TY - JOUR
T1 - The solution structure of horseshoe crab antimicrobial peptide tachystatin B with an inhibitory cystine-knot motif
AU - Fujitani, Naoki
AU - Kouno, Takahide
AU - Nakahara, Taku
AU - Takaya, Kenji
AU - Osaki, Tsukasa
AU - Kawabata, Shun Ichiro
AU - Mizuguchi, Mineyuki
AU - Aizawa, Tomoyasu
AU - Demura, Makoto
AU - Nishimura, Shin Ichiro
AU - Kawano, Keiichi
PY - 2007/4
Y1 - 2007/4
N2 - Tachystatin B is an antimicrobial and a chitin-binding peptide isolated from the Japanese horseshoe crab (Tachypleus tridentatus) consisting of two isopeptides called tachystatin BI and B2. We have determined their solution structures using NMR experiments and distance geometry calculations. The 20 best converged structures of tachystatin B1 and B2 exhibited root mean square deviations of 0.46 and 0.49 Å, respectively, for the backbone atoms in Cys4-Arg4O. Both structures have identical conformations, and they contain a short antiparallel β-sheet with an inhibitory cystine-knot (ICI) motif that is distributed widely in the antagonists for voltage-gated ion channels, although tachystatin B does not have neurotoxic activity. The structural homology search provided several peptides with structures similar to that of tachystatin B. However, most of them have the advanced functions such as insecticidal activity, suggesting that tachystatin B may be a kind of ancestor of antimicrobial peptide in the molecular evolutionary history. Tachystatin B also displays a significant structural similarity to tachystatin A, which is member of the tachystatin family. The structural comparison of both tachystatins indicated that Tyr14 and Arg17 in the long loop between the first and second strands might be the essential residues for binding to chitin.
AB - Tachystatin B is an antimicrobial and a chitin-binding peptide isolated from the Japanese horseshoe crab (Tachypleus tridentatus) consisting of two isopeptides called tachystatin BI and B2. We have determined their solution structures using NMR experiments and distance geometry calculations. The 20 best converged structures of tachystatin B1 and B2 exhibited root mean square deviations of 0.46 and 0.49 Å, respectively, for the backbone atoms in Cys4-Arg4O. Both structures have identical conformations, and they contain a short antiparallel β-sheet with an inhibitory cystine-knot (ICI) motif that is distributed widely in the antagonists for voltage-gated ion channels, although tachystatin B does not have neurotoxic activity. The structural homology search provided several peptides with structures similar to that of tachystatin B. However, most of them have the advanced functions such as insecticidal activity, suggesting that tachystatin B may be a kind of ancestor of antimicrobial peptide in the molecular evolutionary history. Tachystatin B also displays a significant structural similarity to tachystatin A, which is member of the tachystatin family. The structural comparison of both tachystatins indicated that Tyr14 and Arg17 in the long loop between the first and second strands might be the essential residues for binding to chitin.
KW - Antimicrobial peptide
KW - Inhibitory cystine-knot (ICK) motif
KW - Inmate immunity
KW - NMR
KW - Structure determination
KW - Tachystatin B
UR - http://www.scopus.com/inward/record.url?scp=34247351569&partnerID=8YFLogxK
U2 - 10.1002/psc.846
DO - 10.1002/psc.846
M3 - 学術論文
C2 - 17394123
AN - SCOPUS:34247351569
SN - 1075-2617
VL - 13
SP - 269
EP - 279
JO - Journal of Peptide Science
JF - Journal of Peptide Science
IS - 4
ER -