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1 a hybrid between adeno-associated virus and filamentous phage.
2 re expressed only when cells are infected by filamentous phage.
3 ed in the context of the pIII protein of M13 filamentous phage.
4 ngle-chain Fv fragments (scFvs) displayed on filamentous phage.
5 e the genome of any previously characterized filamentous phage.
6 biopanning with a random peptide library on filamentous phage.
7 natorial library displayed on the surface of filamentous phage.
8 in vivo whether it supports the assembly of filamentous phages.
9 protein (pII) of Escherichia coli F-specific filamentous phages.
10 nnel required for the assembly and export of filamentous phage across the outer membrane of Escherich
12 Genomic analysis suggests that additional filamentous phages also exploit chromosome-encoded outer
13 library by display of expressed proteins on filamentous phage and affinity selection for binding to
14 The repertoires of domains were displayed on filamentous phage and denatured (at 80 degrees C in pH 7
15 Fab fragment of the antibody 17E8 (h17E8) on filamentous phage and sorted for binding to an immobiliz
16 x 10(6) different members) was displayed on filamentous phage and subjected to affinity selection wi
17 gene expression of the minor coat protein of filamentous phage and suggest that some ORF- clones may
18 This report summarizes the properties of filamentous phage and the proteins required for their as
21 be successfully displayed on the surface of filamentous phage, and after phosphorylation in vitro, c
22 rt of group A colicins, for infection by the filamentous phage, and for maintenance of the integrity
23 sing cassette mutagenesis, then displayed on filamentous phage, and screened for proteins retaining h
24 ger zinc finger proteins (ZFPs) displayed on filamentous phage, and selected for ZFPs that bound alon
30 how here that ATP hydrolysis is required for filamentous phage assembly and that the proton motive fo
31 bacteria, type II and type III secretion and filamentous phage assembly systems use related outer mem
32 e functional and structural requirements for filamentous phage assembly, and they may provide guideli
35 aquaticus DNA polymerase I is displayed on a filamentous phage by fusing it to a pIII coat protein, a
36 These data demonstrate that N. gonorrhoeae filamentous phage can induce antibodies with anti-gonoco
37 provide information on the requirements for filamentous phage coat assembly, and provide improved sc
40 wn as Shiga toxin producing E. coli) and the filamentous phage CTXphi, that carries genes encoding ch
41 rains of Vibrio cholerae are lysogens of the filamentous phage CTXphi, which carries the genes for ch
42 d converts to a pathogen upon infection by a filamentous phage, CTXPhi, that transmits the cholera to
47 icity of OmpT by two complementary substrate filamentous phage display methods: (i) in situ cleavage
56 any bacteria to secrete proteins, toxins, or filamentous phages; extrude type IV pili (T4P); or take
59 me overlapping genes II and X carried by the filamentous phage f1 genome are proteins with required b
62 of in-frame overlapping genes II and X from filamentous phage f1 to determine if translational contr
64 , F-actin, microtubules, and viruses such as filamentous phage fd and tobacco mosaic virus (TMV), as
66 the g3p-D1D2 fragment (residues 2-217) from filamentous phage fd to 1.9 A resolution and compared it
69 pparent in capsid subunits of the mesophilic filamentous phages, fd, Pf1, and Pf3, previously examine
71 torial libraries displayed on the surface of filamentous phage has become an important methodology fo
73 hough many different display platforms using filamentous phage have been described, no comprehensive
74 hat encodes TCP has also been described as a filamentous phage; however, these sequences are unlike t
78 sequences of the integration sites of other filamentous phages indicates that the XerCD recombinases
79 hich can be induced in Escherichia coli upon filamentous phage infection (specifically phage secretin
80 ty of stressful conditions or agents such as filamentous phage infection, ethanol treatment, osmotic
83 guish isotropic and anisotropic solutions of filamentous phages is consistent with previously reporte
87 nly used bicelle, poly(ethylene glycol), and filamentous phage liquid crystalline media, dipolar coup
88 eriplasm of E. coli or at the surface of the filamentous phage M13 retained the immunological specifi
89 eophylline-binding RNA aptamer, dissolved in filamentous phage medium, and used to investigate the lo
90 enesis, protein secretion, DNA transfer, and filamentous phage morphogenesis systems are thought to p
91 n selection to conserve the basic pattern of filamentous phage mRNAs, the major mRNAs representing ge
92 cteristic of cholera, are encoded on a novel filamentous phage named CTXPhi, has resulted in a renewe
93 been developed that is capable of assembling filamentous phage only upon addition of exogenous thiore
95 comparative (1)H NMR metabonomic analyses of filamentous phage pf1 infection in planktonic cultures o
102 bulk production, bio-nanostructures such as filamentous phage showed great potential in materials sy
105 ology were preserved and re-formatted in the filamentous phage system to allow direct selection of ca
109 t regulate production of CTXphi, a temperate filamentous phage that infects Vibrio cholerae and encod
111 st within the same filaments, in contrast to filamentous phages that have been described as belonging
113 f CTXphi in a way similar to those for other filamentous phages, the CTXphi RS2-encoded gene products
114 using alignment media of stretched gels and filamentous phage to determine the relative orientation
115 his article, we have analyzed the ability of filamentous phage to display a stable form of green fluo
117 l OM integrity, and for class A colicins and filamentous phages to enter cells, its precise role has
119 on cell viability, Fab yield and display on filamentous phage using different vectors and bacterial
123 ng peptides displayed on the pIII protein of filamentous phage was used in biopanning experiments aga
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