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General transcription factor specified global gene regulation in archaea
Author(s) -
Marc T. Facciotti,
David J. Reiss,
Min Pan,
Amardeep Kaur,
Madhavi Vuthoori,
Richard Bonneau,
Paul Shan,
Alok Srivastava,
Samuel Donohoe,
Leroy Hood,
Nitin S. Baliga
Publication year - 2007
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.0611663104
Subject(s) - archaea , biology , gene , genetics , transcription factor , gene expression , computational biology , regulation of gene expression , promoter , transcriptional regulation , transcription (linguistics) , microbiology and biotechnology , linguistics , philosophy
Cells responding to dramatic environmental changes or undergoing a developmental switch typically change the expression of numerous genes. In bacteria, sigma factors regulate much of this process, whereas in eukaryotes, four RNA polymerases and a multiplicity of generalized transcription factors (GTFs) are required. Here, by using a systems approach, we provide experimental evidence (including protein-coimmunoprecipitation, ChIP-Chip, GTF perturbation and knockout, and measurement of transcriptional changes in these genetically perturbed strains) for how archaea likely accomplish similar large-scale transcriptional segregation and modulation of physiological functions. We are able to associate GTFs to nearly half of all putative promoters and show evidence for at least 7 of the possible 42 functional GTF pairs. This report represents a significant contribution toward closing the gap in our understanding of gene regulation by GTFs for all three domains of life and provides an example for how to use various experimental techniques to rapidly learn significant portions of a global gene regulatory network of organisms for which little has been previously known.

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