Javascript must be enabled to continue!
Proteomic and metabolic profiling reveals molecular phenotype associated with chemotrophic growth of Rubrivivax benzoatilyticus JA2 on l -tryptophan
View through CrossRef
Abstract
Rubrivivax benzoatilyticus strain JA2 is an anoxygenic phototrophic bacterium, able to grow under different growth modes. Particularly under chemotrophic conditions, it produces novel Trp-melanin, anthocyanin-like, and pyomelanin pigments. However, the underlying molecular adaptations of strain JA2 that lead to the formation of novel metabolites under chemotrophic conditions remain unexplored. The present study used iTRAQ-based global proteomic and metabolite profiling to unravel the biochemical processes operating under the l-tryptophan-fed chemotrophic state. Exometabolite profiling of l-tryptophan fed chemotrophic cultures revealed production of diverse indolic metabolites, many of which are hydroxyindole derivatives, along with unique pigmented metabolites. Proteomic profiling revealed a global shift in the proteome and detected 2411 proteins, corresponding to 61.8% proteins expressed. Proteins related to signalling, transcription-coupled translation, stress, membrane transport, and metabolism were highly differentially regulated. Extensive rewiring of amino acid, fatty acid, lipid, and energy metabolism was observed under l-tyrptophan fed chemotrophic conditions. Moreover, energy conservation and cell protection strategies such as efflux pumps involved in the efflux of aromatic compounds were activated. The study demonstrated a correlation between some of the detected indole derivatives and the up-regulation of proteins associated with l-tryptophan catabolism, indicating a possible role of aromatic mono/dioxygenases in the formation of hydroxyindole derivatives and pigments under chemotrophic conditions. The overall study revealed metabolic flexibility in utilizing aromatic compounds and molecular adaptations of strain JA2 under the chemotrophic state.
Oxford University Press (OUP)
Title: Proteomic and metabolic profiling reveals molecular phenotype associated with chemotrophic growth of
Rubrivivax benzoatilyticus
JA2 on
l
-tryptophan
Description:
Abstract
Rubrivivax benzoatilyticus strain JA2 is an anoxygenic phototrophic bacterium, able to grow under different growth modes.
Particularly under chemotrophic conditions, it produces novel Trp-melanin, anthocyanin-like, and pyomelanin pigments.
However, the underlying molecular adaptations of strain JA2 that lead to the formation of novel metabolites under chemotrophic conditions remain unexplored.
The present study used iTRAQ-based global proteomic and metabolite profiling to unravel the biochemical processes operating under the l-tryptophan-fed chemotrophic state.
Exometabolite profiling of l-tryptophan fed chemotrophic cultures revealed production of diverse indolic metabolites, many of which are hydroxyindole derivatives, along with unique pigmented metabolites.
Proteomic profiling revealed a global shift in the proteome and detected 2411 proteins, corresponding to 61.
8% proteins expressed.
Proteins related to signalling, transcription-coupled translation, stress, membrane transport, and metabolism were highly differentially regulated.
Extensive rewiring of amino acid, fatty acid, lipid, and energy metabolism was observed under l-tyrptophan fed chemotrophic conditions.
Moreover, energy conservation and cell protection strategies such as efflux pumps involved in the efflux of aromatic compounds were activated.
The study demonstrated a correlation between some of the detected indole derivatives and the up-regulation of proteins associated with l-tryptophan catabolism, indicating a possible role of aromatic mono/dioxygenases in the formation of hydroxyindole derivatives and pigments under chemotrophic conditions.
The overall study revealed metabolic flexibility in utilizing aromatic compounds and molecular adaptations of strain JA2 under the chemotrophic state.
Related Results
Tryptophan, a non-canonical melanin precursor: New L-tryptophan based melanin production by Rubrivivax benzoatilyticus JA2
Tryptophan, a non-canonical melanin precursor: New L-tryptophan based melanin production by Rubrivivax benzoatilyticus JA2
AbstractMelanins are chemically diverse ubiquitous pigments found across the life forms synthesizedviadifferent biochemical pathways mainly from L-tyrosine or acetyl CoA. Though fe...
Genome Sequence of the Phototrophic Betaproteobacterium Rubrivivax benzoatilyticus Strain JA2
T
Genome Sequence of the Phototrophic Betaproteobacterium Rubrivivax benzoatilyticus Strain JA2
T
ABSTRACT
Herein we report the draft genome sequence of a phototrophic bacterium,
Rubrivivax benzoatilyticus
strain JA2
T
...
Microbiome-Derived Short-Chain Fatty Acids and Tryptophan Metabolites in Children with Autism Spectrum Disorder: A Stool–Urine Multi-Omics Analysis
Microbiome-Derived Short-Chain Fatty Acids and Tryptophan Metabolites in Children with Autism Spectrum Disorder: A Stool–Urine Multi-Omics Analysis
Autism spectrum disorder (ASD) has been associated with alterations in the gut microbiota and its metabolites, particularly short-chain fatty acids (SCFAs) and microbiota-derived t...
Tryptophan transport in human fibroblast cells a functional characterization
Tryptophan transport in human fibroblast cells a functional characterization
There are indications that serotonergic neurotransmission is disturbed in several psychiatric disorders. One explanation may be disturbed transport of tryptophan (precursor for ser...
Determination of tryptophan in milk
Determination of tryptophan in milk
Tryptophan or L-tryptophan is one of the essential amino acids for the human body. An important component of the human diet, L-tryptophan is not only involved in protein synthesis ...
Analysis, Nutrition, and Health Benefits of Tryptophan
Analysis, Nutrition, and Health Benefits of Tryptophan
Tryptophan is an essential plant-derived amino acid that is needed for the in vivo biosynthesis of proteins. After consumption, it is metabolically transformed to bioactive metabol...
Effect of Jerusalem Artichoke Powder Supplemented in Striped Catfish Larvae (Pangasianodon hypophthalmus) Diet on Growth Performance, Digestive Enzyme Activities, Plasma Biochemical Parameters and Histopathology of Liver and Intestine
Effect of Jerusalem Artichoke Powder Supplemented in Striped Catfish Larvae (Pangasianodon hypophthalmus) Diet on Growth Performance, Digestive Enzyme Activities, Plasma Biochemical Parameters and Histopathology of Liver and Intestine
The objectives of the present study were to investigate the effects of Jerusalem artichoke powder supplemented in striped catfish larvae (Pangasianodon hypophthalmus) diet. The exp...
Effect of leucine on intestinal absorption of tryptophan in rats
Effect of leucine on intestinal absorption of tryptophan in rats
1. To elucidate the causal relation between leucine and the lowering of hepatic NAD content of rats fed on a leucine-excessive diet (Yamadaet al.1979), the effect of leucine on int...

