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1.
Int J Mol Sci ; 25(17)2024 Sep 09.
Artículo en Inglés | MEDLINE | ID: mdl-39273702

RESUMEN

This study aimed to elucidate the genetic causes underlying the juvenile parkinsonism (JP) diagnosed in a girl with several family members diagnosed with spinocerebellar ataxia type 2 (SCA2). To achieve this, whole-exome sequencing, analysis of CAG repeats, RNA sequencing analysis on fibroblasts, and metabolite identification were performed. As a result, a homozygous missense mutation SNP T>C (rs2254562) in synaptojamin 1 (SYNJ1), which has been implicated in the regulation of membrane trafficking in the synaptic vesicles, was identified. Additionally, we observed overexpression of L1 cell adhesion molecule (L1CAM), Cdc37, GPX1, and GPX4 and lower expression of ceruloplasmin in the patient compared to the control. We also found changes in sphingolipid, inositol, and inositol phosphate metabolism. These findings help to clarify the mechanisms of JP and suggest that the etiology of JP in the patient may be multifactorial. This is the first report of the rs2254562 mutation in the SYNJ gene identified in a JP patient with seizures and cognitive impairment.


Asunto(s)
Trastornos Parkinsonianos , Humanos , Femenino , Trastornos Parkinsonianos/genética , Mutación Missense , Secuenciación del Exoma , Linaje , Polimorfismo de Nucleótido Simple , Proteínas del Tejido Nervioso/genética , Niño , Multiómica
2.
Nat Commun ; 13(1): 4597, 2022 08 06.
Artículo en Inglés | MEDLINE | ID: mdl-35933486

RESUMEN

SARS-CoV-2 infection can cause an inflammatory syndrome (COVID-19) leading, in many cases, to bilateral pneumonia, severe dyspnea, and in ~5% of these, death. DNA methylation is known to play an important role in the regulation of the immune processes behind COVID-19 progression, however it has not been studied in depth. In this study, we aim to evaluate the implication of DNA methylation in COVID-19 progression by means of a genome-wide DNA methylation analysis combined with DNA genotyping. The results reveal the existence of epigenomic regulation of functional pathways associated with COVID-19 progression and mediated by genetic loci. We find an environmental trait-related signature that discriminates mild from severe cases and regulates, among other cytokines, IL-6 expression via the transcription factor CEBP. The analyses suggest that an interaction between environmental contribution, genetics, and epigenetics might be playing a role in triggering the cytokine storm described in the most severe cases.


Asunto(s)
COVID-19 , COVID-19/genética , Síndrome de Liberación de Citoquinas , Citocinas , Metilación de ADN/genética , Humanos , SARS-CoV-2/genética
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