The phage ø29 protein p4, that controls viral late transcription, was highly purified from Escherichia coli cells harbouring a gene 4-containing plasmid. This protein, representing about 6% of the total cellular protein, was obtained in a highly purified form. The protein was characterized as p4 by amino acid analysis and NH2—terminal sequence determination. The purified protein was active in an in vitro transcription assay, allowing specific initiation of transcription at the ø 29 A3 late promoter in the presence of Bacillus subtilis α43 -RNA polymerase holoenzyme.Peer reviewe
Bacteriophage P4 autonomous replication may result in the lytic cycle or in plasmid maintenance, dep...
The phage Φ29 regulatory protein p4 activates the late promoter A3 by stabilizing the binding of Bac...
Two new expression vectors have been constructed to take advantage of several useful properties of b...
AbstractTranscription of the genome of Bacillus subtilis phage Φ29 is tightly controlled, taking pla...
The genetic element P4 can propagate as a temperate phage or as a multicopy plasmid in its host Esch...
Processes such as DNA replication, transcription, and recombination involve the concerted action of...
Studies on the regulation of phage Ø29 gene expression revealed a new mechanism to accomplish simult...
We have resolved the in vitro late transcription system of vaccinia virus into four components consi...
The putative region for the control of late transcription of the Bacillus subtllls phage Nf has been...
Abstract This article reviews the current state of understanding of the regulated transcription of t...
Regulatory protein p4 of Bacillus subtilis phage Φ29 activates transcription from the viral late A3 ...
Abstract This article reviews the current state of understanding of the regulated transcription of t...
In the phage-plasmid P4, both lysogenic and lytic functions are coded by the same operon. Early afte...
The parasitic life cycle of viruses involves the obligatory subversion of the host's macromolecular ...
The propagation of bacteriophages and other mobile genetic elements requires exploitation of the pha...
Bacteriophage P4 autonomous replication may result in the lytic cycle or in plasmid maintenance, dep...
The phage Φ29 regulatory protein p4 activates the late promoter A3 by stabilizing the binding of Bac...
Two new expression vectors have been constructed to take advantage of several useful properties of b...
AbstractTranscription of the genome of Bacillus subtilis phage Φ29 is tightly controlled, taking pla...
The genetic element P4 can propagate as a temperate phage or as a multicopy plasmid in its host Esch...
Processes such as DNA replication, transcription, and recombination involve the concerted action of...
Studies on the regulation of phage Ø29 gene expression revealed a new mechanism to accomplish simult...
We have resolved the in vitro late transcription system of vaccinia virus into four components consi...
The putative region for the control of late transcription of the Bacillus subtllls phage Nf has been...
Abstract This article reviews the current state of understanding of the regulated transcription of t...
Regulatory protein p4 of Bacillus subtilis phage Φ29 activates transcription from the viral late A3 ...
Abstract This article reviews the current state of understanding of the regulated transcription of t...
In the phage-plasmid P4, both lysogenic and lytic functions are coded by the same operon. Early afte...
The parasitic life cycle of viruses involves the obligatory subversion of the host's macromolecular ...
The propagation of bacteriophages and other mobile genetic elements requires exploitation of the pha...
Bacteriophage P4 autonomous replication may result in the lytic cycle or in plasmid maintenance, dep...
The phage Φ29 regulatory protein p4 activates the late promoter A3 by stabilizing the binding of Bac...
Two new expression vectors have been constructed to take advantage of several useful properties of b...