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1.
J Biol Chem ; 299(12): 105429, 2023 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-37926282

RESUMEN

Virtually all bacterial species synthesize (p)ppGpp (guanosine penta- or tetraphosphate), a pleiotropic regulator of the so-called stringent response, which controls many aspects of cellular physiology and metabolism. In Escherichia coli, (p)ppGpp levels are controlled by two homologous enzymes: the (p)ppGpp synthetase RelA and the bifunctional synthetase/hydrolase SpoT. We recently identified several protein candidates that can modulate (p)ppGpp levels in E. coli. In this work, we show that the putative two-component system connector protein YmgB can promote SpoT-dependent accumulation of ppGpp in E. coli. Importantly, we determined that the control of SpoT activities by YmgB is independent of its proposed role in the two-component Rcs system, and these two functions can be uncoupled. Using genetic and structure-function analysis, we show that the regulation of SpoT activities by YmgB occurs by functional and direct binding in vivo and in vitro to the TGS and Helical domains of SpoT. These results further support the role of these domains in controlling the reciprocal enzymatic states.


Asunto(s)
Proteínas de Escherichia coli , Escherichia coli , Escherichia coli/metabolismo , Guanosina Pentafosfato/genética , Bacterias/metabolismo , Guanosina Tetrafosfato , Hidrolasas/metabolismo , Ligasas/genética , Ligasas/metabolismo , Regulación Bacteriana de la Expresión Génica , Proteínas de Escherichia coli/genética , Proteínas de Escherichia coli/metabolismo
2.
Elife ; 102021 07 29.
Artículo en Inglés | MEDLINE | ID: mdl-34323689

RESUMEN

Bacteria regulate their metabolism to adapt and survive adverse conditions, in particular to stressful downshifts in nutrient availability. These shifts trigger the so-called stringent response, coordinated by the signaling molecules guanosine tetra and pentaphosphate collectively referred to as (p)ppGpp. In Escherichia coli, accumulation of theses alarmones depends on the (p)ppGpp synthetase RelA and the bifunctional (p)ppGpp synthetase/hydrolase SpoT. A tight regulation of these intracellular activities is therefore crucial to rapidly adjust the (p)ppGpp levels in response to environmental stresses but also to avoid toxic consequences of (p)ppGpp over-accumulation. In this study, we show that the small protein NirD restrains RelA-dependent accumulation of (p)ppGpp and can inhibit the stringent response in E. coli. Mechanistically, our in vivo and in vitro studies reveal that NirD directly binds the catalytic domains of RelA to balance (p)ppGpp accumulation. Finally, we show that NirD can control RelA activity by directly inhibiting the rate of (p)ppGpp synthesis.


Asunto(s)
Proteínas de Escherichia coli/genética , Escherichia coli/genética , GTP Pirofosfoquinasa/genética , Nitrito Reductasas/genética , Escherichia coli/metabolismo , Proteínas de Escherichia coli/metabolismo , GTP Pirofosfoquinasa/metabolismo , Guanosina Pentafosfato/metabolismo , Nitrito Reductasas/metabolismo , Estrés Fisiológico
3.
Nat Commun ; 10(1): 5763, 2019 12 17.
Artículo en Inglés | MEDLINE | ID: mdl-31848343

RESUMEN

The stringent response is a general bacterial stress response that allows bacteria to adapt and survive adverse conditions. This reprogramming of cell physiology is caused by the accumulation of the alarmone (p)ppGpp which, in Escherichia coli, depends on the (p)ppGpp synthetase RelA and the bifunctional (p)ppGpp synthetase/hydrolase SpoT. Although conditions that control SpoT-dependent (p)ppGpp accumulation have been described, the molecular mechanisms regulating the switching from (p)ppGpp degradation to synthesis remain poorly understood. Here, we show that the protein YtfK promotes SpoT-dependent accumulation of (p)ppGpp in E. coli and is required for activation of the stringent response during phosphate and fatty acid starvation. Our results indicate that YtfK can interact with SpoT. We propose that YtfK activates the stringent response by tilting the catalytic balance of SpoT toward (p)ppGpp synthesis.


Asunto(s)
Proteínas de Escherichia coli/metabolismo , Escherichia coli/fisiología , Guanosina Pentafosfato/biosíntesis , Pirofosfatasas/metabolismo , Estrés Fisiológico
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