Xenotopic synthetic biology: Prospective tools for delaying aging and age-related diseases.
review · Level V
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- Record sourced from PubMed, PMID 40153513.
- Also identified by DOI 10.1126/sciadv.adu1710.
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Abstract
Metabolic dysregulation represents one of the major driving forces in aging. Although multiple genetic and pharmacological manipulations are known to extend longevity in model organisms, aging is a complex trait, and targeting one's own genes may be insufficient to prevent age-dependent deterioration. An alternative strategy could be to use enzymes from other species to reverse age-associated metabolic changes. In this review, we discuss a set of enzymes from lower organisms that have been shown to affect various metabolic parameters linked to age-related processes. These enzymes include modulators of steady-state levels of amino acids (METase, ASNase, and ADI), NADPH/NADP<sup>+</sup> and/or reduced form of coenzyme Q (CoQH<sub>2</sub>)/CoQ redox potentials (NDI1, AOX, <i>Lb</i>NOX, TPNOX, <i>Ec</i>STH, RquA, LOXCAT, Grubraw, and ScURA), GSH (StGshF), mitochondrial membrane potential (mtON and mito-dR), or reactive oxygen species (DAAO and KillerRed-SOD1). We propose that leveraging non-mammalian enzymes represents an untapped resource that can be used to delay aging and age-related diseases.
Medical subject headings
- Aging
- Synthetic Biology