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1 r normal growth conditions is implemented by guanosine tetraphosphate.
2 regulate the level of the signal nucleotide, guanosine tetraphosphate.
3 perphosphorylated nucleotide alarmone ppGpp (guanosine tetraphosphate), acts as a pivotal regulator o
4 f the S. mutans relA gene, which codes for a guanosine tetraphosphate and guanosine pentaphosphate [(
5 decreased synthesis of the second messenger guanosine tetraphosphate and limited induction of string
7 V. cholerae relaxed mutant to biosynthesize guanosine tetraphosphate and pentaphosphate was severely
9 at the level of transcription initiation via guanosine tetraphosphate and the alpha-helical DksA prot
11 ence of high intracellular concentrations of guanosine tetraphosphate; however, this effect was indep
15 oit the pathogen's life cycle to examine how guanosine tetraphosphate (ppGpp) and DksA cooperate to g
16 signalling system mediated by the alarmones guanosine tetraphosphate (ppGpp) and guanosine pentaphos
19 pe relA+ spoT+ strains with normal levels of guanosine tetraphosphate (ppGpp) and in ppGpp-deficient
21 rest by activating synthesis of the alarmone guanosine tetraphosphate (ppGpp) by the enzyme RelA, a s
25 t has been linked to this persister state is guanosine tetraphosphate (ppGpp), the alarmone that was
26 del is the reprogramming of transcription by guanosine tetraphosphate (ppGpp), which provides for the
27 E. coli cells synthesize a signal molecule, guanosine tetraphosphate (ppGpp), which serves as an eff
31 es transcriptional activation in response to guanosine tetraphosphate, ppGpp, according to the follow
32 utrient concentrations, nsd cells accumulate guanosine tetraphosphate, the cellular starvation signal
33 for its activation by the signal nucleotide, guanosine tetraphosphate, which accumulates in response