The Cellular State Filter: Prebiotic Origins of the Regulatory "Dark Zone" Between Membrane Physics and Biochemistry

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Main Author: Mikuláš, Peter
Format: Recurso digital
Language:English
Published: Zenodo 2026
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author Mikuláš, Peter
author_facet Mikuláš, Peter
contents <p>This conceptual essay introduces the notion of a cellular state filter as a missing regulatory layer between membrane physics and intracellular biochemistry. Drawing on prebiotic systems composed of simple amphiphilic membranes, the text argues that regulation initially emerged as a physical, state-based phenomenon rather than a biochemical, process-driven one. In early protocellular systems, membrane properties such as fluidity, permeability, and stability acted as the sole regulators, determining which chemical processes could occur within enclosed compartments. Modern cells retain this state-based regulation, although it is largely obscured by complex biochemical signaling networks, creating the impression of a conceptual ‘dark zone’ between membrane behavior and intracellular processes. Recognizing this layer provides a coherent evolutionary and physical framework for understanding cellular regulation beyond receptor-centric and pathway-based models.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18196868
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Cellular State Filter: Prebiotic Origins of the Regulatory "Dark Zone" Between Membrane Physics and Biochemistry
Mikuláš, Peter
cell membrane physics; prebiotic systems; protocells; state-based regulation; cellular state filter; membrane permeability; membrane fluidity; origin of life; physical regulation
<p>This conceptual essay introduces the notion of a cellular state filter as a missing regulatory layer between membrane physics and intracellular biochemistry. Drawing on prebiotic systems composed of simple amphiphilic membranes, the text argues that regulation initially emerged as a physical, state-based phenomenon rather than a biochemical, process-driven one. In early protocellular systems, membrane properties such as fluidity, permeability, and stability acted as the sole regulators, determining which chemical processes could occur within enclosed compartments. Modern cells retain this state-based regulation, although it is largely obscured by complex biochemical signaling networks, creating the impression of a conceptual ‘dark zone’ between membrane behavior and intracellular processes. Recognizing this layer provides a coherent evolutionary and physical framework for understanding cellular regulation beyond receptor-centric and pathway-based models.</p>
title The Cellular State Filter: Prebiotic Origins of the Regulatory "Dark Zone" Between Membrane Physics and Biochemistry
topic cell membrane physics; prebiotic systems; protocells; state-based regulation; cellular state filter; membrane permeability; membrane fluidity; origin of life; physical regulation
url https://doi.org/10.5281/zenodo.18196868