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1.
PLoS One ; 13(4): e0195449, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29624616

RESUMEN

Bacteriophage TP-84 is a well-characterized bacteriophage of historical interest. It is a member of the Siphoviridae, and infects a number of thermophilic Geobacillus (Bacillus) stearothermophilus strains. Its' 47.7-kbp double-stranded DNA genome revealed the presence of 81 coding sequences (CDSs) coding for polypeptides of 4 kDa or larger. Interestingly, all CDSs are oriented in the same direction, pointing to a dominant transcription direction of one DNA strand. Based on a homology search, a hypothetical function could be assigned to 31 CDSs. No RNA or DNA polymerase-coding genes were found on the bacteriophage genome indicating that TP-84 relies on the host's transcriptional and replication enzymes. The TP84 genome is tightly packed with CDSs, typically spaced by several-to-tens of bp or often overlapping. The genome contains five putative promoter-like sequences showing similarity to the host promoter consensus sequence and allowing for a 2-bp mismatch. In addition, ten putative rho-independent terminators were detected. Because the genome sequence shows essentially no similarity to any previously characterised bacteriophage, TP-84 should be considered a new species in an undefined genus within the Siphoviridae family. Thus a taxonomic proposal of a new Tp84virus genus has been accepted by the International Committee on Taxonomy of Viruses. The bioinformatics genome analysis was verified by confirmation of 33 TP-84 proteins, which included: a) cloning of a selected CDS in Escherichia coli, coding for a DNA single-stranded binding protein (SSB; gene TP84_63), b) purification and functional assays of the recombinant TP-84 SSB, which has been shown to improve PCR reactions, c) mass spectrometric (MS) analysis of TP-84 bacteriophage capsid proteins, d) purification of TP-84 endolysin activity, e) MS analysis of the host cells from infection time course.


Asunto(s)
Genoma Viral , Geobacillus stearothermophilus/virología , Siphoviridae/genética , Composición de Base , Secuencia de Bases , Biología Computacional , ADN Viral/genética , ADN Viral/metabolismo , Microscopía Electrónica de Transmisión , Anotación de Secuencia Molecular , Filogenia , Proteómica , Siphoviridae/clasificación , Siphoviridae/fisiología , Proteínas Virales/química , Proteínas Virales/genética , Proteínas Virales/fisiología
2.
Nucleic Acids Res ; 45(22): 13029-13042, 2017 Dec 15.
Artículo en Inglés | MEDLINE | ID: mdl-29069443

RESUMEN

The crystal structure of the large terminase from the Geobacillus stearothermophilus bacteriophage D6E shows a unique relative orientation of the N-terminal adenosine triphosphatase (ATPase) and C-terminal nuclease domains. This monomeric 'initiation' state with the two domains 'locked' together is stabilized via a conserved C-terminal arm, which may interact with the portal protein during motor assembly, as predicted for several bacteriophages. Further work supports the formation of an active oligomeric state: (i) AUC data demonstrate the presence of oligomers; (ii) mutational analysis reveals a trans-arginine finger, R158, indispensable for ATP hydrolysis; (iii) the location of this arginine is conserved with the HerA/FtsK ATPase superfamily; (iv) a molecular docking model of the pentamer is compatible with the location of the identified arginine finger. However, this pentameric model is structurally incompatible with the monomeric 'initiation' state and is supported by the observed increase in kcat of ATP hydrolysis, from 7.8 ± 0.1 min-1 to 457.7 ± 9.2 min-1 upon removal of the C-terminal nuclease domain. Taken together, these structural, biophysical and biochemical data suggest a model where transition from the 'initiation' state into a catalytically competent pentameric state, is accompanied by substantial domain rearrangements, triggered by the removal of the C-terminal arm from the ATPase active site.


Asunto(s)
Adenosina Trifosfato/metabolismo , Bacteriófagos/enzimología , Endodesoxirribonucleasas/metabolismo , Proteínas Virales/metabolismo , Adenosina Trifosfatasas/química , Adenosina Trifosfatasas/genética , Adenosina Trifosfatasas/metabolismo , Secuencia de Aminoácidos , Bacteriófagos/genética , Cristalografía por Rayos X , Endodesoxirribonucleasas/química , Endodesoxirribonucleasas/genética , Geobacillus stearothermophilus/virología , Calor , Hidrólisis , Modelos Moleculares , Mutación , Conformación Proteica , Multimerización de Proteína , Homología de Secuencia de Aminoácido , Proteínas Virales/química , Proteínas Virales/genética
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