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Structures of regulatory machinery reveal novel molecular mechanisms controlling B. subtilis nitrogen homeostasis.

Genes & Dev.. 2015-06;  29(11):451-464
Maria A. Schumacher, Naga babu Chinnam, Bonnie Cuthbert, Nam K. Tonthat and Travis Whitfill. Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA
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摘要

All cells must sense and adapt to changing nutrient availability. However, detailed molecular mechanisms coordinating such regulatory pathways remain poorly understood. In Bacillus subtilis, nitrogen homeostasis is controlled by a unique circuitry composed of the regulator TnrA, which is deactivated by feedback-inhibited glutamine synthetase (GS) during nitrogen excess and stabilized by GlnK upon nitrogen depletion, and the repressor GlnR. Here we describe a complete molecular dissection of this network. TnrA and GlnR, the global nitrogen homeostatic transcription regulators, are revealed as founders of a new structural family of dimeric DNA-binding proteins with C-terminal, flexible, effector-binding sensors t... More

关键词

glutamine synthetase; dodecamer; tetradecamer; TnrA/GlnR family; MerR family