M. Horn et al., Arginine-based structures are specific inhibitors of cathepsin C - Application of peptide combinatorial libraries, EUR J BIOCH, 267(11), 2000, pp. 3330-3336
Novel synthetic peptide inhibitors of lysosomal cysteine proteinase catheps
in C have been designed through the use of soluble peptide combinatorial li
braries. The uncovered structural inhibitory module consists of the N-termi
nal cluster of l-arginine residues. Its modification with d-amino acids or
arginine derivatives did not increase the inhibition strength. Inhibitory p
otency of oligoarginines improves with the elongation of peptide chain reac
hing a maximum for octa-l-arginine. The oligoarginines specifically interac
t with the cathepsin C active site as shown by competitive-type inhibition
kinetics (K-i approximate to 10(-5) m) and intrinsic fluorescence measureme
nts. The inhibitory interaction of oligoarginines is established through th
e specific spatial contact of a net of guanidino groups in the arginine sid
e-chains, as indicated by comparison with inhibitory action of low molecula
r mass guanidine derivatives (K-i approximate to 10(-3) m). Nonarginine pol
yionic compounds cannot mimic the inhibitory effect of oligoarginines. The
arginine-based peptide inhibitors were selective towards cathepsin C among
other cysteine proteinases tested.