Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Decreased sphingolipid synthesis in children with 17q21 asthma–risk genotypes
by
Worgall, Tilla S.
, Tesfaigzi, Yohannes
, Ono, Jennie G.
, Worgall, Stefan
, Kim, Benjamin I.
, Zhao, Yize
, Christos, Paul J.
in
Adolescent
/ Alleles
/ Allergies
/ Asthma
/ Asthma - blood
/ Asthma - genetics
/ Asthma - pathology
/ B cells
/ Biomedical research
/ Biosynthesis
/ Blood
/ Blood cells
/ Case-Control Studies
/ Ceramides
/ Child
/ Child, Preschool
/ Childhood
/ Childhood asthma
/ Children
/ Chromosome 17
/ Chromosomes, Human, Pair 17 - genetics
/ Chromosomes, Human, Pair 17 - metabolism
/ Concise Communication
/ Disease susceptibility
/ Drug development
/ Female
/ Genetic aspects
/ Genetic Diseases, Inborn - blood
/ Genetic Diseases, Inborn - genetics
/ Genetic Diseases, Inborn - pathology
/ Genetic diversity
/ Genotypes
/ Humans
/ Lipids
/ Male
/ Membrane lipids
/ Membrane Proteins - blood
/ Membrane Proteins - genetics
/ Peripheral blood
/ Phosphates
/ Physiological aspects
/ Plant lipids
/ Plasma
/ Risk Factors
/ Serine
/ Sphinganine
/ Sphingolipids
/ Sphingolipids - biosynthesis
/ Therapeutics
2020
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Decreased sphingolipid synthesis in children with 17q21 asthma–risk genotypes
by
Worgall, Tilla S.
, Tesfaigzi, Yohannes
, Ono, Jennie G.
, Worgall, Stefan
, Kim, Benjamin I.
, Zhao, Yize
, Christos, Paul J.
in
Adolescent
/ Alleles
/ Allergies
/ Asthma
/ Asthma - blood
/ Asthma - genetics
/ Asthma - pathology
/ B cells
/ Biomedical research
/ Biosynthesis
/ Blood
/ Blood cells
/ Case-Control Studies
/ Ceramides
/ Child
/ Child, Preschool
/ Childhood
/ Childhood asthma
/ Children
/ Chromosome 17
/ Chromosomes, Human, Pair 17 - genetics
/ Chromosomes, Human, Pair 17 - metabolism
/ Concise Communication
/ Disease susceptibility
/ Drug development
/ Female
/ Genetic aspects
/ Genetic Diseases, Inborn - blood
/ Genetic Diseases, Inborn - genetics
/ Genetic Diseases, Inborn - pathology
/ Genetic diversity
/ Genotypes
/ Humans
/ Lipids
/ Male
/ Membrane lipids
/ Membrane Proteins - blood
/ Membrane Proteins - genetics
/ Peripheral blood
/ Phosphates
/ Physiological aspects
/ Plant lipids
/ Plasma
/ Risk Factors
/ Serine
/ Sphinganine
/ Sphingolipids
/ Sphingolipids - biosynthesis
/ Therapeutics
2020
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Decreased sphingolipid synthesis in children with 17q21 asthma–risk genotypes
by
Worgall, Tilla S.
, Tesfaigzi, Yohannes
, Ono, Jennie G.
, Worgall, Stefan
, Kim, Benjamin I.
, Zhao, Yize
, Christos, Paul J.
in
Adolescent
/ Alleles
/ Allergies
/ Asthma
/ Asthma - blood
/ Asthma - genetics
/ Asthma - pathology
/ B cells
/ Biomedical research
/ Biosynthesis
/ Blood
/ Blood cells
/ Case-Control Studies
/ Ceramides
/ Child
/ Child, Preschool
/ Childhood
/ Childhood asthma
/ Children
/ Chromosome 17
/ Chromosomes, Human, Pair 17 - genetics
/ Chromosomes, Human, Pair 17 - metabolism
/ Concise Communication
/ Disease susceptibility
/ Drug development
/ Female
/ Genetic aspects
/ Genetic Diseases, Inborn - blood
/ Genetic Diseases, Inborn - genetics
/ Genetic Diseases, Inborn - pathology
/ Genetic diversity
/ Genotypes
/ Humans
/ Lipids
/ Male
/ Membrane lipids
/ Membrane Proteins - blood
/ Membrane Proteins - genetics
/ Peripheral blood
/ Phosphates
/ Physiological aspects
/ Plant lipids
/ Plasma
/ Risk Factors
/ Serine
/ Sphinganine
/ Sphingolipids
/ Sphingolipids - biosynthesis
/ Therapeutics
2020
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Decreased sphingolipid synthesis in children with 17q21 asthma–risk genotypes
Journal Article
Decreased sphingolipid synthesis in children with 17q21 asthma–risk genotypes
2020
Request Book From Autostore
and Choose the Collection Method
Overview
Risk for childhood asthma is conferred by alleles within the 17q21 locus affecting ORMDL sphingolipid biosynthesis regulator 3 (ORMDL3) expression. ORMDL3 inhibits sphingolipid de novo synthesis. Although the effects of 17q21 genotypes on sphingolipid synthesis in human asthma remain unclear, both decreased sphingolipid synthesis and ORMDL3 overexpression are linked to airway hyperreactivity. To characterize the relationship of genetic asthma susceptibility with sphingolipid synthesis, we analyzed asthma-associated 17q21 genotypes (rs7216389, rs8076131, rs4065275, rs12603332, and rs8067378) in both children with asthma and those without asthma, quantified plasma and whole-blood sphingolipids, and assessed sphingolipid de novo synthesis in peripheral blood cells by measuring the incorporation of stable isotope-labeled serine (substrate) into sphinganine and sphinganine-1-phosphate. Whole-blood dihydroceramides and ceramides were decreased in subjects with the 17q21 asthma-risk alleles rs7216389 and rs8076131. Children with nonallergic asthma had lower dihydroceramides, ceramides, and sphingomyelins than did controls. Children with allergic asthma had higher dihydroceramides, ceramides, and sphingomyelins compared with children with nonallergic asthma. Additionally, de novo sphingolipid synthesis was lower in children with asthma compared with controls. These findings connect genetic 17q21 variations that are associated with asthma risk and higher ORMDL3 expression to lower sphingolipid synthesis in humans. Altered sphingolipid synthesis may therefore be a critical factor in asthma pathogenesis and may guide the development of future therapeutics.
Publisher
American Society for Clinical Investigation
Subject
/ Alleles
/ Asthma
/ B cells
/ Blood
/ Child
/ Children
/ Chromosomes, Human, Pair 17 - genetics
/ Chromosomes, Human, Pair 17 - metabolism
/ Female
/ Genetic Diseases, Inborn - blood
/ Genetic Diseases, Inborn - genetics
/ Genetic Diseases, Inborn - pathology
/ Humans
/ Lipids
/ Male
/ Membrane Proteins - genetics
/ Plasma
/ Serine
This website uses cookies to ensure you get the best experience on our website.