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Transcription factor ISX mediates the cross talk between diet and immunity
by
Kelly, Mary E.
, Knauss, Elizabeth A.
, Golczak, Marcin
, Widjaja-Adhi, Made Airanthi K.
, von Lintig, Johannes
, Palczewski, Grzegorz
, Dale, Kali
, Levine, Alan D.
in
Alcohol Oxidoreductases - genetics
/ Alcohol Oxidoreductases - metabolism
/ Aldehyde Dehydrogenase - genetics
/ Aldehyde Dehydrogenase - metabolism
/ Aldehyde Dehydrogenase 1 Family
/ Animal Feed - analysis
/ Animals
/ beta-Carotene 15,15'-Monooxygenase - genetics
/ beta-Carotene 15,15'-Monooxygenase - metabolism
/ Biological Sciences
/ Blood Glucose
/ Carotene
/ CCR9 protein
/ Chylomicrons
/ Diet
/ Digestive system
/ Enzymes
/ Epithelium
/ Esterification
/ Female
/ Follicles
/ Gastrointestinal tract
/ Gene expression
/ Gene Expression Regulation - drug effects
/ Genotype
/ Glucose - metabolism
/ Glucose tolerance
/ Homeobox
/ Homeostasis
/ Immunological tolerance
/ Insulitis
/ Intestine
/ Intestines - immunology
/ Intolerance
/ Lymphocytes
/ Metabolism
/ Mice
/ Pancreas
/ Physiology
/ Receptors, CCR - genetics
/ Receptors, CCR - metabolism
/ Retinal Dehydrogenase
/ Retinaldehyde
/ Retinene
/ Retinoic acid
/ Retinoids - biosynthesis
/ T-Lymphocytes - physiology
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Triglycerides
/ Vitamin A
/ β-Carotene
2017
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Transcription factor ISX mediates the cross talk between diet and immunity
by
Kelly, Mary E.
, Knauss, Elizabeth A.
, Golczak, Marcin
, Widjaja-Adhi, Made Airanthi K.
, von Lintig, Johannes
, Palczewski, Grzegorz
, Dale, Kali
, Levine, Alan D.
in
Alcohol Oxidoreductases - genetics
/ Alcohol Oxidoreductases - metabolism
/ Aldehyde Dehydrogenase - genetics
/ Aldehyde Dehydrogenase - metabolism
/ Aldehyde Dehydrogenase 1 Family
/ Animal Feed - analysis
/ Animals
/ beta-Carotene 15,15'-Monooxygenase - genetics
/ beta-Carotene 15,15'-Monooxygenase - metabolism
/ Biological Sciences
/ Blood Glucose
/ Carotene
/ CCR9 protein
/ Chylomicrons
/ Diet
/ Digestive system
/ Enzymes
/ Epithelium
/ Esterification
/ Female
/ Follicles
/ Gastrointestinal tract
/ Gene expression
/ Gene Expression Regulation - drug effects
/ Genotype
/ Glucose - metabolism
/ Glucose tolerance
/ Homeobox
/ Homeostasis
/ Immunological tolerance
/ Insulitis
/ Intestine
/ Intestines - immunology
/ Intolerance
/ Lymphocytes
/ Metabolism
/ Mice
/ Pancreas
/ Physiology
/ Receptors, CCR - genetics
/ Receptors, CCR - metabolism
/ Retinal Dehydrogenase
/ Retinaldehyde
/ Retinene
/ Retinoic acid
/ Retinoids - biosynthesis
/ T-Lymphocytes - physiology
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Triglycerides
/ Vitamin A
/ β-Carotene
2017
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Transcription factor ISX mediates the cross talk between diet and immunity
by
Kelly, Mary E.
, Knauss, Elizabeth A.
, Golczak, Marcin
, Widjaja-Adhi, Made Airanthi K.
, von Lintig, Johannes
, Palczewski, Grzegorz
, Dale, Kali
, Levine, Alan D.
in
Alcohol Oxidoreductases - genetics
/ Alcohol Oxidoreductases - metabolism
/ Aldehyde Dehydrogenase - genetics
/ Aldehyde Dehydrogenase - metabolism
/ Aldehyde Dehydrogenase 1 Family
/ Animal Feed - analysis
/ Animals
/ beta-Carotene 15,15'-Monooxygenase - genetics
/ beta-Carotene 15,15'-Monooxygenase - metabolism
/ Biological Sciences
/ Blood Glucose
/ Carotene
/ CCR9 protein
/ Chylomicrons
/ Diet
/ Digestive system
/ Enzymes
/ Epithelium
/ Esterification
/ Female
/ Follicles
/ Gastrointestinal tract
/ Gene expression
/ Gene Expression Regulation - drug effects
/ Genotype
/ Glucose - metabolism
/ Glucose tolerance
/ Homeobox
/ Homeostasis
/ Immunological tolerance
/ Insulitis
/ Intestine
/ Intestines - immunology
/ Intolerance
/ Lymphocytes
/ Metabolism
/ Mice
/ Pancreas
/ Physiology
/ Receptors, CCR - genetics
/ Receptors, CCR - metabolism
/ Retinal Dehydrogenase
/ Retinaldehyde
/ Retinene
/ Retinoic acid
/ Retinoids - biosynthesis
/ T-Lymphocytes - physiology
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Triglycerides
/ Vitamin A
/ β-Carotene
2017
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Transcription factor ISX mediates the cross talk between diet and immunity
Journal Article
Transcription factor ISX mediates the cross talk between diet and immunity
2017
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Overview
The intestinal epithelium is a major site for the conversion of dietary β-carotene to retinaldehyde by the enzyme BCO1. The majority of retinaldehyde is further metabolized to retinol (vitamin A), esterified and packaged into triacylglycerol-rich chylomicrons for bodily distribution. Some serve on-site for the synthesis of retinoic acid, a hormone-like compound, which exerts pleiotropic and dominant effects on gastrointestinal immunity. We report here that the intestine-specific homeobox protein ISX is critical to control the metabolic flow of β-carotene through this important branching point of vitamin A metabolism. This transcription factor represses Bco1 gene expression in response to retinoic acid signaling. In ISX-deficient mice, uncontrolled Bco1 gene expression led to increased retinoid production in the intestine. Systemically, this production resulted in highly elevated hepatic retinoid stores. In the intestine, it increased the expression of retinoic acid-inducible target genes such as Aldh1a2, Dhrs3, and Ccr9. The β-carotene–inducible disruption of retinoid homeostasis affected gut-homing and differentiation of lymphocytes and displayed morphologically in large lymphoid follicles along the intestine. Furthermore, it was associated with an infiltration of the pancreas by gut-derived lymphocytes that manifested as a pancreatic insulitis with β-islet cell destruction and systemic glucose intolerance. Thus, our study identifies an important molecular interlink between diet and immunity and indicates that vitamin A homeostasis must be tightly controlled by ISX to maintain immunity and tolerance at the intestinal barrier.
Publisher
National Academy of Sciences
Subject
Alcohol Oxidoreductases - genetics
/ Alcohol Oxidoreductases - metabolism
/ Aldehyde Dehydrogenase - genetics
/ Aldehyde Dehydrogenase - metabolism
/ Aldehyde Dehydrogenase 1 Family
/ Animals
/ beta-Carotene 15,15'-Monooxygenase - genetics
/ beta-Carotene 15,15'-Monooxygenase - metabolism
/ Carotene
/ Diet
/ Enzymes
/ Female
/ Gene Expression Regulation - drug effects
/ Genotype
/ Homeobox
/ Mice
/ Pancreas
/ Retinene
/ Transcription Factors - genetics
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