TY - JOUR
T1 - Altered bacterial metabolism, not coenzyme Q content, is responsible for the lifespan extension in Caenorhabditis elegans fed an Escherichia coli diet lacking coenzyme Q
AU - Saiki, Ryoichi
AU - Lunceford, Adam L.
AU - Bixler, Tarra
AU - Dang, Peter
AU - Lee, Wendy
AU - Furukawa, Satoru
AU - Larsen, Pamela L.
AU - Clarke, Catherine F.
PY - 2008/6
Y1 - 2008/6
N2 - Coenzyme Qn is a fully substituted benzoquinone containing a polyisoprene tail of distinct numbers (n) of isoprene groups. Caenorhabditis elegans fed Escherichia coli devoid of Q8 have a significant lifespan extension when compared to C. elegans fed a standard 'Q-replete' E. coli diet. Here we examine possible mechanisms for the lifespan extension caused by the Q-less E. coli diet. A bioassay for Q uptake shows that a water-soluble formulation of Q10 is effectively taken up by both clk-1 mutant and wild-type nematodes, but does not reverse lifespan extension mediated by the Q-less E. coli diet, indicating that lifespan extension is not due to the absence of dietary Q per se. The enhanced longevity mediated by the Q-less E. coli diet cannot be attributed to dietary restriction, different Qn isoforms, reduced pathogenesis or slowed growth of the Q-less E. coli, and in fact requires E. coli viability. Q-less E. coli have defects in respiratory metabolism. C. elegans fed Q-replete E. coli mutants with similarly impaired respiratory metabolism due to defects in complex V also show a pronounced lifespan extension, although not as dramatic as those fed the respiratory deficient Q-less E. coli diet. The data suggest that feeding respiratory incompetent E. coli, whether Q-less or Q-replete, produces a robust life extension in wild-type C. elegans. We believe that the fermentation-based metabolism of the E. coli diet is an important parameter of C. elegans longevity.
AB - Coenzyme Qn is a fully substituted benzoquinone containing a polyisoprene tail of distinct numbers (n) of isoprene groups. Caenorhabditis elegans fed Escherichia coli devoid of Q8 have a significant lifespan extension when compared to C. elegans fed a standard 'Q-replete' E. coli diet. Here we examine possible mechanisms for the lifespan extension caused by the Q-less E. coli diet. A bioassay for Q uptake shows that a water-soluble formulation of Q10 is effectively taken up by both clk-1 mutant and wild-type nematodes, but does not reverse lifespan extension mediated by the Q-less E. coli diet, indicating that lifespan extension is not due to the absence of dietary Q per se. The enhanced longevity mediated by the Q-less E. coli diet cannot be attributed to dietary restriction, different Qn isoforms, reduced pathogenesis or slowed growth of the Q-less E. coli, and in fact requires E. coli viability. Q-less E. coli have defects in respiratory metabolism. C. elegans fed Q-replete E. coli mutants with similarly impaired respiratory metabolism due to defects in complex V also show a pronounced lifespan extension, although not as dramatic as those fed the respiratory deficient Q-less E. coli diet. The data suggest that feeding respiratory incompetent E. coli, whether Q-less or Q-replete, produces a robust life extension in wild-type C. elegans. We believe that the fermentation-based metabolism of the E. coli diet is an important parameter of C. elegans longevity.
KW - Aging
KW - Caenorhabditis elegans
KW - Coenzyme Q or ubiquinone
KW - clk-1
KW - dietaryrestriction
KW - respiratorydefective Escherichia coli
UR - http://www.scopus.com/inward/record.url?scp=43449139142&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=43449139142&partnerID=8YFLogxK
U2 - 10.1111/j.1474-9726.2008.00378.x
DO - 10.1111/j.1474-9726.2008.00378.x
M3 - Article
C2 - 18267002
AN - SCOPUS:43449139142
SN - 1474-9718
VL - 7
SP - 291
EP - 304
JO - Aging cell
JF - Aging cell
IS - 3
ER -