Metabolic "dark matter" describes currently unknown metabolic processes, which form a blind spot in our general understanding of metabolism and slow down the development of biosynthetic cell factories and naturally derived pharmaceuticals. Mapping the dark matter of metabolism remains an open challenge that can be addressed globally and systematically by existing computational solutions. In this work, we use 489 generalized enzymatic reaction rules to map both known and unknown metabolic processes around a biochemical database of 1.5 million biological compounds. We predict over 5 million reactions and integrate nearly 2 million naturally and synthetically-derived compounds into the global network of biochemical knowledge, named ATLASx. ATL...
Motivation: Metabolism, the network of chemical reactions that make life possible, is one of the mos...
Motivation: Construction of synthetic metabolic pathways promises sustainable production of di-verse...
Small molecule drugs target many small molecule metabolic enzymes in humans and pathogens, often mim...
The availability of different levels of omics data helps us to observe cells with higher resolution ...
Because the complexity of metabolism cannot be intuitively understood or analyzed, computational met...
Recent technical and analytical progress in the field of metabolomics has lead to the identification...
Living organisms can catalyze many thousands of biochemical reactions that they use to convert energ...
The ATLAS of Biochemistry is a repository of both known and novel predicted biochemical reactions be...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
Metabolism is the set of chemical reactions that occur in living systems that make life possible [1]...
Metabolism is the set of chemical reactions that occur in living systems that make life possible [1]...
Motivation: Metab., the network of chem. reactions that make life possible, is one of the most compl...
Understanding metabolic pathways is one of the most important fields in bioscience in the post-genom...
Motivation: Metabolism, the network of chemical reactions that make life possible, is one of the mos...
Motivation: Construction of synthetic metabolic pathways promises sustainable production of di-verse...
Small molecule drugs target many small molecule metabolic enzymes in humans and pathogens, often mim...
The availability of different levels of omics data helps us to observe cells with higher resolution ...
Because the complexity of metabolism cannot be intuitively understood or analyzed, computational met...
Recent technical and analytical progress in the field of metabolomics has lead to the identification...
Living organisms can catalyze many thousands of biochemical reactions that they use to convert energ...
The ATLAS of Biochemistry is a repository of both known and novel predicted biochemical reactions be...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
BACKGROUND:In spite of its great promise, metabolomics has proven difficult to execute in an untarge...
Metabolism is the set of chemical reactions that occur in living systems that make life possible [1]...
Metabolism is the set of chemical reactions that occur in living systems that make life possible [1]...
Motivation: Metab., the network of chem. reactions that make life possible, is one of the most compl...
Understanding metabolic pathways is one of the most important fields in bioscience in the post-genom...
Motivation: Metabolism, the network of chemical reactions that make life possible, is one of the mos...
Motivation: Construction of synthetic metabolic pathways promises sustainable production of di-verse...
Small molecule drugs target many small molecule metabolic enzymes in humans and pathogens, often mim...