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Molecular Microbiology|November 13, 2009
Photooxidative stress-induced and abundant small RNAs in Rhodobacter sphaeroidesBork A Berghoff, Jens Glaeser, Cynthia M Sharma, et al.Life Science Alliance|November 21, 2018
RNase E cleavage shapes the transcriptome of <i>Rhodobacter sphaeroides</i> and strongly impacts phototrophic growthKonrad U Förstner, Carina M Reuscher, Kerstin Haberzettl, et al.Plos One|November 2, 2016
The Conserved Dcw Gene Cluster of R. sphaeroides Is Preceded by an Uncommonly Extended 5' Leader Featuring the sRNA UpsMLennart Weber, Clemens Thoelken, Marcel Volk, et al.The FEBS Journal|October 15, 2016
Rhodobacter sphaeroides CryB is a bacterial cryptochrome with (6-4) photolyase activityAndrea von Zadow, Elisabeth Ignatz, Richard Pokorny, et al.Nucleic Acids Research|August 26, 2004
Thioredoxin can influence gene expression by affecting gyrase activityKuanyu Li, Cécile Pasternak, Elisabeth Härtig, et al.RNA Biology|June 13, 2014
RNase J is required for processing of a small number of RNAs in Rhodobacter sphaeroidesTom Rische-Grahl, Lennart Weber, Bernhard Remes, et al.Nature Structural & Molecular Biology|June 14, 2005
The archaeal exosome core is a hexameric ring structure with three catalytic subunitsEsben Lorentzen, Pamela Walter, Sebastien Fribourg, et al.Molecular Microbiology|November 3, 2006
Characterization of native and reconstituted exosome complexes from the hyperthermophilic archaeon Sulfolobus solfataricusPamela Walter, Franziska Klein, Esben Lorentzen, et al.Journal of Bacteriology|January 9, 2007
The AppA and PpsR proteins from Rhodobacter sphaeroides can establish a redox-dependent signal chain but fail to transmit blue-light signals in other bacteriaAndreas Jäger, Stephan Braatsch, Kerstin Haberzettl, et al.FEBS Letters|November 22, 2017
Nop5 interacts with the archaeal RNA exosomeA Susann Gauernack, Christian Lassek, Linlin Hou, et al.Pageof 12