The evolution of nitric oxide function: From reactivity in the prebiotic earth to examples of biological roles and therapeutic applications

M Shepherd, D Giordano, C Verde, RK Poole - Antioxidants, 2022 - mdpi.com
M Shepherd, D Giordano, C Verde, RK Poole
Antioxidants, 2022mdpi.com
Nitric oxide was once considered to be of marginal interest to the biological sciences and
medicine; however, there is now wide recognition, but not yet a comprehensive
understanding, of its functions and effects. NO is a reactive, toxic free radical with numerous
biological targets, especially metal ions. However, NO and its reaction products also play
key roles as reductant and oxidant in biological redox processes, in signal transduction,
immunity and infection, as well as other roles. Consequently, it can be sensed, metabolized …
Nitric oxide was once considered to be of marginal interest to the biological sciences and medicine; however, there is now wide recognition, but not yet a comprehensive understanding, of its functions and effects. NO is a reactive, toxic free radical with numerous biological targets, especially metal ions. However, NO and its reaction products also play key roles as reductant and oxidant in biological redox processes, in signal transduction, immunity and infection, as well as other roles. Consequently, it can be sensed, metabolized and modified in biological systems. Here, we present a brief overview of the chemistry and biology of NO—in particular, its origins in geological time and in contemporary biology, its toxic consequences and its critical biological functions. Given that NO, with its intrinsic reactivity, appeared in the early Earth’s atmosphere before the evolution of complex lifeforms, we speculate that the potential for toxicity preceded biological function. To examine this hypothesis, we consider the nature of non-biological and biological targets of NO, the evolution of biological mechanisms for NO detoxification, and how living organisms generate this multifunctional gas.
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