Impact of CD1d deficiency on metabolism.
Invariant natural killer T cells (iNKTs) are innate-like T cells that are highly concentrated in the liver and recognize lipids presented on the MHC-like molecule CD1d. Although capable of a myriad of responses, few essential functions have been described for iNKTs. Among the many cell types of the...
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doaj-5305b80ee5884dca8f59a7912f37b10e2020-11-25T02:30:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2547810.1371/journal.pone.0025478Impact of CD1d deficiency on metabolism.Maya E KotasHui-Young LeeMatthew P GillumCharles AnnicelliBlas A GuigniGerald I ShulmanRuslan MedzhitovInvariant natural killer T cells (iNKTs) are innate-like T cells that are highly concentrated in the liver and recognize lipids presented on the MHC-like molecule CD1d. Although capable of a myriad of responses, few essential functions have been described for iNKTs. Among the many cell types of the immune system implicated in metabolic control and disease, iNKTs seem ideally poised for such a role, yet little has been done to elucidate such a possible function. We hypothesized that lipid presentation by CD1d could report on metabolic status and engage iNKTs to regulate cellular lipid content through their various effector mechanisms. To test this hypothesis, we examined CD1d deficient mice in a variety of metabolically stressed paradigms including high fat feeding, choline-deficient feeding, fasting, and acute inflammation. CD1d deficiency led to a mild exacerbation of steatosis during high fat or choline-deficient feeding, accompanied by impaired hepatic glucose tolerance. Surprisingly, however, this phenotype was not observed in Jα18⁻/⁻ mice, which are deficient in iNKTs but express CD1d. Thus, CD1d appears to modulate some metabolic functions through an iNKT-independent mechanism.http://europepmc.org/articles/PMC3183002?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Maya E Kotas Hui-Young Lee Matthew P Gillum Charles Annicelli Blas A Guigni Gerald I Shulman Ruslan Medzhitov |
spellingShingle |
Maya E Kotas Hui-Young Lee Matthew P Gillum Charles Annicelli Blas A Guigni Gerald I Shulman Ruslan Medzhitov Impact of CD1d deficiency on metabolism. PLoS ONE |
author_facet |
Maya E Kotas Hui-Young Lee Matthew P Gillum Charles Annicelli Blas A Guigni Gerald I Shulman Ruslan Medzhitov |
author_sort |
Maya E Kotas |
title |
Impact of CD1d deficiency on metabolism. |
title_short |
Impact of CD1d deficiency on metabolism. |
title_full |
Impact of CD1d deficiency on metabolism. |
title_fullStr |
Impact of CD1d deficiency on metabolism. |
title_full_unstemmed |
Impact of CD1d deficiency on metabolism. |
title_sort |
impact of cd1d deficiency on metabolism. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2011-01-01 |
description |
Invariant natural killer T cells (iNKTs) are innate-like T cells that are highly concentrated in the liver and recognize lipids presented on the MHC-like molecule CD1d. Although capable of a myriad of responses, few essential functions have been described for iNKTs. Among the many cell types of the immune system implicated in metabolic control and disease, iNKTs seem ideally poised for such a role, yet little has been done to elucidate such a possible function. We hypothesized that lipid presentation by CD1d could report on metabolic status and engage iNKTs to regulate cellular lipid content through their various effector mechanisms. To test this hypothesis, we examined CD1d deficient mice in a variety of metabolically stressed paradigms including high fat feeding, choline-deficient feeding, fasting, and acute inflammation. CD1d deficiency led to a mild exacerbation of steatosis during high fat or choline-deficient feeding, accompanied by impaired hepatic glucose tolerance. Surprisingly, however, this phenotype was not observed in Jα18⁻/⁻ mice, which are deficient in iNKTs but express CD1d. Thus, CD1d appears to modulate some metabolic functions through an iNKT-independent mechanism. |
url |
http://europepmc.org/articles/PMC3183002?pdf=render |
work_keys_str_mv |
AT mayaekotas impactofcd1ddeficiencyonmetabolism AT huiyounglee impactofcd1ddeficiencyonmetabolism AT matthewpgillum impactofcd1ddeficiencyonmetabolism AT charlesannicelli impactofcd1ddeficiencyonmetabolism AT blasaguigni impactofcd1ddeficiencyonmetabolism AT geraldishulman impactofcd1ddeficiencyonmetabolism AT ruslanmedzhitov impactofcd1ddeficiencyonmetabolism |
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