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Butyrate producing colonic Clostridiales metabolise human milk oligosaccharides and cross feed on mucin via conserved pathways
بواسطة
Karlsson, Niclas G.
, Pichler, Michael Jakob
, Alvarez-Silva, Camila
, Jin, Chunsheng
, Schoof, Erwin
, Sakanaka, Mikiyasu
, Leth, Maria Louise
, Shuoker, Bashar
, Yamada, Chihaya
, Abou Hachem, Maher
, Katoh, Toshihiko
, Arumugam, Manimozhiyan
, Katayama, Takane
, Gotoh, Aina
, Fushinobu, Shinya
في
631/326
/ 631/45
/ 82/103
/ 82/16
/ 82/58
/ 82/80
/ Akkermansia
/ Assembly
/ bacterial diversity
/ bifidobacterium
/ Bifidobacterium - metabolism
/ blood-group-a
/ Breast milk
/ Butyrates - metabolism
/ Catabolism
/ Clinical Medicine
/ Clostridiales
/ Clostridiales - genetics
/ Clostridiales - metabolism
/ Colon - microbiology
/ Colonization
/ Colorectal cancer
/ Colorectal carcinoma
/ Competitiveness
/ dynamics
/ Eubacteriales
/ Eubacterium - metabolism
/ Gastrointestinal Microbiome - physiology
/ gen. nov
/ Genomes
/ Glycan
/ health
/ human gut microbiome
/ Humanities and Social Sciences
/ Humans
/ Infant
/ Infant, Newborn
/ Intestinal microflora
/ Klinisk medicin
/ Loci
/ Maturation
/ Metabolic disorders
/ Metabolism - physiology
/ Microbiomes
/ Microbiota
/ Milk
/ Milk, Human - chemistry
/ Milk, Human - metabolism
/ Mucin
/ Mucins - metabolism
/ multidisciplinary
/ Oligosaccharides
/ Oligosaccharides - metabolism
/ Polysaccharides
/ Polysaccharides - metabolism
/ protein-sequence
/ purification
/ Roseburia intestinalis
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Structure-function relationships
/ Syntrophism
/ Verrucomicrobia - metabolism
/ Weaning
2020
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Butyrate producing colonic Clostridiales metabolise human milk oligosaccharides and cross feed on mucin via conserved pathways
بواسطة
Karlsson, Niclas G.
, Pichler, Michael Jakob
, Alvarez-Silva, Camila
, Jin, Chunsheng
, Schoof, Erwin
, Sakanaka, Mikiyasu
, Leth, Maria Louise
, Shuoker, Bashar
, Yamada, Chihaya
, Abou Hachem, Maher
, Katoh, Toshihiko
, Arumugam, Manimozhiyan
, Katayama, Takane
, Gotoh, Aina
, Fushinobu, Shinya
في
631/326
/ 631/45
/ 82/103
/ 82/16
/ 82/58
/ 82/80
/ Akkermansia
/ Assembly
/ bacterial diversity
/ bifidobacterium
/ Bifidobacterium - metabolism
/ blood-group-a
/ Breast milk
/ Butyrates - metabolism
/ Catabolism
/ Clinical Medicine
/ Clostridiales
/ Clostridiales - genetics
/ Clostridiales - metabolism
/ Colon - microbiology
/ Colonization
/ Colorectal cancer
/ Colorectal carcinoma
/ Competitiveness
/ dynamics
/ Eubacteriales
/ Eubacterium - metabolism
/ Gastrointestinal Microbiome - physiology
/ gen. nov
/ Genomes
/ Glycan
/ health
/ human gut microbiome
/ Humanities and Social Sciences
/ Humans
/ Infant
/ Infant, Newborn
/ Intestinal microflora
/ Klinisk medicin
/ Loci
/ Maturation
/ Metabolic disorders
/ Metabolism - physiology
/ Microbiomes
/ Microbiota
/ Milk
/ Milk, Human - chemistry
/ Milk, Human - metabolism
/ Mucin
/ Mucins - metabolism
/ multidisciplinary
/ Oligosaccharides
/ Oligosaccharides - metabolism
/ Polysaccharides
/ Polysaccharides - metabolism
/ protein-sequence
/ purification
/ Roseburia intestinalis
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Structure-function relationships
/ Syntrophism
/ Verrucomicrobia - metabolism
/ Weaning
2020
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Butyrate producing colonic Clostridiales metabolise human milk oligosaccharides and cross feed on mucin via conserved pathways
بواسطة
Karlsson, Niclas G.
, Pichler, Michael Jakob
, Alvarez-Silva, Camila
, Jin, Chunsheng
, Schoof, Erwin
, Sakanaka, Mikiyasu
, Leth, Maria Louise
, Shuoker, Bashar
, Yamada, Chihaya
, Abou Hachem, Maher
, Katoh, Toshihiko
, Arumugam, Manimozhiyan
, Katayama, Takane
, Gotoh, Aina
, Fushinobu, Shinya
في
631/326
/ 631/45
/ 82/103
/ 82/16
/ 82/58
/ 82/80
/ Akkermansia
/ Assembly
/ bacterial diversity
/ bifidobacterium
/ Bifidobacterium - metabolism
/ blood-group-a
/ Breast milk
/ Butyrates - metabolism
/ Catabolism
/ Clinical Medicine
/ Clostridiales
/ Clostridiales - genetics
/ Clostridiales - metabolism
/ Colon - microbiology
/ Colonization
/ Colorectal cancer
/ Colorectal carcinoma
/ Competitiveness
/ dynamics
/ Eubacteriales
/ Eubacterium - metabolism
/ Gastrointestinal Microbiome - physiology
/ gen. nov
/ Genomes
/ Glycan
/ health
/ human gut microbiome
/ Humanities and Social Sciences
/ Humans
/ Infant
/ Infant, Newborn
/ Intestinal microflora
/ Klinisk medicin
/ Loci
/ Maturation
/ Metabolic disorders
/ Metabolism - physiology
/ Microbiomes
/ Microbiota
/ Milk
/ Milk, Human - chemistry
/ Milk, Human - metabolism
/ Mucin
/ Mucins - metabolism
/ multidisciplinary
/ Oligosaccharides
/ Oligosaccharides - metabolism
/ Polysaccharides
/ Polysaccharides - metabolism
/ protein-sequence
/ purification
/ Roseburia intestinalis
/ Science
/ Science & Technology - Other Topics
/ Science (multidisciplinary)
/ Structure-function relationships
/ Syntrophism
/ Verrucomicrobia - metabolism
/ Weaning
2020
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Butyrate producing colonic Clostridiales metabolise human milk oligosaccharides and cross feed on mucin via conserved pathways
Journal Article
Butyrate producing colonic Clostridiales metabolise human milk oligosaccharides and cross feed on mucin via conserved pathways
2020
الطلب من المخزن الآلي
واختر طريقة الاستلام
نظرة عامة
The early life human gut microbiota exerts life-long health effects on the host, but the mechanisms underpinning its assembly remain elusive. Particularly, the early colonization of Clostridiales from the
Roseburia
-
Eubacterium
group, associated with protection from colorectal cancer, immune- and metabolic disorders is enigmatic. Here, we describe catabolic pathways that support the growth of
Roseburia
and
Eubacterium
members on distinct human milk oligosaccharides (HMOs). The HMO pathways, which include enzymes with a previously unknown structural fold and specificity, were upregulated together with additional glycan-utilization loci during growth on selected HMOs and in co-cultures with
Akkermansia muciniphila
on mucin, suggesting an additional role in enabling cross-feeding and access to mucin
O
-glycans. Analyses of 4599
Roseburia
genomes underscored the preponderance and diversity of the HMO utilization loci within the genus. The catabolism of HMOs by butyrate-producing Clostridiales may contribute to the competitiveness of this group during the weaning-triggered maturation of the microbiota.
The assembly and maturation of the early life microbiome has life-long effects on human health. Here, the authors combine omics, functional assays and structural analyses to characterize the catabolic pathways that support the growth of butyrate producing
Clostridiales
members from the
Roseburia
and
Eubacterium
, on distinct human milk oligosaccharides.
الناشر
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
موضوع
/ 631/45
/ 82/103
/ 82/16
/ 82/58
/ 82/80
/ Assembly
/ Bifidobacterium - metabolism
/ dynamics
/ Gastrointestinal Microbiome - physiology
/ gen. nov
/ Genomes
/ Glycan
/ health
/ Humanities and Social Sciences
/ Humans
/ Infant
/ Loci
/ Milk
/ Mucin
/ Oligosaccharides - metabolism
/ Polysaccharides - metabolism
/ Science
/ Science & Technology - Other Topics
/ Structure-function relationships
/ Verrucomicrobia - metabolism
/ Weaning
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