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1.
Org Lett ; 2024 Jul 05.
Article in English | MEDLINE | ID: mdl-38968424

ABSTRACT

The peptide sex-inducing pheromone SIP+ (1) bearing an unusual sulfated aspartic acid residue induces sexual reproduction in diatom populations. Herein, we report the first total synthesis of SIP+ using both a sulfated building block approach and a solid-phase peptide synthesis (SPPS)-compatible late-stage sulfation strategy to assemble the natural product. The modular approaches provide concise routes to useful quantities of the natural product for future structure activity relationship studies examining the role of SIP+ in diatom biology.

2.
Angew Chem Int Ed Engl ; 62(50): e202313037, 2023 12 11.
Article in English | MEDLINE | ID: mdl-37818778

ABSTRACT

Mild strategies for the selective modification of peptides and proteins are in demand for applications in therapeutic peptide and protein discovery, and in the study of fundamental biomolecular processes. Herein, we describe the development of an electrochemical selenoetherification (e-SE) platform for the efficient site-selective functionalization of polypeptides. This methodology utilizes the unique reactivity of the 21st amino acid, selenocysteine, to effect formation of valuable bioconjugates through stable selenoether linkages under mild electrochemical conditions. The power of e-SE is highlighted through late-stage C-terminal modification of the FDA-approved cancer drug leuprolide and assembly of a library of anti-HER2 affibody conjugates bearing complex cargoes. Following assembly by e-SE, the utility of functionalized affibodies for in vitro imaging and targeting of HER2 positive breast and lung cancer cell lines is also demonstrated.


Subject(s)
Antineoplastic Agents , Selenocysteine , Selenocysteine/chemistry , Peptides/chemistry , Proteins , Cell Line
3.
Biochemistry ; 62(14): 2202-2215, 2023 07 18.
Article in English | MEDLINE | ID: mdl-37368361

ABSTRACT

Heparanase (HPSE) is the only mammalian endo-ß-glucuronidase known to catalyze the degradation of heparan sulfate. Dysfunction of HPSE activity has been linked to several disease states, resulting in HPSE becoming the target of numerous therapeutic programs, yet no drug has passed clinical trials to date. Pentosan polysulfate sodium (PPS) is a heterogeneous, FDA-approved drug for the treatment of interstitial cystitis and a known HPSE inhibitor. However, due to its heterogeneity, characterization of its mechanism of HPSE inhibition is challenging. Here, we show that inhibition of HPSE by PPS is complex, involving multiple overlapping binding events, each influenced by factors such as oligosaccharide length and inhibitor-induced changes in the protein secondary structure. The present work advances our molecular understanding of the inhibition of HPSE and will aid in the development of therapeutics for the treatment of a broad range of pathologies associated with enzyme dysfunction, including cancer, inflammatory disease, and viral infections.


Subject(s)
Glucuronidase , Heparitin Sulfate , Animals , Heparitin Sulfate/chemistry , Glucuronidase/chemistry , Mammals/metabolism
4.
Bioconjug Chem ; 34(6): 1105-1113, 2023 06 21.
Article in English | MEDLINE | ID: mdl-37232456

ABSTRACT

Malaria continues to impose a global health burden. Drug-resistant parasites have emerged to each introduced small-molecule therapy, highlighting the need for novel treatment approaches for the future eradication of malaria. Herein, targeted drug delivery with peptide-drug conjugates (PDCs) was investigated as an alternative antimalarial therapy, inspired by the success of emerging antibody-drug conjugates utilized in cancer treatment. A synthetic peptide derived from an innate human defense molecule was conjugated to the antimalarial drug primaquine (PQ) to produce PDCs with low micromolar potency toward Plasmodium falciparum in vitro. A suite of PDCs with different design features was developed to identify optimal conjugation site and investigate linker length, hydrophilicity, and cleavability. Conjugation within a flexible spacer region of the peptide, with a cleavable linker to liberate the PQ cargo, was important to retain activity of the peptide and drug.


Subject(s)
Antimalarials , Cell-Penetrating Peptides , Malaria, Falciparum , Malaria , Humans , Antimalarials/pharmacology , Antimalarials/chemistry , Cell-Penetrating Peptides/pharmacology , Pharmaceutical Preparations , Primaquine/chemistry , Primaquine/therapeutic use , Malaria/drug therapy , Malaria/parasitology , Plasmodium falciparum , Malaria, Falciparum/drug therapy
5.
Org Lett ; 25(20): 3633-3638, 2023 05 26.
Article in English | MEDLINE | ID: mdl-37184435

ABSTRACT

Arylthioether functional groups serve as effective electroauxiliaries for tunable oxidations. Herein, we disclose the synthesis of second-generation glutamine building blocks bearing 2,4-dimethoxythiophenyl and 2,4-dichlorothiophenyl-derived electroauxiliaries. These building blocks improve SPPS efficiency and enable fine-tuning of the electrochemical window for selective anodic oxidation reactions in comparison to first-generation 4-methoxythiophenyl- and 4-nitrothiophenyl-substituted variants. Installation onto a segment of involucrin, a protein component of human skin, emphasizes the practical application of the new building blocks for iterative functionalizations.


Subject(s)
Imino Acids , Peptides , Humans , Oxidation-Reduction
6.
Org Lett ; 25(17): 3157-3162, 2023 May 05.
Article in English | MEDLINE | ID: mdl-37093619

ABSTRACT

A general approach to the synthesis of amino acid sulfinate salts from commercially available α-chiral hydroxylated amino acids is reported. These reagents are shown to be valuable precursors to alkyl radicals under mild photochemical oxidation conditions. The photochemically generated amino acid radicals engage readily with alkyl and aryl disulfide radical traps to afford a diverse suite of modified amino acids.

7.
Angew Chem Int Ed Engl ; 62(4): e202215470, 2023 01 23.
Article in English | MEDLINE | ID: mdl-36336657

ABSTRACT

Electrochemical transformations provide enticing opportunities for programmable, residue-specific peptide modifications. Herein, we harness the potential of amidic side-chains as underutilized handles for late-stage modification through the development of an electroauxiliary-assisted oxidation of glutamine residues within unprotected peptides. Glutamine building blocks bearing electroactive side-chain N,S-acetals are incorporated into peptides using standard Fmoc-SPPS. Anodic oxidation of the electroauxiliary in the presence of diverse alcohol nucleophiles enables the installation of high-value N,O-acetal functionalities. Proof-of-principle for an electrochemical peptide stapling protocol, as well as the functionalization of dynorphin B, an endogenous opioid peptide, demonstrates the applicability of the method to intricate peptide systems. Finally, the site-selective and tunable electrochemical modification of a peptide bearing two discretely oxidizable sites is achieved.


Subject(s)
Glutamine , Peptides , Peptides/chemistry , Solid-Phase Synthesis Techniques/methods
8.
J Org Chem ; 87(14): 9408-9413, 2022 07 15.
Article in English | MEDLINE | ID: mdl-35758296

ABSTRACT

An approach to diverse cross-benzoin and α-siloxy ketone products which leverages a simple yet underutilized C-C bond disconnection strategy is reported. Acyl substitution of readily accessible α-siloxy Weinreb amides with organolithium compounds enables access to a broad scope of aryl, heteroaryl, alkyl, alkenyl, and alkynyl derivatives. Enantiopure benzoins can be accessed via a chiral pool approach, and the utility of accessible cross-benzoins and α-siloxy ketones is highlighted in a suite of downstream synthetic applications.


Subject(s)
Benzoin , Ketones , Amides/chemistry , Benzoin/chemistry , Ketones/chemistry
9.
Org Biomol Chem ; 20(31): 6250-6256, 2022 08 10.
Article in English | MEDLINE | ID: mdl-35621075

ABSTRACT

A two-component reductive amination approach to the synthesis of peptide macrocycles is reported which leverages the inherent reactivity of proteinogenic amine nucleophiles. Unprotected peptides bearing α-amine and side chain amine motifs undergo two-fold reductive amination reactions with 2,6-pyridinedialdehyde linkers in aqueous media to afford macrocyclic peptide products with backbone embedded pyridine motifs. Dialdehyde staples bearing valuable azide and alkyne handles also enable the post-cyclisation modification of peptides using copper-catalysed azide-alkyne cycloaddition (CuAAC) chemistry.


Subject(s)
Alkynes , Azides , Alkynes/chemistry , Amination , Amines , Azides/chemistry , Catalysis , Copper/chemistry , Cycloaddition Reaction , Peptides/chemistry
10.
Org Lett ; 24(20): 3680-3685, 2022 05 27.
Article in English | MEDLINE | ID: mdl-35575402

ABSTRACT

The accelerating discovery of structurally distinct peptide natural products bearing α-thioether cross-links, such as the family of sactipeptide natural products, highlights the need for strategies to synthesize this underexplored functional motif. Herein, we describe the preparation of orthogonally protected, cross-linked amino acid α-thioether building blocks and probe their stability toward conventional solid-phase peptide synthesis. We overcome challenges with linkage lability by developing a late-stage, on-resin approach to α-thioethers, providing important proof-of-principle for sactipeptide synthesis.


Subject(s)
Amino Acids , Biological Products , Peptides/chemistry , Solid-Phase Synthesis Techniques , Sulfides/chemistry
11.
Chem Sci ; 13(10): 2809-2823, 2022 Mar 09.
Article in English | MEDLINE | ID: mdl-35382479

ABSTRACT

Umpolung strategies, defined as synthetic approaches which reverse commonly accepted reactivity patterns, are broadly recognized as enabling tools for small molecule synthesis and catalysis. However, methods which exploit this logic for peptide and protein functionalizations are comparatively rare, with the overwhelming majority of existing bioconjugation approaches relying on the well-established reactivity profiles of a handful of amino acids. This perspective serves to highlight a small but growing body of recent work that masterfully capitalizes on the concept of polarity reversal for the selective modification of proteinogenic functionalities. Current applications of umpolung chemistry in organic synthesis and chemical biology as well as the vast potential for further innovations in peptide and protein modification will be discussed.

12.
JACS Au ; 2(1): 169-177, 2022 Jan 24.
Article in English | MEDLINE | ID: mdl-35098233

ABSTRACT

Cobalt-mediated radical polymerizations (CMRPs) have been initiated by the radical decarboxylation of tetrachlorophthalimide activated esters. This allows for the controlled radical polymerization of activated monomers across a broad temperature range with a single cobalt species, with the incorporation of polymer end groups derived from simple carboxylic acid derivatives and termination with an organozinc reagent. This method has been applied to the synthesis of a polymer/graphene conjugate and a water-soluble protein/polymer conjugate, demonstrating the first examples of CMRP in graphene and protein conjugation.

13.
Org Lett ; 24(6): 1268-1273, 2022 02 18.
Article in English | MEDLINE | ID: mdl-35014844

ABSTRACT

Acyl bicyclobutanes are shown to engage in strain-promoted cycloaddition reactions with a diverse array of triazolinedione reagents. The synthesis of an orthogonally protected urazole building block enabled the facile preparation of amino acid- and peptide-derived triazolinediones that undergo cycloaddition reactions to afford novel peptide conjugates. The additive-free and fully atom-economical nature of the transformation is a promising starting point for the generalization of this cycloaddition reaction for the functionalization of biomolecules.


Subject(s)
Bridged Bicyclo Compounds/chemistry , Peptides/chemistry , Triazoles/chemistry , Amino Acids/chemistry , Cycloaddition Reaction , Molecular Structure
14.
J Am Chem Soc ; 144(1): 23-41, 2022 01 12.
Article in English | MEDLINE | ID: mdl-34968405

ABSTRACT

Although electrochemical strategies for small-molecule synthesis are flourishing, this technology has yet to be fully exploited for the mild and chemoselective modification of peptides and proteins. With the growing number of diverse peptide natural products being identified and the emergence of modified proteins as therapeutic and diagnostic agents, methods for electrochemical modification stand as alluring prospects for harnessing the reactivity of polypeptides to build molecular complexity. As a mild and inherently tunable reaction platform, electrochemistry is arguably well-suited to overcome the chemo- and regioselectivity issues which limit existing bioconjugation strategies. This Perspective will showcase recently developed electrochemical approaches to peptide and protein modification. The article also highlights the wealth of untapped opportunities for the production of homogeneously modified biomolecules, with an eye toward realizing the enormous potential of electrochemistry for chemoselective bioconjugation chemistry.


Subject(s)
Proteins
15.
Methods Mol Biol ; 2355: 131-139, 2021.
Article in English | MEDLINE | ID: mdl-34386956

ABSTRACT

Modified peptides serve as promising therapeutic leads, valuable tools for chemical biology, and diverse functional materials. Synthetic strategies which enable the direct modification of native peptide sequences are particularly attractive for the rapid generation of designer peptides. This chapter details an operationally simple electrochemical approach to the modification of the peptide C-terminus, which proceeds via direct anodic oxidation of C-terminal peptide carboxylic acids. Electrochemical decarboxylation affords a key N,O-acetal intermediate, which can be engaged with various nucleophiles. Herein, step-by-step protocols for C-terminal arylation and sulfonylation are presented to highlight the utility of the method for the preparation of valuable functionalized peptides.


Subject(s)
Peptides/chemistry , Amino Acid Sequence , Carboxylic Acids
16.
J Am Chem Soc ; 143(30): 11811-11819, 2021 08 04.
Article in English | MEDLINE | ID: mdl-34288681

ABSTRACT

Designer C-terminal peptide amides are accessed in an efficient and epimerization-free approach by pairing an electrochemical oxidative decarboxylation with a tandem hydrolysis/reduction pathway. Resembling Nature's dual enzymatic approach to bioactive primary α-amides, this method delivers secondary and tertiary amides bearing high-value functional motifs, including isotope labels and handles for bioconjugation. The protocol leverages the inherent reactivity of C-terminal carboxylates, is compatible with the vast majority of proteinogenic functional groups, and proceeds in the absence of epimerization, thus addressing major limitations associated with conventional coupling-based approaches. The utility of the method is exemplified through the synthesis of natural product acidiphilamide A via a key diastereoselective reduction, as well as bioactive peptides and associated analogues, including an anti-HIV lead peptide and blockbuster cancer therapeutic leuprolide.


Subject(s)
Amides/metabolism , Electrochemical Techniques , Mixed Function Oxygenases/metabolism , Multienzyme Complexes/metabolism , Peptides/metabolism , Amides/chemistry , Mixed Function Oxygenases/chemistry , Molecular Structure , Multienzyme Complexes/chemistry , Peptides/chemistry , Stereoisomerism
17.
Chemistry ; 27(38): 9830-9838, 2021 Jul 07.
Article in English | MEDLINE | ID: mdl-33880824

ABSTRACT

Although sulfated xylooligosaccharides are promising therapeutic leads for a multitude of afflictions, the structural complexity and heterogeneity of commercially deployed forms (e. g. Pentosan polysulfate 1) complicates their path to further clinical development. We describe herein the synthesis of the largest homogeneous persulfated xylooligomers prepared to date, comprising up to eight xylose residues, as standards for biological studies. Near quantitative sulfation was accomplished using a remarkably mild and operationally simple protocol which avoids the need for high temperatures and a large excess of the sulfating reagent. Moreover, the sulfated xylooligomer standards so obtained enabled definitive identification of a pyridinium contaminant in a sample of a commercially prepared Pentosan drug and provided significant insights into the conformational preferences of the constituent persulfated monosaccharide residues. As the spatial distribution of sulfates is a key determinant of the binding of sulfated oligosaccharides to endogenous targets, these findings have broad implications for the advancement of Pentosan-based treatments.


Subject(s)
Oligosaccharides , Sulfates , Glucuronates , Pentosan Sulfuric Polyester
18.
Chem Sci ; 11(39): 10752-10758, 2020 Jul 30.
Article in English | MEDLINE | ID: mdl-34094328

ABSTRACT

The first total synthesis of cytotoxic cyanobacterial peptide natural products biseokeaniamides A-C is reported employing a robust solid-phase approach to peptide backbone construction followed by coupling of a key thiazole building block. To rapidly access natural product analogues, we have optimized an operationally simple electrochemical oxidative decarboxylation-nucleophilic addition pathway which exploits the reactivity of native C-terminal peptide carboxylates and abrogates the need for building block syntheses. Electrochemically-generated N,O-acetal intermediates are engaged with electron-rich aromatics and organometallic reagents to forge modified amino acids and peptides. The value of this late-stage modification method is highlighted by the expedient and divergent production of bioactive peptide analogues, including compounds which exhibit enhanced cytotoxicity relative to the biseokeaniamide natural products.

19.
Methods Mol Biol ; 2103: 275-285, 2020.
Article in English | MEDLINE | ID: mdl-31879933

ABSTRACT

The application of designer peptides in medicinal chemistry, chemical biology, and materials science has generated new interest in synthetic methods for the structural modification of amino acids. Strategies which facilitate the direct diversification of proteinogenic functional groups within unprotected peptide substrates are particularly attractive as they leverage modern solution- and solid-phase protocols-tools which are now both robust and routine-for the synthesis of native peptides. Accordingly, a recent approach to the decarboxylative functionalization of peptidic carboxylic acids, including aspartic/glutamic acid residues and α-carboxylic acids, has proven to be a promising new strategy for peptide modification. This synthetic method merges conventional strategies for the activation of carboxylic acids with transition metal-catalyzed cross-coupling chemistry to forge new C-C bonds for the late-stage introduction of valuable synthetic handles. This chapter details a step-by-step protocol for the activation and nickel-catalyzed decarboxylative alkylation of a simple peptide substrate to highlight the broad utility of this strategy for the synthesis of designer peptides.


Subject(s)
Oxidative Coupling , Peptides/chemical synthesis , Solid-Phase Synthesis Techniques/methods , Amino Acids/chemistry , Carboxylic Acids/chemistry , Decarboxylation , Ligands , Metals/chemistry , Nickel/chemistry , Peptides/chemistry
20.
Chemistry ; 26(13): 2808-2812, 2020 Mar 02.
Article in English | MEDLINE | ID: mdl-31823414

ABSTRACT

Bicyclo[1.1.0]butanes (BCBs) are highly strained carbocycles that have emerged as versatile synthetic tools, particularly for the construction of functionalized small molecules. This work reports two efficient pathways for the rapid preparation of over 20 structurally diverse BCB ketones, encompassing simple alkyl and aryl derivatives, as well as unprecedented amino acid, dipeptide, bioisostere, and bifunctional linchpin reagents currently inaccessible using literature methods. Analogues are readily forged in two steps and in high yields from simple carboxylic acids or through unsymmetrical ketone synthesis beginning with a convenient carbonyl dication equivalent. The utility of this novel toolbox of strained electrophiles for the selective modification of proteinogenic nucleophiles is highlighted.


Subject(s)
Bridged Bicyclo Compounds/chemistry , Butanes/chemistry , Carboxylic Acids/chemistry , Catalysis , Molecular Structure
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