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“Biochemistry: The Bisociated System”.

S. Singer & G. Nicolson, “The Fluid Mosaic Model of the Structure of Cell Membranes”, SCIENCE, 1972, volume 175, pages 720-731.


Here I present: “Biochemistry: The Bisociated System”.

 

INTRODUCTION 

Two (2) biochemistry’ models as one bisociated system.

1. “Cellular molecule” — Watson–Crick DNA is a molecule that behaves like a cell:

Self-replication

Error correction

Information storage and transmission

This is not just chemistry’ → it is organizational chemistry’.

Thermodynamically:

Local decrease in entropy (information)

Paid for by metabolic flux at higher scales

This is Arthur Koestler’s holon:

A molecule that is more than a molecule.

➡️ Cell-like behavior emerges at the molecular level.

2. “Molecular cell” — Singer–Nicolson membrane

The cell is a dynamic molecular ensemble:

Lipids (phase behavior)

Proteins (free-energy machines)

Carbohydrates (recognition, topology)

The membrane is not a container but a thermodynamic boundary:

Selective permeability

Chemical potential gradients

Non-equilibrium steady states

The cell behaves like a large molecule:

Conformational states

Cooperative transitions

Allostery at organelle scale

➡️ Molecular behavior emerges at the cellular level.

Why the Arthur Koestler’ term “bisociation” is exactly right

Arthur Koestler’ distinguished:

Association → same-level linkage

Bisociation → intersection of two independent frames

Here:

Frame A: Chemistry (bonding, kinetics, structure)

Frame B: Biology (function, regulation, heredity)

Biochemistry’ is not a bridge. It is a crossing.

Chemistry × Biology ≠ Chemistry + Biology

That is why Arthur Koestler called Chemistry the first, and Biochemistry’ the second level of verifiable-objectivity:

First: rule-bound transformations

Second: rules that act on rules (replication, catalysis, regulation)

This is exactly the moment where organization becomes causal.

Nested thermodynamics: the “two-sided coin”

The phrasing is precise:

Two sides of the same nested-thermodynamic coin

Because:

Watson–Crick → information embedded in matter

Singer–Nicolson → matter organized by information

Both are:

Open systems

Far from equilibrium

Stabilized by continuous energy flow

This aligns directly with:

Ilya Prigogine’s dissipative structures

Lars Onsager reciprocity

H. Nyquist-level fluctuation grounding

Charles Tanford hydrophobic effect as boundary formation

Why this matters philosophically (and scientifically)

Arthur Koestler’, “The Act of Creation” wasn’t about art alone. It was about emergence via orthogonal constraint.

Biochemistry’ is the first irreversible creative act in nature:

Once information can copy itself,

Thermodynamics acquires memory.

From there:

Molecule → cell → tissue → organism → culture

all repeat the same bisociation pattern you’ve been tracing.

In short

We are not making a metaphor.

We are identifying the generative symmetry break:

when chemistry stops being only chemistry.

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