Collective behaviours: from biochemical kinetics to electronic circuits
نویسندگان
چکیده
In this work we aim to highlight a close analogy between cooperative behaviors in chemical kinetics and cybernetics; this is realized by using a common language for their description, that is mean-field statistical mechanics. First, we perform a one-to-one mapping between paradigmatic behaviors in chemical kinetics (i.e., non-cooperative, cooperative, ultra-sensitive, anti-cooperative) and in mean-field statistical mechanics (i.e., paramagnetic, high and low temperature ferromagnetic, anti-ferromagnetic). Interestingly, the statistical mechanics approach allows a unified, broad theory for all scenarios and, in particular, Michaelis-Menten, Hill and Adair equations are consistently recovered. This framework is then tested against experimental biological data with an overall excellent agreement. One step forward, we consistently read the whole mapping from a cybernetic perspective, highlighting deep structural analogies between the above-mentioned kinetics and fundamental bricks in electronics (i.e. operational amplifiers, flashes, flip-flops), so to build a clear bridge linking biochemical kinetics and cybernetics.
منابع مشابه
CORRIGENDUM: Collective behaviours: from biochemical kinetics to electronic circuits
Figure 1 | Schematic representation of an operational amplifier. Figure 2 | Several sets of experimental data (symbols) 53 are fitted by eq. 30 with minus sign (solid line). The values of J corresponding to the best fits are shown in the table together with the related estimates for n H according to eq. 31. The estimates for n H obtained via standard Hill fit are also shown.
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