Results 151 to 160 of about 190,483 (202)
Bacteriophage T4 capsid as a nanocarrier for Peptide-N-Glycosidase F immobilization through self-assembly. [PDF]
Zhang L +9 more
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Engineering of Bacteriophage T4 Genome Using CRISPR-Cas9. [PDF]
Tao P, Wu X, Tang WC, Zhu J, Rao V.
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Journal of Molecular Biology, 1973
Abstract Concentrated suspensions of T4 phage crystallize spontaneously in the absence of tryptophan. The crystals, in one plane, contain repeated bilayers of phage in head to head and tail to tail contact, probably with tail fibers retracted. In the plane of each layer there is hexagonal packing of the phage.
J F, Speyer, L H, Khairallah
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Abstract Concentrated suspensions of T4 phage crystallize spontaneously in the absence of tryptophan. The crystals, in one plane, contain repeated bilayers of phage in head to head and tail to tail contact, probably with tail fibers retracted. In the plane of each layer there is hexagonal packing of the phage.
J F, Speyer, L H, Khairallah
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Recombination in bacteriophage T4
Journal of Cellular Physiology, 1967Several multifactor crosses have been performed in which all segregating genotypes were identified. The genetic map of T4 and mapping techniques are re-evaluated in light of the finding that double-mutant recombinants occur less frequently than those identified as wild-type.
A H, Doermann, D H, Parma
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Biochemical and Biophysical Research Communications, 1973
Abstract The nucleotide sequence of T4 tRNA Gly is: pGCGGAUAUCGUAUAAUG m GDAUUACCUCAGACUUCCAAψCUGAUGAUGUGAGTψCGAUUCUCAUUAUCCGCUCCA-OH. The sequence is compared with the sequences of five other tRNA Gly species.
S, Stahl, G, Paddock, J, Abelson
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Abstract The nucleotide sequence of T4 tRNA Gly is: pGCGGAUAUCGUAUAAUG m GDAUUACCUCAGACUUCCAAψCUGAUGAUGUGAGTψCGAUUCUCAUUAUCCGCUCCA-OH. The sequence is compared with the sequences of five other tRNA Gly species.
S, Stahl, G, Paddock, J, Abelson
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Nature New Biology, 1972
WHEN T4 bacteriophage infects Escherichia coli, the host tRNA complement is altered in two ways: (1) a tRNALeu is inactivated by endonucleolytic cleavage1–3 and sequencing has shown that this tRNA recognizes the codon CUG4,5; (2) seven or eight new tRNA species are introduced by the T4 genome6–8.
T C, Pinkerton, G, Paddock, J, Abelson
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WHEN T4 bacteriophage infects Escherichia coli, the host tRNA complement is altered in two ways: (1) a tRNALeu is inactivated by endonucleolytic cleavage1–3 and sequencing has shown that this tRNA recognizes the codon CUG4,5; (2) seven or eight new tRNA species are introduced by the T4 genome6–8.
T C, Pinkerton, G, Paddock, J, Abelson
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DNA Sequence, 1995
The complete nucleotide sequence of bacteriophage T4D gene 28 has been determined. Gene 28 product is a structural component of the viral baseplate for which an enzymatic activity has also been proposed.
Bova R. +8 more
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The complete nucleotide sequence of bacteriophage T4D gene 28 has been determined. Gene 28 product is a structural component of the viral baseplate for which an enzymatic activity has also been proposed.
Bova R. +8 more
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Assembly of the tail of bacteriophage T4
Journal of Supramolecular Structure, 1975AbstractThe protein products of at least 21 phage genes are needed for the formation of the tail of bacteriophage T4. Cells infected with amber mutants defective in these genes are blocked in the assembly process. By characterizing the intermediate structures and unassembled proteins accumulating in mutant‐infected cells, we have been able to delineate
Y, Kikuchi, J, King
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A catalogue of T4-type bacteriophages
Archives of Virology, 1997The T4-type of bacteriophages is broadly defined on the basis of particle morphology. It occurs in enterobacteria (125 representatives), acinetobacters, aeromonads, pseudomonads, and vibrios (16 isolates). In addition, 18 apparently unrelated phages with prolate heads and contractile tails are found in a wide range of bacteria.
H W, Ackermann, H M, Krisch
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Organization of DNA in bacteriophage T4
Journal of Molecular Biology, 1964A quantitative evaluation of the degree of preferred orientation of the DNA in bacteriophage T4 has been carried out, principally by the method of flow birefringence. The results indicate that the degree of preferred orientation is small, with about 9% of the DNA aligned preferentially along the long axis of the phage.
M, GELLERT, D R, DAVIES
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