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Full Sequence Amino Acid Scanning of ?-Defensin RTD-1 Yields a Potent Anthrax Lethal Factor Protease Inhibitor.


ABSTRACT: ?-Defensin RTD-1 is a noncompetitive inhibitor of anthrax lethal factor (LF) protease (IC50 = 390 ± 20 nM, Ki = 365 ± 20 nM) and a weak inhibitor of other mammalian metalloproteases such as TNF? converting enzyme (TACE) (Ki = 4.45 ± 0.48 ?M). Using full sequence amino acid scanning in combination with a highly efficient "one-pot" cyclization-folding approach, we obtained an RTD-1-based peptide that was around 10 times more active than wild-type RTD-1 in inhibiting LF protease (IC50 = 43 ± 3 nM, Ki = 18 ± 1 nM). The most active peptide was completely symmetrical, rich in Arg and Trp residues, and able to adopt a native RTD-1-like structure. These results show the power of optimized chemical peptide synthesis approaches for the efficient production of libraries of disulfide-rich backbone-cyclized peptides to quickly perform structure-activity relationship studies for optimizing protease inhibitors.

SUBMITTER: Li Y 

PROVIDER: S-EPMC5807008 | biostudies-literature | 2017 Mar

REPOSITORIES: biostudies-literature

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Full Sequence Amino Acid Scanning of θ-Defensin RTD-1 Yields a Potent Anthrax Lethal Factor Protease Inhibitor.

Li Yilong Y   Gould Andrew A   Aboye Teshome T   Bi Tao T   Breindel Leonard L   Shekhtman Alexander A   Camarero Julio A JA  

Journal of medicinal chemistry 20170214 5


θ-Defensin RTD-1 is a noncompetitive inhibitor of anthrax lethal factor (LF) protease (IC<sub>50</sub> = 390 ± 20 nM, K<sub>i</sub> = 365 ± 20 nM) and a weak inhibitor of other mammalian metalloproteases such as TNFα converting enzyme (TACE) (K<sub>i</sub> = 4.45 ± 0.48 μM). Using full sequence amino acid scanning in combination with a highly efficient "one-pot" cyclization-folding approach, we obtained an RTD-1-based peptide that was around 10 times more active than wild-type RTD-1 in inhibitin  ...[more]

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