Chemical Transformation Motifs - Modelling Pathways as Integer Hyperflows

12/07/2017
by   Jakob L. Andersen, et al.
0

We present an elaborate framework for formally modelling pathways in chemical reaction networks on a mechanistic level. Networks are modelled mathematically as directed multi-hypergraphs, with vertices corresponding to molecules and hyperedges to reactions. Pathways are modelled as integer hyperflows and we expand the network model by detailed routing constraints. In contrast to the more traditional approaches like Flux Balance Analysis or Elementary Mode analysis we insist on integer-valued flows. While this choice makes it necessary to solve possibly hard integer linear programs, it has the advantage that more detailed mechanistic questions can be formulated. It is thus possible to query networks for general transformation motifs, and to automatically enumerate optimal and near-optimal pathways. Similarities and differences between our work and traditional approaches in metabolic network analysis are discussed in detail. To demonstrate the applicability of the mathematical framework to real-life problems we first explore the design space of possible non-oxidative glycolysis pathways and show that recent manually designed pathways can be further optimised. We then use a model of sugar chemistry to investigate pathways in the autocatalytic formose process. A graph transformation-based approach is used to automatically generate the reaction networks of interest.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
08/02/2022

AI-driven Hypernetwork of Organic Chemistry: Network Statistics and Applications in Reaction Classification

Rapid discovery of new reactions and molecules in recent years has been ...
research
12/09/2020

Mapping the Space of Chemical Reactions Using Attention-Based Neural Networks

Organic reactions are usually assigned to classes containing reactions w...
research
12/22/2018

Graph Transformation Policy Network for Chemical Reaction Prediction

We address a fundamental problem in chemistry known as chemical reaction...
research
07/07/2021

Defining Autocatalysis in Chemical Reaction Networks

Autocatalysis is a deceptively simple concept, referring to the situatio...
research
05/12/2022

Detailed Balanced Chemical Reaction Networks as Generalized Boltzmann Machines

Can a micron sized sack of interacting molecules understand, and adapt t...
research
01/12/2022

Efficient Modular Graph Transformation Rule Application

Graph transformation formalisms have proven to be suitable tools for the...
research
05/03/2021

RetCL: A Selection-based Approach for Retrosynthesis via Contrastive Learning

Retrosynthesis, of which the goal is to find a set of reactants for synt...

Please sign up or login with your details

Forgot password? Click here to reset