arXiv Open Access 2023

Deficiency, Kinetic Invertibility, and Catalysis in Stochastic Chemical Reaction Networks

Shesha Gopal Marehalli Srinivas Matteo Polettini Massimiliano Esposito Francesco Avanzini
Lihat Sumber

Abstrak

Stochastic chemical processes are described by the chemical master equation satisfying the law of mass-action. We first ask whether the dual master equation, which has the same steady state as the chemical master equation, but with inverted reaction currents, satisfies the law of mass-action, namely, still describes a chemical process. We prove that the answer depends on the topological property of the underlying chemical reaction network known as deficiency. The answer is yes only for deficiency-zero networks. It is no for all other networks, implying that their steady-state currents cannot be inverted by controlling the kinetic constants of the reactions. Hence, the network deficiency imposes a form of non-invertibility to the chemical dynamics. We then ask whether catalytic chemical networks are deficiency-zero. We prove that the answer is no when they are driven out of equilibrium due to the exchange of some species with the environment.

Penulis (4)

S

Shesha Gopal Marehalli Srinivas

M

Matteo Polettini

M

Massimiliano Esposito

F

Francesco Avanzini

Format Sitasi

Srinivas, S.G.M., Polettini, M., Esposito, M., Avanzini, F. (2023). Deficiency, Kinetic Invertibility, and Catalysis in Stochastic Chemical Reaction Networks. https://arxiv.org/abs/2302.10516

Akses Cepat

Lihat di Sumber
Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
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arXiv
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Open Access ✓