The Experts below are selected from a list of 15 Experts worldwide ranked by ideXlab platform

Matus Hajduk - One of the best experts on this subject based on the ideXlab platform.

  • phiSITE: database of gene regulation in bacterioPhages
    2016
    Co-Authors: Lubos Klucar, Matej Stano, Matus Hajduk
    Abstract:

    We have developed phiSITE, database of gene regulation in bacterioPhages. To date it contains detailed information about more than 700 experi-mentally confirmed or predicted regulatory elements (promoters, operators, terminators and attachment sites) from 32 bacterioPhages belonging to Siphoviridae, Myoviridae and Podoviridae families. The database is manually curated, the data are collected mainly form scientific papers, cross-referenced with other database resources (EMBL, UniProt, NCBI taxonomy database, NCBI Genome, ICTVdb, PubMed Central) and stored in SQL based database system. The system provides full text search for regulatory elements, graphical visualization of Phage genomes and several export options. In addition, visualizations of gene regulatory networks for five Phages (Bacillus Phage GA-1, Enterobacteria Phage Lambda, Enterobacteria Phage Mu, Enterobacteria Phage P2 and Mycoplasma Phage P1) have been defined and made available. The phiSITE is accessible a

Hajduk Matus - One of the best experts on this subject based on the ideXlab platform.

  • phiSITE: database of gene regulation in bacterioPhages
    Oxford University Press, 2026
    Co-Authors: Klucar Lubos, Stano Matej, Hajduk Matus
    Abstract:

    We have developed phiSITE, database of gene regulation in bacterioPhages. To date it contains detailed information about more than 700 experimentally confirmed or predicted regulatory elements (promoters, operators, terminators and attachment sites) from 32 bacterioPhages belonging to Siphoviridae, Myoviridae and Podoviridae families. The database is manually curated, the data are collected mainly form scientific papers, cross-referenced with other database resources (EMBL, UniProt, NCBI taxonomy database, NCBI Genome, ICTVdb, PubMed Central) and stored in SQL based database system. The system provides full text search for regulatory elements, graphical visualization of Phage genomes and several export options. In addition, visualizations of gene regulatory networks for five Phages (Bacillus Phage GA-1, Enterobacteria Phage Lambda, Enterobacteria Phage Mu, Enterobacteria Phage P2 and Mycoplasma Phage P1) have been defined and made available. The phiSITE is accessible at http://www.phisite.org/

Klucar Lubos - One of the best experts on this subject based on the ideXlab platform.

  • phiSITE: database of gene regulation in bacterioPhages
    Oxford University Press, 2026
    Co-Authors: Klucar Lubos, Stano Matej, Hajduk Matus
    Abstract:

    We have developed phiSITE, database of gene regulation in bacterioPhages. To date it contains detailed information about more than 700 experimentally confirmed or predicted regulatory elements (promoters, operators, terminators and attachment sites) from 32 bacterioPhages belonging to Siphoviridae, Myoviridae and Podoviridae families. The database is manually curated, the data are collected mainly form scientific papers, cross-referenced with other database resources (EMBL, UniProt, NCBI taxonomy database, NCBI Genome, ICTVdb, PubMed Central) and stored in SQL based database system. The system provides full text search for regulatory elements, graphical visualization of Phage genomes and several export options. In addition, visualizations of gene regulatory networks for five Phages (Bacillus Phage GA-1, Enterobacteria Phage Lambda, Enterobacteria Phage Mu, Enterobacteria Phage P2 and Mycoplasma Phage P1) have been defined and made available. The phiSITE is accessible at http://www.phisite.org/

Lubos Klucar - One of the best experts on this subject based on the ideXlab platform.

  • phiSITE: database of gene regulation in bacterioPhages
    2016
    Co-Authors: Lubos Klucar, Matej Stano, Matus Hajduk
    Abstract:

    We have developed phiSITE, database of gene regulation in bacterioPhages. To date it contains detailed information about more than 700 experi-mentally confirmed or predicted regulatory elements (promoters, operators, terminators and attachment sites) from 32 bacterioPhages belonging to Siphoviridae, Myoviridae and Podoviridae families. The database is manually curated, the data are collected mainly form scientific papers, cross-referenced with other database resources (EMBL, UniProt, NCBI taxonomy database, NCBI Genome, ICTVdb, PubMed Central) and stored in SQL based database system. The system provides full text search for regulatory elements, graphical visualization of Phage genomes and several export options. In addition, visualizations of gene regulatory networks for five Phages (Bacillus Phage GA-1, Enterobacteria Phage Lambda, Enterobacteria Phage Mu, Enterobacteria Phage P2 and Mycoplasma Phage P1) have been defined and made available. The phiSITE is accessible a

Matej Stano - One of the best experts on this subject based on the ideXlab platform.

  • phiSITE: database of gene regulation in bacterioPhages
    2016
    Co-Authors: Lubos Klucar, Matej Stano, Matus Hajduk
    Abstract:

    We have developed phiSITE, database of gene regulation in bacterioPhages. To date it contains detailed information about more than 700 experi-mentally confirmed or predicted regulatory elements (promoters, operators, terminators and attachment sites) from 32 bacterioPhages belonging to Siphoviridae, Myoviridae and Podoviridae families. The database is manually curated, the data are collected mainly form scientific papers, cross-referenced with other database resources (EMBL, UniProt, NCBI taxonomy database, NCBI Genome, ICTVdb, PubMed Central) and stored in SQL based database system. The system provides full text search for regulatory elements, graphical visualization of Phage genomes and several export options. In addition, visualizations of gene regulatory networks for five Phages (Bacillus Phage GA-1, Enterobacteria Phage Lambda, Enterobacteria Phage Mu, Enterobacteria Phage P2 and Mycoplasma Phage P1) have been defined and made available. The phiSITE is accessible a