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1.
PLoS Genet ; 20(6): e1011310, 2024 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-38857303

RESUMO

Growth deficiency is a characteristic feature of both Kabuki syndrome 1 (KS1) and Kabuki syndrome 2 (KS2), Mendelian disorders of the epigenetic machinery with similar phenotypes but distinct genetic etiologies. We previously described skeletal growth deficiency in a mouse model of KS1 and further established that a Kmt2d-/- chondrocyte model of KS1 exhibits precocious differentiation. Here we characterized growth deficiency in a mouse model of KS2, Kdm6atm1d/+. We show that Kdm6atm1d/+ mice have decreased femur and tibia length compared to controls and exhibit abnormalities in cortical and trabecular bone structure. Kdm6atm1d/+ growth plates are also shorter, due to decreases in hypertrophic chondrocyte size and hypertrophic zone height. Given these disturbances in the growth plate, we generated Kdm6a-/- chondrogenic cell lines. Similar to our prior in vitro model of KS1, we found that Kdm6a-/- cells undergo premature, enhanced differentiation towards chondrocytes compared to Kdm6a+/+ controls. RNA-seq showed that Kdm6a-/- cells have a distinct transcriptomic profile that indicates dysregulation of cartilage development. Finally, we performed RNA-seq simultaneously on Kmt2d-/-, Kdm6a-/-, and control lines at Days 7 and 14 of differentiation. This revealed surprising resemblance in gene expression between Kmt2d-/- and Kdm6a-/- at both time points and indicates that the similarity in phenotype between KS1 and KS2 also exists at the transcriptional level.


Assuntos
Anormalidades Múltiplas , Condrócitos , Modelos Animais de Doenças , Face , Doenças Hematológicas , Histona Desmetilases , Doenças Vestibulares , Animais , Doenças Vestibulares/genética , Doenças Vestibulares/patologia , Camundongos , Face/anormalidades , Histona Desmetilases/genética , Histona Desmetilases/metabolismo , Doenças Hematológicas/genética , Doenças Hematológicas/patologia , Condrócitos/metabolismo , Anormalidades Múltiplas/genética , Anormalidades Múltiplas/patologia , Diferenciação Celular/genética , Condrogênese/genética , Proteínas de Ligação a DNA/genética , Proteínas de Ligação a DNA/deficiência , Humanos , Camundongos Knockout , Fenótipo , Histona-Lisina N-Metiltransferase , Proteína de Leucina Linfoide-Mieloide
2.
Hum Mol Genet ; 31(13): 2164-2184, 2022 07 07.
Artigo em Inglês | MEDLINE | ID: mdl-35094088

RESUMO

Sotos syndrome (SS), the most common overgrowth with intellectual disability (OGID) disorder, is caused by inactivating germline mutations of NSD1, which encodes a histone H3 lysine 36 methyltransferase. To understand how NSD1 inactivation deregulates transcription and DNA methylation (DNAm), and to explore how these abnormalities affect human development, we profiled transcription and DNAm in SS patients and healthy control individuals. We identified a transcriptional signature that distinguishes individuals with SS from controls and was also deregulated in NSD1-mutated cancers. Most abnormally expressed genes displayed reduced expression in SS; these downregulated genes consisted mostly of bivalent genes and were enriched for regulators of development and neural synapse function. DNA hypomethylation was strongly enriched within promoters of transcriptionally deregulated genes: overexpressed genes displayed hypomethylation at their transcription start sites while underexpressed genes featured hypomethylation at polycomb binding sites within their promoter CpG island shores. SS patients featured accelerated molecular aging at the levels of both transcription and DNAm. Overall, these findings indicate that NSD1-deposited H3K36 methylation regulates transcription by directing promoter DNA methylation, partially by repressing polycomb repressive complex 2 (PRC2) activity. These findings could explain the phenotypic similarity of SS to OGID disorders that are caused by mutations in PRC2 complex-encoding genes.


Assuntos
Síndrome de Sotos , Metilação de DNA/genética , Genes Controladores do Desenvolvimento , Histona Metiltransferases/genética , Histona-Lisina N-Metiltransferase/genética , Humanos , Mutação , Síndrome de Sotos/genética
4.
Am J Med Genet A ; 185(6): 1649-1665, 2021 06.
Artigo em Inglês | MEDLINE | ID: mdl-33783954

RESUMO

Wiedemann-Steiner syndrome (WSS) is an autosomal dominant disorder caused by monoallelic variants in KMT2A and characterized by intellectual disability and hypertrichosis. We performed a retrospective, multicenter, observational study of 104 individuals with WSS from five continents to characterize the clinical and molecular spectrum of WSS in diverse populations, to identify physical features that may be more prevalent in White versus Black Indigenous People of Color individuals, to delineate genotype-phenotype correlations, to define developmental milestones, to describe the syndrome through adulthood, and to examine clinicians' differential diagnoses. Sixty-nine of the 82 variants (84%) observed in the study were not previously reported in the literature. Common clinical features identified in the cohort included: developmental delay or intellectual disability (97%), constipation (63.8%), failure to thrive (67.7%), feeding difficulties (66.3%), hypertrichosis cubiti (57%), short stature (57.8%), and vertebral anomalies (46.9%). The median ages at walking and first words were 20 months and 18 months, respectively. Hypotonia was associated with loss of function (LoF) variants, and seizures were associated with non-LoF variants. This study identifies genotype-phenotype correlations as well as race-facial feature associations in an ethnically diverse cohort, and accurately defines developmental trajectories, medical comorbidities, and long-term outcomes in individuals with WSS.


Assuntos
Predisposição Genética para Doença , Transtornos do Crescimento/genética , Histona-Lisina N-Metiltransferase/genética , Hipertricose/congênito , Deficiência Intelectual/genética , Proteína de Leucina Linfoide-Mieloide/genética , População Negra/genética , Constipação Intestinal/epidemiologia , Constipação Intestinal/genética , Constipação Intestinal/patologia , Insuficiência de Crescimento/epidemiologia , Insuficiência de Crescimento/genética , Insuficiência de Crescimento/patologia , Estudos de Associação Genética , Transtornos do Crescimento/epidemiologia , Transtornos do Crescimento/patologia , Humanos , Hipertricose/epidemiologia , Hipertricose/genética , Hipertricose/patologia , Deficiência Intelectual/epidemiologia , Deficiência Intelectual/patologia , Mutação com Perda de Função/genética , Estudos Retrospectivos , População Branca/genética
5.
Am J Med Genet A ; 185(1): 119-133, 2021 01.
Artigo em Inglês | MEDLINE | ID: mdl-33098347

RESUMO

Dubowitz syndrome (DubS) is considered a recognizable syndrome characterized by a distinctive facial appearance and deficits in growth and development. There have been over 200 individuals reported with Dubowitz or a "Dubowitz-like" condition, although no single gene has been implicated as responsible for its cause. We have performed exome (ES) or genome sequencing (GS) for 31 individuals clinically diagnosed with DubS. After genome-wide sequencing, rare variant filtering and computational and Mendelian genomic analyses, a presumptive molecular diagnosis was made in 13/27 (48%) families. The molecular diagnoses included biallelic variants in SKIV2L, SLC35C1, BRCA1, NSUN2; de novo variants in ARID1B, ARID1A, CREBBP, POGZ, TAF1, HDAC8, and copy-number variation at1p36.11(ARID1A), 8q22.2(VPS13B), Xp22, and Xq13(HDAC8). Variants of unknown significance in known disease genes, and also in genes of uncertain significance, were observed in 7/27 (26%) additional families. Only one gene, HDAC8, could explain the phenotype in more than one family (N = 2). All but two of the genomic diagnoses were for genes discovered, or for conditions recognized, since the introduction of next-generation sequencing. Overall, the DubS-like clinical phenotype is associated with extensive locus heterogeneity and the molecular diagnoses made are for emerging clinical conditions sharing characteristic features that overlap the DubS phenotype.


Assuntos
Eczema/diagnóstico , Eczema/genética , Predisposição Genética para Doença , Transtornos do Crescimento/diagnóstico , Transtornos do Crescimento/genética , Histona Desacetilases/genética , Deficiência Intelectual/diagnóstico , Deficiência Intelectual/genética , Microcefalia/diagnóstico , Microcefalia/genética , Proteínas Repressoras/genética , Adolescente , Criança , Pré-Escolar , Variações do Número de Cópias de DNA/genética , Eczema/patologia , Exoma/genética , Fácies , Feminino , Genoma Humano/genética , Genômica/métodos , Transtornos do Crescimento/patologia , Humanos , Lactente , Deficiência Intelectual/patologia , Masculino , Microcefalia/patologia , Fenótipo , Sequenciamento do Exoma
6.
Hum Mol Genet ; 28(R2): R254-R264, 2019 11 21.
Artigo em Inglês | MEDLINE | ID: mdl-31595951

RESUMO

The epigenetic machinery in conjunction with the transcriptional machinery is responsible for maintaining genome-wide chromatin states and dynamically regulating gene expression. Mendelian disorders of the epigenetic machinery (MDEMs) are genetic disorders resulting from mutations in components of the epigenetic apparatus. Though individually rare, MDEMs have emerged as a collectively common etiology for intellectual disability (ID) and growth disruption. Studies in model organisms and humans have demonstrated dosage sensitivity of this gene group with haploinsufficiency as a predominant disease mechanism. The epigenetic machinery consists of three enzymatic components (writers, erasers and chromatin remodelers) as well as one non-enzymatic group (readers). A tally of the entire census of such factors revealed that although multiple enzymatic activities never coexist within a single component, individual enzymatic activities often coexist with a reader domain. This group of disorders disrupts both the chromatin and transcription states of target genes downstream of the given component but also DNA methylation on a global scale. Elucidation of these global epigenetic changes may inform our understanding of disease pathogenesis and have diagnostic utility. Moreover, many therapies targeting epigenetic marks already exist, and some have proven successful in treating cancer. This, along with the recent observation that neurological dysfunction in these disorders may in fact be treatable in postnatal life, suggests that the scientific community should prioritize this group as a potentially treatable cause of ID. Here we summarize the recent expansion and major characteristics of MDEMs, as well as the unique therapeutic prospects for this group of disorders.


Assuntos
Montagem e Desmontagem da Cromatina/genética , Cromatina/enzimologia , Epigênese Genética , Deficiência Intelectual/genética , Animais , Cromatina/química , Cromatina/genética , Cromatina/metabolismo , Metilação de DNA/genética , Histona Acetiltransferases/deficiência , Humanos , Metiltransferases/metabolismo , Camundongos , Síndrome de Rett/genética , Síndrome de Rett/metabolismo , Síndrome de Sotos/enzimologia , Síndrome de Sotos/genética , Talassemia alfa/genética
7.
JCI Insight ; 4(20)2019 10 17.
Artigo em Inglês | MEDLINE | ID: mdl-31557133

RESUMO

Kabuki syndrome 1 (KS1) is a Mendelian disorder of the epigenetic machinery caused by mutations in the gene encoding KMT2D, which methylates lysine 4 on histone H3 (H3K4). KS1 is characterized by intellectual disability, postnatal growth retardation, and distinct craniofacial dysmorphisms. A mouse model (Kmt2d+/ßGeo) exhibits features of the human disorder and has provided insight into other phenotypes; however, the mechanistic basis of skeletal abnormalities and growth retardation remains elusive. Using high-resolution micro-CT, we show that Kmt2d+/ßGeo mice have shortened long bones and ventral bowing of skulls. In vivo expansion of growth plates within skulls and long bones suggests disrupted endochondral ossification as a common disease mechanism. Stable chondrocyte cell lines harboring inactivating mutations in Kmt2d exhibit precocious differentiation, further supporting this mechanism. A known inducer of chondrogenesis, SOX9, and its targets show markedly increased expression in Kmt2d-/- chondrocytes. By transcriptome profiling, we identify Shox2 as a putative KMT2D target. We propose that decreased KMT2D-mediated H3K4me3 at Shox2 releases Sox9 inhibition and thereby leads to enhanced chondrogenesis, providing a potentially novel and plausible explanation for precocious chondrocyte differentiation. Our findings provide insight into the pathogenesis of growth retardation in KS1 and suggest therapeutic approaches for this and related disorders.


Assuntos
Anormalidades Múltiplas/genética , Diferenciação Celular/genética , Condrogênese/genética , Face/anormalidades , Doenças Hematológicas/genética , Histona-Lisina N-Metiltransferase/deficiência , Proteínas de Homeodomínio/metabolismo , Proteína de Leucina Linfoide-Mieloide/deficiência , Crânio/crescimento & desenvolvimento , Doenças Vestibulares/genética , Anormalidades Múltiplas/patologia , Animais , Condrócitos/patologia , Modelos Animais de Doenças , Face/patologia , Feminino , Doenças Hematológicas/patologia , Histona-Lisina N-Metiltransferase/genética , Histonas/metabolismo , Humanos , Masculino , Camundongos , Mutação , Proteína de Leucina Linfoide-Mieloide/genética , Oxigênio/metabolismo , Fatores de Transcrição SOX9/metabolismo , Crânio/citologia , Crânio/diagnóstico por imagem , Doenças Vestibulares/patologia , Microtomografia por Raio-X
8.
Hum Mutat ; 39(9): 1226-1237, 2018 09.
Artigo em Inglês | MEDLINE | ID: mdl-29897170

RESUMO

Malan syndrome is an overgrowth disorder described in a limited number of individuals. We aim to delineate the entity by studying a large group of affected individuals. We gathered data on 45 affected individuals with a molecularly confirmed diagnosis through an international collaboration and compared data to the 35 previously reported individuals. Results indicate that height is > 2 SDS in infancy and childhood but in only half of affected adults. Cardinal facial characteristics include long, triangular face, macrocephaly, prominent forehead, everted lower lip, and prominent chin. Intellectual disability is universally present, behaviorally anxiety is characteristic. Malan syndrome is caused by deletions or point mutations of NFIX clustered mostly in exon 2. There is no genotype-phenotype correlation except for an increased risk for epilepsy with 19p13.2 microdeletions. Variants arose de novo, except in one family in which mother was mosaic. Variants causing Malan and Marshall-Smith syndrome can be discerned by differences in the site of stop codon formation. We conclude that Malan syndrome has a well recognizable phenotype that usually can be discerned easily from Marshall-Smith syndrome but rarely there is some overlap. Differentiation from Sotos and Weaver syndrome can be made by clinical evaluation only.


Assuntos
Anormalidades Múltiplas/genética , Hipotireoidismo Congênito/genética , Anormalidades Craniofaciais/genética , Deformidades Congênitas da Mão/genética , Deficiência Intelectual/genética , Fatores de Transcrição NFI/genética , Síndrome de Sotos/genética , Anormalidades Múltiplas/fisiopatologia , Adolescente , Adulto , Doenças do Desenvolvimento Ósseo/genética , Doenças do Desenvolvimento Ósseo/fisiopatologia , Criança , Pré-Escolar , Deleção Cromossômica , Hipotireoidismo Congênito/fisiopatologia , Anormalidades Craniofaciais/fisiopatologia , Deficiências do Desenvolvimento/genética , Deficiências do Desenvolvimento/fisiopatologia , Éxons/genética , Feminino , Deformidades Congênitas da Mão/fisiopatologia , Humanos , Deficiência Intelectual/fisiopatologia , Masculino , Megalencefalia/genética , Megalencefalia/fisiopatologia , Mutação de Sentido Incorreto/genética , Fenótipo , Displasia Septo-Óptica/genética , Displasia Septo-Óptica/fisiopatologia , Síndrome de Sotos/fisiopatologia , Adulto Jovem
9.
J Magn Reson Imaging ; 37(4): 974-80, 2013 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-23055421

RESUMO

Adenylosuccinate lyase (ADSL) deficiency is a rare inborn error of metabolism resulting in accumulation of metabolites including succinylaminoimidazole carboxamide riboside (SAICAr) and succinyladenosine (S-Ado) in the brain and other tissues. Patients with ADSL have progressive psychomotor retardation, neonatal seizures, global developmental delay, hypotonia, and autistic features, although variable clinical manifestations may make the initial diagnosis challenging. Two cases of the severe form of the disease are reported here: an 18-month-old boy with global developmental delay, intractable neonatal seizures, progressive cerebral atrophy, and marked hypomyelination, and a 3-month-old girl presenting with microcephaly, neonatal seizures, and marked psychomotor retardation. In both patients in vivo proton magnetic resonance spectroscopy (MRS) showed the presence of S-Ado signal at 8.3 ppm, consistent with a prior report. Interestingly, SAICAr signal was also detectable at 7.5 ppm in affected white matter, which has not been reported in vivo before. A novel splice-site mutation, c.IVS12 + 1/G > C, in the ADSL gene was identified in the second patient. Our findings confirm the utility of in vivo proton MRS in suggesting a specific diagnosis of ADSL deficiency, and also demonstrate an additional in vivo resonance (7.5 ppm) of SAICAr in the cases of severe disease.


Assuntos
Encéfalo/enzimologia , Deficiências do Desenvolvimento/diagnóstico , Aumento da Imagem/métodos , Interpretação de Imagem Assistida por Computador/métodos , Espectroscopia de Ressonância Magnética/métodos , Transtornos Psicomotores/diagnóstico , Erros Inatos do Metabolismo da Purina-Pirimidina/diagnóstico , Adenosina/análogos & derivados , Adenosina/análise , Adenilossuccinato Liase/deficiência , Adenilossuccinato Liase/genética , Aminoimidazol Carboxamida/análogos & derivados , Aminoimidazol Carboxamida/análise , Transtorno Autístico , Análise Mutacional de DNA , Deficiências do Desenvolvimento/enzimologia , Deficiências do Desenvolvimento/genética , Feminino , Humanos , Lactente , Masculino , Transtornos Psicomotores/enzimologia , Transtornos Psicomotores/genética , Erros Inatos do Metabolismo da Purina-Pirimidina/enzimologia , Erros Inatos do Metabolismo da Purina-Pirimidina/genética , Ribonucleosídeos/análise
10.
Am J Med Genet A ; 158A(6): 1414-21, 2012 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-22585553

RESUMO

The RAS-MAPK pathway is critical for human growth and development. Abnormalities at different steps of this signaling cascade result in neuro-cardio-facial-cutaneous syndromes, or the RASopathies, a group of disorders with overlapping yet distinct phenotypes. RASopathy patients have variable degrees of intellectual disability, poor growth, relative macrocephaly, ectodermal abnormalities, dysmorphic features, and increased risk for certain malignancies. Congenital heart disease, particularly hypertrophic cardiomyopathy (HCM) and pulmonic stenosis, are prominent features in these disorders. Significant locus heterogeneity exists for many of the RASopathies. Traditionally, these diseases were thought to be inherited in an autosomal dominant manner. However, recently patients with defects in two components of this pathway and overlapping features of various forms of Noonan syndrome and neurofibromatosis 1 and have been reported. Here we present a patient with severe, progressive neonatal HCM, elevated urinary catecholamine metabolites, and dysmorphic features in whom we identified a known LEOPARD syndrome-associated PTPN11 mutation (c.1403 C > T; p.T468M) and a novel, potentially pathogenic missense SOS1 variant (c.1018 C > T; p.P340S) replacing a rigid nonpolar imino acid with a polar amino acid at a highly conserved position. We describe detailed clinical manifestations, cardiac histopathology, and the molecular genetic findings. Oligogenic models of inheritance with potential synergistic effects should be considered in the RASopathies.


Assuntos
Cardiomiopatia Hipertrófica/congênito , Cardiomiopatia Hipertrófica/genética , Mutação , Fenótipo , Proteína Tirosina Fosfatase não Receptora Tipo 11/genética , Proteína SOS1/genética , Sequência de Aminoácidos , Cardiomiopatia Hipertrófica/diagnóstico , Feminino , Humanos , Lactente , Proteínas Quinases Ativadas por Mitógeno/metabolismo , Dados de Sequência Molecular , Proteínas Proto-Oncogênicas p21(ras)/metabolismo , Proteína SOS1/química , Transdução de Sinais
11.
Cancer Res ; 67(11): 5097-102, 2007 Jun 01.
Artigo em Inglês | MEDLINE | ID: mdl-17545586

RESUMO

Recent work suggests a link between the polycomb group protein EZH2 and mediation of gene silencing in association with maintenance of DNA methylation. However, we show that whereas basally expressed target cancer genes with minimal DNA methylation have increased transcription during EZH2 knockdown, densely DNA hypermethylated and silenced genes retain their methylation and remain transcriptionally silent. These results suggest that EZH2 can modulate transcription of basally expressed genes but not silent genes that are densely DNA methylated.


Assuntos
Neoplasias Ósseas/genética , Neoplasias do Colo/genética , Metilação de DNA , Proteínas de Ligação a DNA/genética , Inativação Gênica , Osteossarcoma/genética , Fatores de Transcrição/genética , Proteínas Adaptadoras de Transdução de Sinal/biossíntese , Proteínas Adaptadoras de Transdução de Sinal/genética , Neoplasias Ósseas/metabolismo , Linhagem Celular Tumoral , Neoplasias do Colo/metabolismo , Proteínas de Ligação a DNA/antagonistas & inibidores , Proteína Potenciadora do Homólogo 2 de Zeste , Regulação Neoplásica da Expressão Gênica , Genes Supressores de Tumor , Humanos , Proteína 1 Homóloga a MutL , Proteínas Nucleares/biossíntese , Proteínas Nucleares/genética , Osteossarcoma/metabolismo , Complexo Repressor Polycomb 2 , RNA Interferente Pequeno , Fatores de Transcrição/antagonistas & inibidores , Transcrição Gênica , Transfecção
12.
Cancer Res ; 66(7): 3541-9, 2006 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-16585178

RESUMO

Histone H3 lysine 9 (H3K9) and lysine 27 (H3K27) trimethylation are properties of stably silenced heterochromatin whereas H3K9 dimethylation (H3K9me2) is important for euchromatic gene repression. In colorectal cancer cells, all of these marks, as well as the key enzymes which establish them, surround the hMLH1 promoter when it is DNA hypermethylated and aberrantly silenced, but are absent when the gene is unmethylated and fully expressed in a euchromatic state. When the aberrantly silenced gene is DNA demethylated and reexpressed following 5-aza-2'-deoxycytidine treatment, H3K9me1 and H3K9me2 are the only silencing marks that are lost. A series of other silenced and DNA hypermethylated gene promoters behave identically even when the genes are chronically DNA demethylated and reexpressed after genetic knockout of DNA methyltransferases. Our data indicate that when transcription of DNA hypermethylated genes is activated in cancer cells, their promoters remain in an environment with certain heterochromatic characteristics. This finding has important implications for the translational goal of reactivating aberrantly silenced cancer genes as a therapeutic maneuver.


Assuntos
Cromatina/genética , Neoplasias Colorretais/genética , Metilação de DNA , Inativação Gênica , Genes Supressores de Tumor , Proteínas Adaptadoras de Transdução de Sinal , Azacitidina/análogos & derivados , Azacitidina/farmacologia , Proteínas de Transporte/genética , Linhagem Celular Tumoral , Cromatina/metabolismo , Neoplasias Colorretais/metabolismo , Decitabina , Células HCT116 , Histonas/genética , Histonas/metabolismo , Humanos , Peptídeos e Proteínas de Sinalização Intercelular/genética , Proteínas de Membrana/genética , Proteína 1 Homóloga a MutL , Proteínas Nucleares/genética , Regiões Promotoras Genéticas
13.
Cancer Res ; 62(24): 7213-8, 2002 Dec 15.
Artigo em Inglês | MEDLINE | ID: mdl-12499261

RESUMO

We examined the relationship between aberrant DNA hypermethylation and key histone code components at a hypermethylated, silenced tumor suppressor gene promoter in human cancer. In lower eukaryotes, methylated H3-lysine 9 (methyl-H3-K9) determines DNA methylation and correlates with repressed gene transcription. Here we show that a zone of deacetylated histone H3 plus methyl-H3-K9 surrounds a hypermethylated, silenced hMLH1 promoter, which, when unmethylated and active, is embedded in methyl-H3-K4 and acetylated H3. Inhibiting DNA methyltransferases, but not histone deacetylases, leads first to promoter demethylation, second to gene reexpression, and finally to complete histone code reversal. Our findings suggest a new paradigm-DNA methylation may directly, or indirectly by inhibiting transcription, maintain key repressive elements of the histone code at a hypermethylated gene promoter in cancer.


Assuntos
Azacitidina/análogos & derivados , Inativação Gênica/fisiologia , Histonas/genética , Acetilação , Proteínas Adaptadoras de Transdução de Sinal , Azacitidina/farmacologia , Proteínas de Transporte , Neoplasias Colorretais/genética , Neoplasias Colorretais/metabolismo , Metilação de DNA/efeitos dos fármacos , Metilases de Modificação do DNA/antagonistas & inibidores , Metilases de Modificação do DNA/metabolismo , Decitabina , Regulação Neoplásica da Expressão Gênica/efeitos dos fármacos , Regulação Neoplásica da Expressão Gênica/genética , Inibidores de Histona Desacetilases , Histona Desacetilases/metabolismo , Histonas/metabolismo , Humanos , Ácidos Hidroxâmicos/farmacologia , Metilação , Proteína 1 Homóloga a MutL , Proteínas de Neoplasias/biossíntese , Proteínas de Neoplasias/genética , Proteínas Nucleares , Regiões Promotoras Genéticas , Transcrição Gênica/efeitos dos fármacos , Transcrição Gênica/genética , Células Tumorais Cultivadas
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