International audienceThe present article discusses the possibility that catalysed chemical networks can evolve. Even simple enzyme-catalysed chemical reactions can display this property. The example studied is that of a two-substrate proteinoid, or enzyme, reaction displaying random binding of its substrates A and B. The fundamental property of such a system is to display either emergence or integration depending on the respective values of the probabilities that the enzyme has bound one of its substrate regardless it has bound the other substrate, or, specifically, after it has bound the other substrate. There is emergence of information if p(A)>p(AB) and p(B)>p(BA). Conversely, if p(A
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Several models have been proposed to explain the origin and evolution of enzymes in metabolic pathwa...
Abstract. There is a long tradition of software simulations in theoretical biology to complement pur...
Evolution produces complex and structured networks of interacting components in chemical, biological...
Evolution produces complex and structured networks of interacting components in chemical, biological...
Our proposal is concerned with the organization of simple chemical catalysts into coordinated, compl...
Our proposal is concerned with the organization of simple chemical catalysts into coordinated, compl...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
The study of complex mixtures of interacting synthetic molecules has historically not received much ...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
The study of complex mixtures of interacting synthetic molecules has historically not received much ...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Several models have been proposed to explain the origin and evolution of enzymes in metabolic pathwa...
Abstract. There is a long tradition of software simulations in theoretical biology to complement pur...
Evolution produces complex and structured networks of interacting components in chemical, biological...
Evolution produces complex and structured networks of interacting components in chemical, biological...
Our proposal is concerned with the organization of simple chemical catalysts into coordinated, compl...
Our proposal is concerned with the organization of simple chemical catalysts into coordinated, compl...
Until very recently, synthetic chemistry has focussed on the creation of chemical entities with desi...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
The study of complex mixtures of interacting synthetic molecules has historically not received much ...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
The study of complex mixtures of interacting synthetic molecules has historically not received much ...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Biochemical networks are often called upon to illustrate emergent properties of living systems. In t...
Several models have been proposed to explain the origin and evolution of enzymes in metabolic pathwa...
Abstract. There is a long tradition of software simulations in theoretical biology to complement pur...