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1.
Mol Neurobiol ; 56(8): 5392-5415, 2019 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-30610612

RESUMO

Natural antisense transcripts are common features of mammalian genes providing additional regulatory layers of gene expression. A comprehensive description of antisense transcription in loci associated to familial neurodegenerative diseases may identify key players in gene regulation and provide tools for manipulating gene expression. We take advantage of the FANTOM5 sequencing datasets that represent the largest collection to date of genome-wide promoter usage in almost 2000 human samples. Transcription start sites (TSSs) are mapped at high resolution by the use of a modified protocol of cap analysis of gene expression (CAGE) for high-throughput single molecule next-generation sequencing with Helicos (hCAGE). Here we present the analysis of antisense transcription at 17 loci associated to hereditary Alzheimer's disease, Frontotemporal Dementia, Parkinson's disease, Amyotrophic Lateral Sclerosis, and Huntington's disease. We focused our analysis on libraries derived from brain tissues and primary cells. We also screened libraries from total blood and blood cell populations in the quest for peripheral biomarkers of neurodegenerative diseases. We identified 63 robust promoters in antisense orientation to genes associated to familial neurodegeneration. When applying a less stringent cutoff, this number increases to over 400. A subset of these promoters represents alternative TSSs for 24 FANTOM5 annotated long noncoding RNA (lncRNA) genes, in antisense orientation to 13 of the loci analyzed here, while the remaining contribute to the expression of additional transcript variants. Intersection with GWAS studies, sample ontology, and dynamic expression reveals association to specific genetic traits as well as cell and tissue types, not limited to neurodegenerative diseases. Antisense transcription was validated for a subset of genes, including those encoding for Microtubule-Associated Protein Tau, α-synuclein, Parkinsonism-associated deglycase DJ-1, and Leucin-Rich Repeat Kinase 2. This work provides evidence for the existence of additional regulatory mechanisms of the expression of neurodegenerative disease-causing genes by previously not-annotated and/or not-validated antisense long noncoding RNAs.


Assuntos
Loci Gênicos , Predisposição Genética para Doença , Doenças Neurodegenerativas/genética , RNA Antissenso/genética , Transcrição Gênica , Linhagem Celular Tumoral , Regulação da Expressão Gênica , Pleiotropia Genética , Humanos , Anotação de Sequência Molecular , RNA Longo não Codificante/genética , RNA Longo não Codificante/metabolismo , RNA Mensageiro/genética , RNA Mensageiro/metabolismo
2.
J Med Case Rep ; 12(1): 103, 2018 Apr 22.
Artigo em Inglês | MEDLINE | ID: mdl-29679984

RESUMO

BACKGROUND: Propionic acidemia is a rare autosomal recessive inherited metabolic disorder that can inhibit the synthesis of N-acetylglutamate, the obligatory activator in urea synthesis, leading to hyperammonemia. N-carbamylglutamate ameliorates hyperammonemia in decompensated propionic acidemia. The effects of long-term continuous N-acetylglutamate administration in such patients are unknown. We report our clinical experience with continuous administration of N-acetylglutamate for 6 years in a patient with propionic acidemia frequently presenting with hyperammonemia. CASE PRESENTATION: A male Caucasian patient with frequently decompensated propionic acidemia and hyperammonemia was admitted 78 times for acute attacks during the first 9 years of his life. Continuous daily treatment with oral N-carbamylglutamate 100 mg/kg (50 mg/kg after 6 months) was initiated. During 6 years of treatment, he had a significant decrease in his mean plasma ammonia levels (75.7 µmol/L vs. 140.3 µmol/L before N-carbamylglutamate therapy, p < 0.005 [normal range 50-80 µmol/L]) and fewer acute episodes (two in 6 years). CONCLUSION: Our results suggest a benefit of N-acetylglutamate administration outside the emergency setting. If this observation is confirmed, future studies should aim to optimize the dosage and explore effects of the dosage requirements on other drugs and on protein tolerance.


Assuntos
Glutamatos/administração & dosagem , Hiperamonemia/sangue , Acidemia Propiônica/tratamento farmacológico , Administração Oral , Adolescente , Aminoácido N-Acetiltransferase/sangue , Aminoácido N-Acetiltransferase/efeitos dos fármacos , Biomarcadores/sangue , Doença Crônica , Deficiências do Desenvolvimento/complicações , Relação Dose-Resposta a Droga , Humanos , Hiperamonemia/etiologia , Masculino , Acidemia Propiônica/dietoterapia , Acidemia Propiônica/fisiopatologia , Distúrbios Congênitos do Ciclo da Ureia/sangue
3.
Neural Plast ; 2018: 4196961, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29531524

RESUMO

The antiparkinsonian ropinirole and pramipexole are D3 receptor- (D3R-) preferring dopaminergic (DA) agonists used as adjunctive therapeutics for the treatment resistant depression (TRD). While the exact antidepressant mechanism of action remains uncertain, a role for D3R in the restoration of impaired neuroplasticity occurring in TRD has been proposed. Since D3R agonists are highly expressed on DA neurons in humans, we studied the effect of ropinirole and pramipexole on structural plasticity using a translational model of human-inducible pluripotent stem cells (hiPSCs). Two hiPSC clones from healthy donors were differentiated into midbrain DA neurons. Ropinirole and pramipexole produced dose-dependent increases of dendritic arborization and soma size after 3 days of culture, effects antagonized by the selective D3R antagonists SB277011-A and S33084 and by the mTOR pathway kinase inhibitors LY294002 and rapamycin. All treatments were also effective in attenuating the D3R-dependent increase of p70S6-kinase phosphorylation. Immunoneutralisation of BDNF, inhibition of TrkB receptors, and blockade of MEK-ERK signaling likewise prevented ropinirole-induced structural plasticity, suggesting a critical interaction between BDNF and D3R signaling pathways. The highly similar profiles of data acquired with DA neurons derived from two hiPSC clones underpin their reliability for characterization of pharmacological agents acting via dopaminergic mechanisms.


Assuntos
Antiparkinsonianos/administração & dosagem , Benzotiazóis/administração & dosagem , Fator Neurotrófico Derivado do Encéfalo/metabolismo , Neurônios Dopaminérgicos , Indóis/administração & dosagem , Plasticidade Neuronal/efeitos dos fármacos , Serina-Treonina Quinases TOR/metabolismo , Animais , Neurônios Dopaminérgicos/citologia , Neurônios Dopaminérgicos/efeitos dos fármacos , Neurônios Dopaminérgicos/metabolismo , Humanos , Células-Tronco Pluripotentes Induzidas/fisiologia , Camundongos , Pramipexol , Transdução de Sinais
4.
Sci Rep ; 7(1): 6036, 2017 07 20.
Artigo em Inglês | MEDLINE | ID: mdl-28729666

RESUMO

Human induced pluripotent stem cells (hiPSCs) are invaluable to study developmental processes and disease mechanisms particularly in the brain. hiPSCs can be differentiated into mature and functional dopaminergic (DA) neurons. Having robust protocols for the generation of differentiated DA neurons from pluripotent cells is a prerequisite for the use of hiPSCs to study disease mechanisms, for drug discovery, and eventually for cell replacement therapy. Here, we describe a protocol for generating and expanding large numbers of homogeneous midbrain floor plate progenitors (mFPPs) that retain efficient DA neurogenic potential over multiple passages and can be cryobanked. We demonstrate that expanded mFPPs have increased DA neuron potential and differentiate more efficiently and rapidly than progenitors generated by standard protocols. In addition, this novel method results in increased numbers of DA neurons that in vitro show characteristic electrophysiological properties of nigrostriatal DA neurons, produce high levels of dopamine, and integrate into host mice when grafted in vivo. Thus, we describe a robust method for producing human mesencephalic DA neurons from hiPSCs.


Assuntos
Diferenciação Celular , Neurônios Dopaminérgicos/citologia , Células-Tronco Pluripotentes Induzidas/citologia , Mesencéfalo/citologia , Células-Tronco Neurais/citologia , Animais , Biomarcadores , Contagem de Células , Técnicas de Cultura de Células , Proliferação de Células , Células Cultivadas , Imunofluorescência , Humanos , Imunofenotipagem , Camundongos
5.
Nature ; 491(7424): 454-7, 2012 Nov 15.
Artigo em Inglês | MEDLINE | ID: mdl-23064229

RESUMO

Most of the mammalian genome is transcribed. This generates a vast repertoire of transcripts that includes protein-coding messenger RNAs, long non-coding RNAs (lncRNAs) and repetitive sequences, such as SINEs (short interspersed nuclear elements). A large percentage of ncRNAs are nuclear-enriched with unknown function. Antisense lncRNAs may form sense-antisense pairs by pairing with a protein-coding gene on the opposite strand to regulate epigenetic silencing, transcription and mRNA stability. Here we identify a nuclear-enriched lncRNA antisense to mouse ubiquitin carboxy-terminal hydrolase L1 (Uchl1), a gene involved in brain function and neurodegenerative diseases. Antisense Uchl1 increases UCHL1 protein synthesis at a post-transcriptional level, hereby identifying a new functional class of lncRNAs. Antisense Uchl1 activity depends on the presence of a 5' overlapping sequence and an embedded inverted SINEB2 element. These features are shared by other natural antisense transcripts and can confer regulatory activity to an artificial antisense to green fluorescent protein. Antisense Uchl1 function is under the control of stress signalling pathways, as mTORC1 inhibition by rapamycin causes an increase in UCHL1 protein that is associated to the shuttling of antisense Uchl1 RNA from the nucleus to the cytoplasm. Antisense Uchl1 RNA is then required for the association of the overlapping sense protein-coding mRNA to active polysomes for translation. These data reveal another layer of gene expression control at the post-transcriptional level.


Assuntos
Biossíntese de Proteínas/genética , RNA Antissenso/metabolismo , Elementos Nucleotídeos Curtos e Dispersos/genética , Ubiquitina Tiolesterase/genética , Ubiquitina Tiolesterase/metabolismo , Animais , Antibacterianos/farmacologia , Linhagem Celular , Humanos , Masculino , Camundongos , Biossíntese de Proteínas/efeitos dos fármacos , RNA Antissenso/genética , Inversão de Sequência , Sirolimo/farmacologia
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