type ligands are crucial for the development of this new C(sp3 )-H arylation.


Subject(s)
Amino Acids/chemical synthesis , Fluorenes/chemical synthesis , Hydrocarbons, Aromatic/chemical synthesis , Pyridines/chemistry , Amino Acids/chemistry , Catalysis , Fluorenes/chemistry , Hydrocarbons, Aromatic/chemistry , Ligands , Palladium/chemistry , Pyridines/chemical synthesis
11.
J Am Chem Soc ; 138(42): 14092-14099, 2016 Oct 26.
Article in English | MEDLINE | ID: mdl-27712063

ABSTRACT

Using a modified norbornene (methyl bicyclo[2.2.1]hept-2-ene-2-carboxylate) as a transient mediator, meta-C-H amination and meta-C-H alkynylation of aniline and phenol substrates have been developed for the first time. Both the identification of a monoprotected 3-amino-2-hydroxypyridine/pyridone-type ligand and the use of a modified norbornene as a mediator are crucial for the realization of these two unprecedented meta-C-H transformations. A variety of substrates are compatible with both meta-C-H amination and meta-C-H alkynylation. Amination and alkynylation of heterocyclic substrates including indole, indoline, and indazole afford the desired products in moderate to high yields.

12.
J Am Chem Soc ; 137(22): 7067-70, 2015 Jun 10.
Article in English | MEDLINE | ID: mdl-26001406

ABSTRACT

A quinoline-based ligand was shown to promote palladium-catalyzed ß-C(sp(3))-H fluorination for the first time. A range of unnatural enantiopure fluorinated α-amino acids were obtained through sequential ß-C(sp(3))-H arylation and subsequent stereoselective fluorination from readily available L-alanine.


Subject(s)
Amino Acids/chemical synthesis , Fluorine/chemistry , Amino Acids/chemistry , Stereoisomerism
13.
J Am Chem Soc ; 136(12): 4472-5, 2014 Mar 26.
Article in English | MEDLINE | ID: mdl-24617772

ABSTRACT

A palladium-catalyzed asymmetric synthesis of planar chiral metallocene compounds is reported. The reaction stereoselectively functionalized one of the ortho C-H bonds of Cp rings by intramolecular cyclization to form indenone derivatives in high yields with excellent enantioselectivity. The mild set of reaction conditions allowed a wide variety of chiral metallocene compounds to be synthesized with broad functional group tolerance. The influences of preinstalled chiralities on the other Cp-ring were also investigated.

14.
J Am Chem Soc ; 135(25): 9318-21, 2013 Jun 26.
Article in English | MEDLINE | ID: mdl-23758183

ABSTRACT

A Pd-catalyzed chemoselective Catellani reaction of iodopyrroles was developed. The rare chemoselectivity between two different aryl halides was realized by optimizing the kinetics of the different steps of this multicomponent process. The new developed method led to the rapid synthesis of rhazinal in a highly efficient manner.


Subject(s)
Aldehydes/chemical synthesis , Indolizines/chemical synthesis , Palladium/chemistry , Pyrroles/chemistry , Aldehydes/chemistry , Catalysis , Indolizines/chemistry , Molecular Structure
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