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1 gold, magnetic iron oxide nanoparticles and filamentous bacteriophage.
2 toire of chimaeric polypeptides displayed on filamentous bacteriophage.
3 of CTXphi, a V. cholerae-specific lysogenic filamentous bacteriophage.
4 holerae, are part of the genome of CTXphi, a filamentous bacteriophage.
5 y of 4.5 x 10(9) members displayed on pIX of filamentous bacteriophage.
6 synthetic antibody fragment and displayed on filamentous bacteriophage.
7 CTXphi is a lysogenic, filamentous bacteriophage.
8 ra toxin, resides in the genome of CTXphi, a filamentous bacteriophage.
9 can be selected from libraries displayed on filamentous bacteriophage.
10 e design of peptide display systems based on filamentous bacteriophage.
11 ticular task can be selected from them using filamentous bacteriophage.
12 ermostability of PH75 relative to mesophilic filamentous bacteriophages.
13 text of the Ad fiber knob on the surfaces of filamentous bacteriophages.
14 The repertoire was cloned for display on filamentous bacteriophage (5.5 x 10(8) clones), and sele
15 of large macromolecules such as enzymes and filamentous bacteriophages across bacterial outer membra
16 es, differences between class I and class II filamentous bacteriophages, and the assembly process.
18 vity-based protease quantification utilizing filamentous bacteriophage as an exponentially amplifiabl
20 e determine the structure of pIV from the f1 filamentous bacteriophage at 2.7 A resolution by cryo-el
21 IV and pXI, are required for assembly of the filamentous bacteriophage at the envelope of Escherichia
22 strains often express a genomically encoded filamentous bacteriophage called MDAPhi, which promotes
23 xisting libraries constructed for display on filamentous bacteriophage can be screened by PECS withou
25 ed sharply between genes V and VII of IKe, a filamentous bacteriophage classed with the Ff group (pha
27 in molecular biology and biotechnology, the filamentous bacteriophages continue to serve as model sy
30 olera toxin are located on the genome of the filamentous bacteriophage, CTXvarphi, that integrates as
31 nes for CT are shown here to be encoded by a filamentous bacteriophage (designated CTXphi), which is
35 cently been great interest in the use of the filamentous bacteriophage fd as a vehicle for the displa
40 a new system for producing hybrid virions of filamentous bacteriophage fd simultaneously displaying t
41 rate the use of a dually modified version of filamentous bacteriophage Fd that produces significantly
42 he minor coat protein pIII at one end of the filamentous bacteriophage fd, mediates the infection of
44 lical polymers, including bacterial pili and filamentous bacteriophage, have been seen as refractory
45 body repertoires displayed on the surface of filamentous bacteriophage in a process that mimics the p
50 insertion of the major coat protein of these filamentous bacteriophages into the membrane of the host
54 re, we show that the gene 3 protein (g3p) of filamentous bacteriophage mediates potent generic bindin
55 of antibody (Ab) fragments on the surface of filamentous bacteriophage offers a way of making Ab with
59 eviously determined structural form found in filamentous bacteriophage particles demonstrate that it
60 ate NMR spectroscopy of magnetically aligned filamentous bacteriophage particles differs from that pr
61 ate NMR spectroscopy of magnetically aligned filamentous bacteriophage particles in solution is compa
62 y 1,265 nm, lending SM support for a shorter filamentous bacteriophage persistence length than previo
63 stalline milieux, DMPC/DHPC bicelles and the filamentous bacteriophage Pf1, show that the relative or
68 ibody (AB) fragments (Fab) on the surface of filamentous bacteriophage (phage) and selection of phage
70 d for templated organic polymers composed of filamentous bacteriophage-polyacrylamide biomacromolecul
72 n, and can be infectiously transmitted by, a filamentous bacteriophage, raising intriguing questions
74 cognizes a structure or complex found during filamentous bacteriophage replication, likely by targeti
76 bre diffraction patterns of well-aligned Pf1 filamentous bacteriophage show sharp layer-lines attribu
77 us for the presence of CTXPhi, the lysogenic filamentous bacteriophage that carries the cholera toxin
84 IX) are associated closely on the surface of filamentous bacteriophage that is opposite of the end ha
86 Here, a method is presented for engineering filamentous bacteriophage to display cocaine-binding pro
87 investigates the applicability of utilizing filamentous bacteriophages to display proteins expressed
89 f short peptides displayed on the surface of filamentous bacteriophage virions is demonstrated using
90 pilus, which is encoded by another lysogenic filamentous bacteriophage, VPIPhi, was also present in t
92 e known bacterial pili as well as any of the filamentous bacteriophages, which have been suggested to