Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Physicochemical Characterization of Kynurenine Pathway Metabolites

View through CrossRef
The kynurenine pathway is a significant metabolic route involved in the catabolism of tryptophan, producing various bioactive metabolites with crucial roles as antioxidants in immune regulation and neurobiology. This study investigates the acid-base properties of picolinic acid, kynurenic acid, kynurenine, and 3-hydroxykynurenine, utilizing computational simulations and experimental techniques, including potentiometric and nuclear magnetic resonance titrations. The results reveal distinct pKa values, with kynurenic acid exhibiting a single dissociation step around 2.4, while kynurenine displays three dissociation steps governed by interactions between its functional groups. Additionally, 3-hydroxykynurenine shows overlapping dissociations in two separate pH regions, suggesting nuanced behavior influenced by its molecular structure. The analysis of intramolecular hydrogen bonding in protonation microspecies across varying pH highlights the relevance of the charge state and hydrogen transfer potential of these metabolites in the context of their radical scavenging ability. At physiological pH, most kynurenine and 3-hydroxykynurenine entities exist in zwitterionic form, with hydrogen bonding stabilizing the aromatic amino group, which may significantly influence their interactions with proteins and reactive oxygen species. This study provides critical insights into the acid-base equilibria of kynurenine pathway metabolites.
Title: Physicochemical Characterization of Kynurenine Pathway Metabolites
Description:
The kynurenine pathway is a significant metabolic route involved in the catabolism of tryptophan, producing various bioactive metabolites with crucial roles as antioxidants in immune regulation and neurobiology.
This study investigates the acid-base properties of picolinic acid, kynurenic acid, kynurenine, and 3-hydroxykynurenine, utilizing computational simulations and experimental techniques, including potentiometric and nuclear magnetic resonance titrations.
The results reveal distinct pKa values, with kynurenic acid exhibiting a single dissociation step around 2.
4, while kynurenine displays three dissociation steps governed by interactions between its functional groups.
Additionally, 3-hydroxykynurenine shows overlapping dissociations in two separate pH regions, suggesting nuanced behavior influenced by its molecular structure.
The analysis of intramolecular hydrogen bonding in protonation microspecies across varying pH highlights the relevance of the charge state and hydrogen transfer potential of these metabolites in the context of their radical scavenging ability.
At physiological pH, most kynurenine and 3-hydroxykynurenine entities exist in zwitterionic form, with hydrogen bonding stabilizing the aromatic amino group, which may significantly influence their interactions with proteins and reactive oxygen species.
This study provides critical insights into the acid-base equilibria of kynurenine pathway metabolites.

Related Results

FACTORS AFFECTING THE INTRACELLUALR SYNTHESIS OF KYNURENINE
FACTORS AFFECTING THE INTRACELLUALR SYNTHESIS OF KYNURENINE
Near the time of pupation, autofluorescent kynurenine globules appear in the cells in the anterior region of the fatbody of Drosophila melanogaster. It has been reported previously...
Kynurenine’s Effect on the Different Stages of Osteoblastic Differentiation
Kynurenine’s Effect on the Different Stages of Osteoblastic Differentiation
This study focuses on the dynamics of age-related changes in osteoblasts’ matrix production, with a specific focus on the involvement of the aryl hydrocarbon receptor (AhR). The Ah...
Kynurenine’s Effect on the Different Stages of Osteoblastic Differentiation
Kynurenine’s Effect on the Different Stages of Osteoblastic Differentiation
This study focuses on the dynamics of age-related changes in osteoblasts’ matrix production, with a specific focus on the involvement of the aryl hydrocarbon receptor (AhR). The Ah...
Untargeted metabolomics of the intestinal tract of DEV-infected ducks
Untargeted metabolomics of the intestinal tract of DEV-infected ducks
Abstract Introduction Duck enteritis virus (DEV) mainly causes infectious diseases characterized by intestinal haemorrhage, inflammation and parench...
Inhibition of Kynurenine Metabolism and Its Effect in Mitochondrial Function in Hepatocellular Carcinoma
Inhibition of Kynurenine Metabolism and Its Effect in Mitochondrial Function in Hepatocellular Carcinoma
Abstract Hepatocellular carcinoma (HCC) is the most prevalent cancer in the liver. The majority of ingested tryptophan is processed in the liver through the kynureni...
The Kynurenine Pathway in Gut Permeability and Inflammation
The Kynurenine Pathway in Gut Permeability and Inflammation
Abstract The gut-brain axis (GBA) is a crucial communication network linking the gastrointestinal (GI) tract and the central nervous system (CNS). The gut microbiota sign...
Abstract 4300: Novel metabolism pathway in pancreatic cancer: findings from targeted metabolomics study
Abstract 4300: Novel metabolism pathway in pancreatic cancer: findings from targeted metabolomics study
Abstract Background: Early diagnosis of pancreatic cancer holds the promise for improving the prognosis of this disease. We aimed to identify individual or combinati...

Back to Top