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Biochemical Society Transactions|January 30, 2013
Archaeal biofilms: widespread and complexSabrina Fröls
Frontiers in Microbiology|January 9, 2019
Heavy Metal Ion Stress on <i>Halobacterium salinarum</i> R1 Planktonic Cells and BiofilmsSabrina Völkel, Sabrina Fröls, Felicitas Pfeifer
Biochemical Society Transactions|January 16, 2009
Reactions to UV damage in the model archaeon Sulfolobus solfataricusSabrina Fröls, Malcolm F White, Christa Schleper
Annual Review of Microbiology|July 2, 2013
Archaeal biofilms: the great unexploredAlvaro Orell, Sabrina Fröls, Sonja-Verena Albers
Environmental Microbiology|October 13, 2012
Biofilm formation by haloarchaeaSabrina Fröls, Mike Dyall-Smith, Felicitas Pfeifer
Frontiers in Microbiology|January 29, 2015
Novel pili-like surface structures of Halobacterium salinarum strain R1 are crucial for surface adhesionGerald Losensky, Lucia Vidakovic, Andreas Klingl, et al.
Virology|May 1, 2007
Elucidating the transcription cycle of the UV-inducible hyperthermophilic archaeal virus SSV1 by DNA microarraysSabrina Fröls, Paul M K Gordon, Mayi Arcellana Panlilio, et al.
Antimicrobial Agents and Chemotherapy|April 17, 2013
The papain inhibitor (SPI) of Streptomyces mobaraensis inhibits bacterial cysteine proteases and is an antagonist of bacterial growthStephan Zindel, Wendy E Kaman, Sabrina Fröls, et al.
Journal of Bacteriology|October 2, 2007
Response of the hyperthermophilic archaeon Sulfolobus solfataricus to UV damageSabrina Fröls, Paul M K Gordon, Mayi Arcellana Panlilio, et al.
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