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1.
Tetrahedron Lett ; 60(1): 23-28, 2019 Jan 03.
Article in English | MEDLINE | ID: mdl-31564757

ABSTRACT

α4/7-Conotoxin LvIA is an isoform-selective inhibitor of the α3ß2 nicotinic acetylcholine receptor. An efficient strategy for the synthesis of this toxin is critical to advancing its utility as a probe for receptor function and as a potential pharmaceutical lead target. On-resin methods for peptide synthesis offer potential synthetic advantages; however, strategies for on-resin formation of multiple disulfides have historically been low-yielding. Here, we harness the reactivity of the Allocam protecting group and employ 3-amino acid spacer strategy to synthesize α4/7-conotoxin LvIA via three different on-resin strategies, each of which results in an isolated yield higher than prior fully on-resin approaches.

2.
Chem Sci ; 9(2): 350-355, 2018 Jan 14.
Article in English | MEDLINE | ID: mdl-29629104

ABSTRACT

C-Terminal cysteine peptide acids are difficult to access without epimerization of the cysteine α-stereocenter. Diversification of the C-terminus after solid-phase peptide synthesis poses an even greater challenge because of the proclivity of the cysteine α-stereocenter to undergo deprotonation upon activation of the C-terminal carboxylic acid. We present herein two general strategies to access C-terminal cysteine peptide derivatives without detectable epimerization, diketopiperazine formation, or piperidinylalanine side products.

3.
Chemistry ; 23(51): 12484-12488, 2017 Sep 12.
Article in English | MEDLINE | ID: mdl-28741313

ABSTRACT

C-terminally modified peptides are important targets for pharmaceutical and biochemical applications. Known methods for C-terminal diversification are limited mainly in terms of the scope of accessible modifications or by epimerization of the C-terminal amino acid. In this work, we present a broadly applicable approach that enables access to a variety of C-terminally functionalized peptides in either protected or unprotected form. This chemistry proceeds without epimerization of C-terminal Ala and tolerates nucleophiles of varying nucleophilicity. Finally, unprotected peptides bearing nucleophilic side chain groups can be selectively functionalized by strong nucleophiles, whereas macrocyclization is observed for weaker nucleophiles. The potential utility of this method is demonstrated through the divergent synthesis of the conotoxin conopressin G and GLP-1(7-36) and analogs.


Subject(s)
Peptides/chemistry , Amino Acid Sequence , Benzoic Acid/chemistry , Cyclization , Glucagon-Like Peptide 1/chemistry , Glucagon-Like Peptide 1/metabolism , Oxytocin/analogs & derivatives , Oxytocin/chemistry , Oxytocin/metabolism , Peptide Fragments/chemistry , Peptide Fragments/metabolism , Peptides/metabolism , Solid-Phase Synthesis Techniques
4.
Org Biomol Chem ; 15(14): 2914-2918, 2017 Apr 05.
Article in English | MEDLINE | ID: mdl-28327729

ABSTRACT

The synthesis of disulfide-containing polypeptides represents a long-standing challenge in peptide chemistry, and broadly applicable methods for the construction of disulfides are in constant demand. Few strategies exist for on-resin formation of disulfides directly from their protected counterparts. We present herein a novel strategy for the on-resin construction of disulfides directly from Allocam-protected cysteines. Our palladium-mediated approach is mild and uses readily available reagents, requiring no special equipment. No reduced peptide intermediates or S-allylated products are observed, and no residual palladium can be detected in the final products. The utility of this method is demonstrated through the synthesis of the C-carboxy analog of oxytocin.


Subject(s)
Disulfides/chemistry , Palladium/chemistry , Peptides/chemistry , Resins, Synthetic/chemistry , Peptides/chemical synthesis
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