TY - JOUR
T1 - Of energy and survival incognito
T2 - A relationship between viable but non-culturable cells formation and inorganic polyphosphate and formate metabolism in Campylobacter jejuni
AU - Kassem, Issmat I.
AU - Chandrashekhar, Kshipra
AU - Rajashekara, Gireesh
PY - 2013
Y1 - 2013
N2 - Campylobacter jejuni is a Gram-negative food-borne bacterium that can cause mild to serious diseases in humans. A variety of stress conditions including exposure to formic acid, a weak organic acid, can cause C. jejuni to form viable but non-culturable cells (VBNC), which was proposed as a potential survival mechanism. The inability to detect C. jejuni VBNC using standard culturing techniques may increase the risk of exposure to foods contaminated with this pathogen. However, little is known about the cellular mechanisms and triggers governing VBNC formation. Here, we discuss novel mechanisms that potentially affect VBNC formation in C. jejuni and emphasize the impact of formic acid on this process. Specifically, we highlight findings that show that impairing inorganic polyphosphate (poly-P) metabolism reduces the ability of C. jejuni to form VBNC in a medium containing formic acid. We also discuss the potential effect of poly-P and formate metabolism on energy homeostasis and cognate VBNC formation. The relationship between poly-P metabolism and VBNC formation under acid stress has only recently been identified and may represent a breakthrough in understanding this phenomenon and its impact on food safety.
AB - Campylobacter jejuni is a Gram-negative food-borne bacterium that can cause mild to serious diseases in humans. A variety of stress conditions including exposure to formic acid, a weak organic acid, can cause C. jejuni to form viable but non-culturable cells (VBNC), which was proposed as a potential survival mechanism. The inability to detect C. jejuni VBNC using standard culturing techniques may increase the risk of exposure to foods contaminated with this pathogen. However, little is known about the cellular mechanisms and triggers governing VBNC formation. Here, we discuss novel mechanisms that potentially affect VBNC formation in C. jejuni and emphasize the impact of formic acid on this process. Specifically, we highlight findings that show that impairing inorganic polyphosphate (poly-P) metabolism reduces the ability of C. jejuni to form VBNC in a medium containing formic acid. We also discuss the potential effect of poly-P and formate metabolism on energy homeostasis and cognate VBNC formation. The relationship between poly-P metabolism and VBNC formation under acid stress has only recently been identified and may represent a breakthrough in understanding this phenomenon and its impact on food safety.
KW - Acid stress
KW - Campylobacter jejuni
KW - Energy
KW - Formate dehydrogenase
KW - Formate metabolism
KW - Inorganic polyphosphate
KW - Polyphosphate kinase
KW - Viable but non-culturable cells
UR - http://www.scopus.com/inward/record.url?scp=84885339746&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84885339746&partnerID=8YFLogxK
U2 - 10.3389/fmicb.2013.00183
DO - 10.3389/fmicb.2013.00183
M3 - Short survey
AN - SCOPUS:84885339746
SN - 1664-302X
VL - 4
JO - Frontiers in Microbiology
JF - Frontiers in Microbiology
IS - JUL
ER -