Role of Alarmones in The Protection of Escherichia coli Against Stress
Escherichia coli has evolved in environments which may commonly be acidic and thus developed adaptive mechanisms to minimise acid-induced damage. It has previously been observed that adapted bacteria to moderately acidic conditions can grow in media considerably below their optimum growth pH.
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Predation threat affects isotope ratios of planktonic consumers. [PDF]
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Inter- and intra-bacterial strain diversity remains the "elephant in the (living) room". [PDF]
Valcek A +15 more
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RelQ-mediated alarmone signalling regulates growth, stress-induced biofilm formation and spore accumulation in Clostridioides difficile. [PDF]
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Pathogenicity and virulence of <i>Erwinia amylovora</i>. [PDF]
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Pioneering role of RNA in the early evolution of life. [PDF]
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Essential role of proline synthesis and the one-carbon metabolism pathways for systemic virulence of <i>Streptococcus pneumoniae</i>. [PDF]
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From dusty shelves toward the spotlight: growing evidence for Ap4A as an alarmone in maintaining RNA stability and proteostasis. [PDF]
Young MK, Wang JD.
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