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1.
J Allergy Clin Immunol ; 145(3): 982-992, 2020 03.
Artigo em Inglês | MEDLINE | ID: mdl-31816409

RESUMO

BACKGROUND: Kabuki syndrome (KS) is commonly caused by mutations in the histone-modifying enzyme lysine methyltransferase 2D (KMT2D). Immune dysfunction is frequently observed in individuals with KS, but the role of KMT2D in immune system function has not been identified. OBJECTIVE: We sought to understand the mechanisms driving KS-associated immune deficiency (hypogammaglobulinemia [low IgA], splenomegaly, and diminished immunization responses). METHODS: We performed a comprehensive evaluation of humoral immunity and secondary lymphoid tissues in an established KS (Kmt2d+/ßGeo) mouse model and validated select findings in a patient with KS. RESULTS: Compared with wild-type littermates, Kmt2d+/ßGeo mice demonstrated deficiencies in multiple B-cell lineages and reduced serum IgA and elevated IgM levels across multiple ages. The bone marrow, spleen, and intestine of Kmt2d+/ßGeo mice contained diminished numbers of IgA-secreting cells, while elevated germinal center B cells were found in the mesenteric lymph node and Peyer patches. Kmt2d+/ßGeo mice have decreased size and numbers of Peyer patches, a finding confirmed in human samples. We identified deficiency of Itgb7 RNA and protein expression, a gene encoding an adhesion protein that mediates intestinal homing, and we demonstrated KMT2D-dependent control of ITGB7 expression in a human cell line. CONCLUSIONS: Kmt2d haploinsufficiency has broad deleterious effects on B-cell differentiation, specifically hampering gut lymphocyte homing and IgA+ plasma cell differentiation. Intestinal lymphoid defects caused by ITGB7 deficiency have not previously been recognized in KS, and these results provide new mechanistic insights into the pathogenesis of KS-associated immune deficiency.


Assuntos
Anormalidades Múltiplas/imunologia , Anormalidades Múltiplas/patologia , Linfócitos B/patologia , Face/anormalidades , Doenças Hematológicas/imunologia , Doenças Hematológicas/patologia , Nódulos Linfáticos Agregados/patologia , Doenças Vestibulares/imunologia , Doenças Vestibulares/patologia , Animais , Linfócitos B/imunologia , Diferenciação Celular/imunologia , Movimento Celular/imunologia , Proteínas de Ligação a DNA/genética , Face/patologia , Histona-Lisina N-Metiltransferase/genética , Humanos , Deficiência de IgA/genética , Deficiência de IgA/imunologia , Cadeias beta de Integrinas/metabolismo , Intestinos/imunologia , Camundongos , Mutação , Proteína de Leucina Linfoide-Mieloide/genética , Proteínas de Neoplasias/genética , Nódulos Linfáticos Agregados/imunologia
2.
Proc Natl Acad Sci U S A ; 114(1): 125-130, 2017 01 03.
Artigo em Inglês | MEDLINE | ID: mdl-27999180

RESUMO

Kabuki syndrome is a Mendelian intellectual disability syndrome caused by mutations in either of two genes (KMT2D and KDM6A) involved in chromatin accessibility. We previously showed that an agent that promotes chromatin opening, the histone deacetylase inhibitor (HDACi) AR-42, ameliorates the deficiency of adult neurogenesis in the granule cell layer of the dentate gyrus and rescues hippocampal memory defects in a mouse model of Kabuki syndrome (Kmt2d+/ßGeo). Unlike a drug, a dietary intervention could be quickly transitioned to the clinic. Therefore, we have explored whether treatment with a ketogenic diet could lead to a similar rescue through increased amounts of beta-hydroxybutyrate, an endogenous HDACi. Here, we report that a ketogenic diet in Kmt2d+/ßGeo mice modulates H3ac and H3K4me3 in the granule cell layer, with concomitant rescue of both the neurogenesis defect and hippocampal memory abnormalities seen in Kmt2d+/ßGeo mice; similar effects on neurogenesis were observed on exogenous administration of beta-hydroxybutyrate. These data suggest that dietary modulation of epigenetic modifications through elevation of beta-hydroxybutyrate may provide a feasible strategy to treat the intellectual disability seen in Kabuki syndrome and related disorders.


Assuntos
Anormalidades Múltiplas/dietoterapia , Dieta Cetogênica/métodos , Face/anormalidades , Doenças Hematológicas/dietoterapia , Hipocampo/metabolismo , Histonas/biossíntese , Deficiência Intelectual/dietoterapia , Neurogênese/fisiologia , Doenças Vestibulares/dietoterapia , Ácido 3-Hidroxibutírico/metabolismo , Anormalidades Múltiplas/genética , Animais , Modelos Animais de Doenças , Doenças Hematológicas/genética , Hipocampo/citologia , Histona Desmetilases/genética , Histona-Lisina N-Metiltransferase/genética , Deficiência Intelectual/genética , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Transgênicos , Proteína de Leucina Linfoide-Mieloide/genética , Neurogênese/genética , Doenças Vestibulares/genética
3.
Cell Metab ; 35(3): 472-486.e6, 2023 03 07.
Artigo em Inglês | MEDLINE | ID: mdl-36854304

RESUMO

With age, skeletal muscle stem cells (MuSCs) activate out of quiescence more slowly and with increased death, leading to defective muscle repair. To explore the molecular underpinnings of these defects, we combined multiomics, single-cell measurements, and functional testing of MuSCs from young and old mice. The multiomics approach allowed us to assess which changes are causal, which are compensatory, and which are simply correlative. We identified glutathione (GSH) metabolism as perturbed in old MuSCs, with both causal and compensatory components. Contrary to young MuSCs, old MuSCs exhibit a population dichotomy composed of GSHhigh cells (comparable with young MuSCs) and GSHlow cells with impaired functionality. Mechanistically, we show that antagonism between NRF2 and NF-κB maintains this bimodality. Experimental manipulation of GSH levels altered the functional dichotomy of aged MuSCs. These findings identify a novel mechanism of stem cell aging and highlight glutathione metabolism as an accessible target for reversing MuSC aging.


Assuntos
Multiômica , Músculo Esquelético , Camundongos , Animais , Músculo Esquelético/metabolismo , Células-Tronco/metabolismo , Senescência Celular , Envelhecimento/fisiologia
4.
Cell Metab ; 34(6): 902-918.e6, 2022 06 07.
Artigo em Inglês | MEDLINE | ID: mdl-35584694

RESUMO

Short-term fasting is beneficial for the regeneration of multiple tissue types. However, the effects of fasting on muscle regeneration are largely unknown. Here, we report that fasting slows muscle repair both immediately after the conclusion of fasting as well as after multiple days of refeeding. We show that ketosis, either endogenously produced during fasting or a ketogenic diet or exogenously administered, promotes a deep quiescent state in muscle stem cells (MuSCs). Although deep quiescent MuSCs are less poised to activate, slowing muscle regeneration, they have markedly improved survival when facing sources of cellular stress. Furthermore, we show that ketone bodies, specifically ß-hydroxybutyrate, directly promote MuSC deep quiescence via a nonmetabolic mechanism. We show that ß-hydroxybutyrate functions as an HDAC inhibitor within MuSCs, leading to acetylation and activation of an HDAC1 target protein p53. Finally, we demonstrate that p53 activation contributes to the deep quiescence and enhanced resilience observed during fasting.


Assuntos
Jejum , Proteína Supressora de Tumor p53 , Ácido 3-Hidroxibutírico , Jejum/fisiologia , Músculos , Mioblastos
5.
Sci Transl Med ; 6(256): 256ra135, 2014 Oct 01.
Artigo em Inglês | MEDLINE | ID: mdl-25273096

RESUMO

Kabuki syndrome is caused by haploinsufficiency for either of two genes that promote the opening of chromatin. If an imbalance between open and closed chromatin is central to the pathogenesis of Kabuki syndrome, agents that promote chromatin opening might have therapeutic potential. We have characterized a mouse model of Kabuki syndrome with a heterozygous deletion in the gene encoding the lysine-specific methyltransferase 2D (Kmt2d), leading to impairment of methyltransferase function. In vitro reporter alleles demonstrated a reduction in histone 4 acetylation and histone 3 lysine 4 trimethylation (H3K4me3) activity in mouse embryonic fibroblasts from Kmt2d(+/ßGeo) mice. These activities were normalized in response to AR-42, a histone deacetylase inhibitor. In vivo, deficiency of H3K4me3 in the dentate gyrus granule cell layer of Kmt2d(+/ßGeo) mice correlated with reduced neurogenesis and hippocampal memory defects. These abnormalities improved upon postnatal treatment with AR-42. Our work suggests that a reversible deficiency in postnatal neurogenesis underlies intellectual disability in Kabuki syndrome.


Assuntos
Anormalidades Múltiplas/tratamento farmacológico , Encéfalo/fisiopatologia , Face/anormalidades , Doenças Hematológicas/tratamento farmacológico , Inibidores de Histona Desacetilases/uso terapêutico , Doenças Vestibulares/tratamento farmacológico , Anormalidades Múltiplas/fisiopatologia , Animais , Proteínas de Ligação a DNA/genética , Modelos Animais de Doenças , Face/fisiopatologia , Feminino , Doenças Hematológicas/fisiopatologia , Hipocampo/fisiopatologia , Humanos , Masculino , Camundongos , Proteínas de Neoplasias/genética , Neurogênese , Doenças Vestibulares/fisiopatologia
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