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The pathogenesis of gout: molecular insights from genetic, epigenomic and transcriptomic studies
by
Matsuo, Hirotaka
, Crișan, Tania O
, Leask, Megan P
, Ji, Aichang
, Köttgen, Anna
, Merriman, Tony R
in
Crystals
/ Epigenetics
/ Gene mapping
/ Gene regulation
/ Genetic diversity
/ Genome-wide association studies
/ Genomes
/ Gout
/ Hepatocyte nuclear factor 4
/ Hyperuricemia
/ Immune response
/ Inflammasomes
/ Inflammation
/ Innate immunity
/ Molecular modelling
/ Pathogenesis
/ Population genetics
/ Population studies
/ Transcriptomics
/ Uric acid
2024
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The pathogenesis of gout: molecular insights from genetic, epigenomic and transcriptomic studies
by
Matsuo, Hirotaka
, Crișan, Tania O
, Leask, Megan P
, Ji, Aichang
, Köttgen, Anna
, Merriman, Tony R
in
Crystals
/ Epigenetics
/ Gene mapping
/ Gene regulation
/ Genetic diversity
/ Genome-wide association studies
/ Genomes
/ Gout
/ Hepatocyte nuclear factor 4
/ Hyperuricemia
/ Immune response
/ Inflammasomes
/ Inflammation
/ Innate immunity
/ Molecular modelling
/ Pathogenesis
/ Population genetics
/ Population studies
/ Transcriptomics
/ Uric acid
2024
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
The pathogenesis of gout: molecular insights from genetic, epigenomic and transcriptomic studies
by
Matsuo, Hirotaka
, Crișan, Tania O
, Leask, Megan P
, Ji, Aichang
, Köttgen, Anna
, Merriman, Tony R
in
Crystals
/ Epigenetics
/ Gene mapping
/ Gene regulation
/ Genetic diversity
/ Genome-wide association studies
/ Genomes
/ Gout
/ Hepatocyte nuclear factor 4
/ Hyperuricemia
/ Immune response
/ Inflammasomes
/ Inflammation
/ Innate immunity
/ Molecular modelling
/ Pathogenesis
/ Population genetics
/ Population studies
/ Transcriptomics
/ Uric acid
2024
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The pathogenesis of gout: molecular insights from genetic, epigenomic and transcriptomic studies
Journal Article
The pathogenesis of gout: molecular insights from genetic, epigenomic and transcriptomic studies
2024
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Overview
The pathogenesis of gout involves a series of steps beginning with hyperuricaemia, followed by the deposition of monosodium urate crystal in articular structures and culminating in an innate immune response, mediated by the NLRP3 inflammasome, to the deposited crystals. Large genome-wide association studies (GWAS) of serum urate levels initially identified the genetic variants with the strongest effects, mapping mainly to genes that encode urate transporters in the kidney and gut. Other GWAS highlighted the importance of uncommon genetic variants. More recently, genetic and epigenetic genome-wide studies have revealed new pathways in the inflammatory process of gout, including genetic associations with epigenomic modifiers. Epigenome-wide association studies are also implicating epigenomic remodelling in gout, which perhaps regulates the responsiveness of the innate immune system to monosodium urate crystals. Notably, genes implicated in gout GWAS do not include those encoding components of the NLRP3 inflammasome itself, but instead include genes encoding molecules involved in its regulation. Knowledge of the molecular mechanisms underlying gout has advanced through the translation of genetic associations into specific molecular mechanisms. Notable examples include ABCG2, HNF4A, PDZK1, MAF and IL37. Current genetic studies are dominated by participants of European ancestry; however, studies focusing on other population groups are discovering informative population-specific variants associated with gout.Genetic, epigenetic and transcriptomic studies in hyperuricaemia and gout have, in the past 6 years, provided important insights into the underlying molecular mechanisms, revealing new inflammatory pathways and epigenetic factors and expanding research beyond European populations.
Publisher
Nature Publishing Group
Subject
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