Bacteriophage T4 capsid: A unique platform for efficient surface assembly of macromolecular complexes

被引:40
作者
Li, Qin
Shivachandra, Sathish B.
Leppla, Stephen H.
Rao, Venigalla B.
机构
[1] Catholic Univ Amer, Dept Biol, Washington, DC 20064 USA
[2] NIAID, Lab Bacterial Dis, NIH, Bethesda, MD 20892 USA
关键词
phage T4; macromolecular assembly; Hoc; Soc; phage display;
D O I
10.1016/j.jmb.2006.08.049
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
We report the first description of a macromolecular complex display system using bacteriophage T4. Decorated with two dispensable outer capsid proteins, Hoc (155 copies) and Soc (810 copies), the 120 mn x 86 nm T4 capsid particle offers a unique binding site-rich platform for surface assembly of hetero-oligomeric complexes. To display the 710 kDa anthrax toxin complex, two bipartite functional fusion proteins, LF-Hoc and LFn-Soc, were constructed. Using a defined in vitro binding system, sequential assembly was performed by first attaching LF-Hoc and/or LFn-Soc to hoc(-)soc(-) phage, saturating the Hoc and Soc binding sites. Trypsin-nicked PA63 was then assembled into heptamers through specific interaction with the capsid-exposed LFn domain. EF was then attached to the unoccupied sites of PA63 heptamers, completing the assembly of the tripartite anthrax toxin. Negative electron microscopy showed decoration of each capsid with a layer of heptameric PA63 rings. Up to 229 anthrax toxin complexes, equivalent to a total of 2400 protein molecules and a mass of about 133 MDa (2.7 times the mass of capsid shell), were anchored on a single particle, making it the highest density display reported on any virus. The phage T4 capsid lattice provides a stable biological platform allowing maximum display of large hetero-oligomeric complexes in vitro and offers insights for developing novel vaccines, analysis of protein-protein interactions, and structure determination of complexes. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:577 / 588
页数:12
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