High-quality life extension by the enzyme peptide methionine sulfoxide reductase

H Ruan, XD Tang, ML Chen… - Proceedings of the …, 2002 - National Acad Sciences
H Ruan, XD Tang, ML Chen, MA Joiner, G Sun, N Brot, H Weissbach, SH Heinemann…
Proceedings of the National Academy of Sciences, 2002National Acad Sciences
Cumulative oxidative damages to cell constituents are considered to contribute to aging and
age-related diseases. The enzyme peptide methionine sulfoxide reductase A (MSRA)
catalyzes the repair of oxidized methionine in proteins by reducing methionine sulfoxide
back to methionine. However, whether MSRA plays a role in the aging process is poorly
understood. Here we report that overexpression of the msrA gene predominantly in the
nervous system markedly extends the lifespan of the fruit fly Drosophila. The MSRA …
Cumulative oxidative damages to cell constituents are considered to contribute to aging and age-related diseases. The enzyme peptide methionine sulfoxide reductase A (MSRA) catalyzes the repair of oxidized methionine in proteins by reducing methionine sulfoxide back to methionine. However, whether MSRA plays a role in the aging process is poorly understood. Here we report that overexpression of the msrA gene predominantly in the nervous system markedly extends the lifespan of the fruit fly Drosophila. The MSRA transgenic animals are more resistant to paraquat-induced oxidative stress, and the onset of senescence-induced decline in the general activity level and reproductive capacity is delayed markedly. The results suggest that oxidative damage is an important determinant of lifespan, and MSRA may be important in increasing the lifespan in other organisms including humans.
National Acad Sciences