Solution structure of cryptdin-4, a mouse Paneth cell α-defensin

被引:32
作者
Jing, WG
Hunter, HN
Tanabe, H
Ouellette, AJ
Vogel, HJ
机构
[1] Univ Calgary, Dept Biol Sci, Struct Biol Res Grp, Calgary, AB T2N 1N4, Canada
[2] Univ Calif Irvine, Coll Med, Dept Pathol & Microbiol, Irvine, CA 92697 USA
[3] Univ Calif Irvine, Coll Med, Dept Mol Genet, Irvine, CA 92697 USA
关键词
D O I
10.1021/bi048645p
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Mammalian defensins are abundant antimicrobial peptides that contribute to host defense. They are characterized by several conserved amino acids, including six invariant cysteine residues which form three intramolecular disulfide bonds and stabilize the tertiary structure. Cryptdin-4 (Crp4), a mouse alpha-defensin with potent in vitro bactericidal activity, has a primary structure distinct from all known alpha-defensins in that its polypeptide backbone uniquely lacks three residues between Cys(IV) and Cys(V). NMR diffusion experiments showed that Crp4 is monomeric in solution, and its three-dimensional solution structure, determined by two-dimensional proton NMR, consists of a triple-stranded antiparallel beta-sheet with the beta-strands joined to each other by a series of tight turns and a beta-hairpin. However, the overall beta-sheet content in Crp4 is lower than that of other alpha-defensin structures, while the shape and orientation of the Crp4 beta-hairpin also differ from those of other alpha-defensin structures. These structural characteristics combined with the high overall cationicity of Crp4 may contribute to its broad bactericidal spectrum and membrane disruptive activity.
引用
收藏
页码:15759 / 15766
页数:8
相关论文
共 55 条
[1]   Secretion of microbicidal α-defensins by intestinal Paneth cells in response to bacteria [J].
Ayabe, T ;
Satchell, DP ;
Wilson, CL ;
Parks, WC ;
Selsted, ME ;
Ouellette, AJ .
NATURE IMMUNOLOGY, 2000, 1 (02) :113-118
[2]   The isolation and characterization of a novel corticostatin/defensin-like peptide from the kidney [J].
Bateman, A ;
MacLeod, RJ ;
Lembessis, P ;
Hu, J ;
Esch, F ;
Solomon, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (18) :10654-10659
[3]   Defensins and innate host defence of the gastrointestinal tract [J].
Bevins, CL ;
Martin-Porter, E ;
Ganz, T .
GUT, 1999, 45 (06) :911-915
[4]   COHERENCE TRANSFER BY ISOTROPIC MIXING - APPLICATION TO PROTON CORRELATION SPECTROSCOPY [J].
BRAUNSCHWEILER, L ;
ERNST, RR .
JOURNAL OF MAGNETIC RESONANCE, 1983, 53 (03) :521-528
[5]   Simple, distortion-free homonuclear spectra of peptides and nucleic acids in water using excitation sculpting [J].
Callihan, D ;
West, J ;
Kumar, S ;
Schweitzer, BI ;
Logan, TM .
JOURNAL OF MAGNETIC RESONANCE SERIES B, 1996, 112 (01) :82-85
[6]   Identification of defensin-1, defensin-2, and CAP37/azurocidin as T-cell chemoattractant proteins released from interleukin-8-stimulated neutrophils [J].
Chertov, O ;
Michiel, DF ;
Xu, LL ;
Wang, JM ;
Tani, K ;
Murphy, WJ ;
Longo, DL ;
Taub, DD ;
Oppenheim, JJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (06) :2935-2940
[7]   Minidefensins and other antimicrobial peptides: candidate anti-HIV microbicides [J].
Cole, AM .
EXPERT OPINION ON THERAPEUTIC TARGETS, 2003, 7 (03) :329-341
[8]   NMRPIPE - A MULTIDIMENSIONAL SPECTRAL PROCESSING SYSTEM BASED ON UNIX PIPES [J].
DELAGLIO, F ;
GRZESIEK, S ;
VUISTER, GW ;
ZHU, G ;
PFEIFER, J ;
BAX, A .
JOURNAL OF BIOMOLECULAR NMR, 1995, 6 (03) :277-293
[9]   Diversity of antimicrobial peptides and their mechanisms of action [J].
Epand, RM ;
Vogel, HJ .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1999, 1462 (1-2) :11-28
[10]   DEFENSINS - NATURAL PEPTIDE ANTIBIOTICS OF HUMAN-NEUTROPHILS [J].
GANZ, T ;
SELSTED, ME ;
SZKLAREK, D ;
HARWIG, SSL ;
DAHER, K ;
BAINTON, DF ;
LEHRER, RI .
JOURNAL OF CLINICAL INVESTIGATION, 1985, 76 (04) :1427-1435