Domain Organization in Clostridium botulinum Neurotoxin Type E Is Unique: Its Implication in Faster Translocation

被引:134
作者
Kumaran, Desigan [1 ]
Eswaramoorthy, Subramaniam [1 ]
Furey, William [2 ]
Navaza, Jorge [3 ]
Sax, Martin [2 ]
Swaminathan, Subramanyam [1 ]
机构
[1] Brookhaven Natl Lab, Dept Biol, Upton, NY 11973 USA
[2] VA Med Ctr, Biocrystallog Lab, Pittsburgh, PA 15232 USA
[3] Inst Biol Struct, Lab Microscopie Elect Struct, Grenoble, France
关键词
botulinum neurotoxin; serotype E; translocation; quaternary structure; domain organization; H-CC-DOMAIN; STRUCTURAL-ANALYSIS; CRYSTAL-STRUCTURE; PROTEIN-RECEPTOR; BINDING-SITES; TETANUS TOXIN; HEAVY; CRYSTALLOGRAPHY; PURIFICATION; SOFTWARE;
D O I
10.1016/j.jmb.2008.12.027
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
Clostridium botulinum produces seven antigenically distinct neurotoxins [C. botulinum neurotoxins (BoNTs) A-G] sharing a significant sequence homology. Based on sequence and functional similarity, it was believed that their three-dimensional structures will also be similar. Indeed, the crystal structures of BoNTs A and B exhibit similar fold and domain association where the translocation domain is flanked on either side by binding and catalytic domains. Here, we report the crystal structure of BoNT E holotoxin and show that the domain association is different and unique, although the individual domains are similar to those of BoNTs A and B. In BoNT E, both the binding domain and the catalytic domain are on the same side of the translocation domain, and all three have mutual interfaces. This unique association may have an effect on the rate of translocation, with the molecule strategically positioned in the vesicle for quick entry into cytosol. Botulism, the disease caused by BoNT E, sets in faster than any other serotype because of its speedy internalization and translocation, and the present structure offers a credible explanation. We propose that the translocation domain in other BoNTs follows a two-step process to attain translocation-competent conformation as in BoNT E. We also suggest that this translocation-competent conformation in BoNT E is a probable reason for its faster toxic rate compared to BoNT A. However, this needs further experimental elucidation. (C) 2008 Elsevier Ltd. All rights reserved.
引用
收藏
页码:233 / 245
页数:13
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