The Bacterial Lectin FimH, a Target for Drug Discovery - Carbohydrate Inhibitors of Type 1 Fimbriae-Mediated Bacterial Adhesion

被引:161
作者
Hartmann, Mirja [1 ]
Lindhorst, Thisbe K. [1 ]
机构
[1] Univ Kiel, Inst Organ Chem, D-24098 Kiel, Germany
关键词
Lectins; Cell adhesion; Carbohydrates; Cluster effect; Inhibitors; ALPHA-MANNOSYL CLUSTERS; ESCHERICHIA-COLI; STRUCTURAL BASIS; OLIGOMANNOSIDE MIMETICS; ANTIADHESION DRUGS; CRYSTAL-STRUCTURE; BINDING; RECOGNITION; SALMONELLA; MEMBRANE;
D O I
10.1002/ejoc.201100407
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Adhesion is a prerequisite for bacteria to colonize cell surfaces. To accomplish cellular adhesion, many bacteria use carbohydrate-specific lectins, which are expressed as part of capillary protein appendages expanding from their surface, called fimbriae or pili. For bacteria, colonization of cell surfaces offers advantageous conditions to persist and multiply. For the host, however, bacterial colonization can be affiliated with severe health problems such as inflammation. Therefore, to combat bacterial adhesion and inflammatory diseases, investigation of the molecular and biophysical details of the relevant lectin-carbohydrate interactions is important. Understanding molecular carbohydrate recognition can lead to the development of high-affinity inhibitors of bacterial lectins. That way, interfering with the bacterial attachment to surfaces proves the vision of an antiadhesion therapy, among others, against uropathogenic E. coli (UPEC). One of the most important and best investigated bacterial lectins is the mannose-specific protein FimH, which is expressed on the tips of type 1 fimbriae. During the last 30 years, many natural as well as synthetic mannosidic ligands of FimH have been designed and tested for their inhibitory potencies. We report key results and comment on key problems and perspectives of this research.
引用
收藏
页码:3583 / 3609
页数:27
相关论文
共 111 条
[71]   High affinity fucose binding of Pseudomonas aeruginosa lectin PA-IIL:: 1.0 Å resolution crystal structure of the complex combined with thermodynamics and computational chemistry approaches [J].
Mitchell, EP ;
Sabin, C ;
Snajdrová, L ;
Pokorná, M ;
Perret, S ;
Gautier, C ;
Hofr, C ;
Gilboa-Garber, N ;
Koca, J ;
Wimmerová, M ;
Imberty, A .
PROTEINS-STRUCTURE FUNCTION AND BIOINFORMATICS, 2005, 58 (03) :735-746
[72]   Multivalency in supramolecular chemistry and nanofabrication [J].
Mulder, A ;
Huskens, J ;
Reinhoudt, DN .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2004, 2 (23) :3409-3424
[73]  
Nagahori N, 2002, CHEMBIOCHEM, V3, P836, DOI 10.1002/1439-7633(20020902)3:9<836::AID-CBIC836>3.0.CO
[74]  
2-2
[75]   OLIGOMANNOSIDE-TYPE GLYCOPEPTIDES INHIBITING ADHESION OF ESCHERICHIA-COLI STRAINS MEDIATED BY TYPE-1 PILI - PREPARATION OF POTENT INHIBITORS FROM PLANT GLYCOPROTEINS [J].
NEESER, JR ;
KOELLREUTTER, B ;
WUERSCH, P .
INFECTION AND IMMUNITY, 1986, 52 (02) :428-436
[76]  
Oelschlaeger Tobias A, 2002, Curr Opin Urol, V12, P33, DOI 10.1097/00042307-200201000-00007
[77]   Anti-adhesion therapy of bacterial diseases: prospects and problems [J].
Ofek, I ;
Hasy, DL ;
Sharon, N .
FEMS IMMUNOLOGY AND MEDICAL MICROBIOLOGY, 2003, 38 (03) :181-191
[78]   Intervention with bacterial adhesion by multivalent carbohydrates [J].
Pieters, Roland J. .
MEDICINAL RESEARCH REVIEWS, 2007, 27 (06) :796-816
[79]   Arrays of self-assembled monolayers for studying inhibition of bacterial adhesion [J].
Qian, XP ;
Metallo, SJ ;
Choi, IS ;
Wu, HK ;
Liang, MN ;
Whitesides, GM .
ANALYTICAL CHEMISTRY, 2002, 74 (08) :1805-1810
[80]   Expression of the carbohydrate recognition domain of FimH and development of a competitive binding assay [J].
Rabbani, Said ;
Jiang, Xiaohua ;
Schwardt, Oliver ;
Ernst, Beat .
ANALYTICAL BIOCHEMISTRY, 2010, 407 (02) :188-195