AI Article Synopsis

  • - This research focuses on a neurodevelopmental syndrome linked to pathogenic variants in the Jumonji gene, which results in developmental delays, cognitive impairment, and various other symptoms, highlighting a lack of understanding of its molecular causes.
  • - The study analyzes DNA methylation profiles from 56 controls and 11 patients, revealing a clear differentiation in methylation patterns between patients with pathogenic variants and healthy individuals.
  • - A new DNA methylation signature has been identified as a potential biomarker for the syndrome, which may aid in diagnosis and improve care by distinguishing affected patients from those with variants of uncertain significance.

Article Abstract

(Jumonji, AT Rich Interactive Domain 2) pathogenic variants cause a neurodevelopmental syndrome, that is characterized by developmental delay, cognitive impairment, hypotonia, autistic features, behavior abnormalities and dysmorphic facial features. encodes a transcriptional repressor protein that regulates the activity of various histone methyltransferase complexes. However, the molecular etiology is not fully understood, and -neurodevelopmental syndrome may vary in its typical clinical phenotype. In addition, the detection of variants of uncertain significance (VUSs) often results in a delay of final diagnosis which could hamper the appropriate care. In this study we aim to detect a specific and sensitive DNA methylation signature for -neurodevelopmental syndrome. Peripheral blood DNA methylation profiles from 56 control subjects, 8 patients with (likely) pathogenic variants and 3 patients with VUSs were analyzed. DNA methylation analysis indicated a clear and robust separation between patients with (likely) pathogenic variants and controls. A binary model capable of classifying patients with the -neurodevelopmental syndrome was constructed on the basis of the identified episignature. Patients carrying VUSs clustered with the control group. We identified a distinct DNA methylation signature associated with -neurodevelopmental syndrome, establishing its utility as a biomarker for this syndrome and expanding the EpiSign diagnostic test.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9322505PMC
http://dx.doi.org/10.3390/ijms23148001DOI Listing

Publication Analysis

Top Keywords

dna methylation
20
-neurodevelopmental syndrome
20
methylation signature
12
pathogenic variants
12
signature -neurodevelopmental
8
patients pathogenic
8
syndrome
7
dna
5
-neurodevelopmental
5
patients
5

Similar Publications

CpG islands: Features and distribution in the genomes of porcine parvovirus.

Pol J Vet Sci

September 2024

Nanchong Key Laboratory of Disease Prevention, Control and Detection in Livestock and Poultry, Nanchong Vocational and Technical College, Nanchong 637131, China.

Porcine parvovirus disease is a reproductive disorder caused by the porcine parvovirus (PPV) in sows and is characterised by miscarriage, stillbirth and mummification in pregnant sows. Porcine parvovirus disease poses a significant threat to pork herds and seriously hinders healthy and sustainable development of the pig farming industry. Currently, there is no effective treatment for porcine parvovirus disease except for prevention and control measures.

View Article and Find Full Text PDF

Background: Lewy body diseases, including dementia with Lewy bodies (DLB), are characterized by α-synuclein accumulation, leading to dementia. Previous studies suggest distinct epigenetic and metabolomic profiles in DLB.

Objective: This study aims to identify diagnostic biomarkers by analyzing the methylome and metabolome in the Brodmann area 7 of postmortem brain tissues from DLB patients and control subjects using multiomics approaches.

View Article and Find Full Text PDF

The Genetic and Epigenetic Toxicity of Silica Nanoparticles: An Updated Review.

Int J Nanomedicine

December 2024

Department of Orthodontics, School and Hospital of Stomatology, Guangdong Engineering Research Center of Oral Restoration and Reconstruction & Guangzhou Key Laboratory of Basic and Applied Research of Oral Regenerative Medicine, Guangzhou Medical University, Guangzhou, People's Republic of China.

Silica nanoparticles (SiNPs) are widely used in biomedical fields, such as drug delivery, disease diagnosis, and molecular imaging. An increasing number of consumer products containing SiNPs are being used without supervision, and the toxicity of SiNPs to the human body is becoming a major problem. SiNPs contact the human body in various ways and cause damage to the structure and function of genetic material, potentially leading to carcinogenesis, teratogenicity and infertility.

View Article and Find Full Text PDF

Pan-Cancer Analysis of the Prognostic and Immunological Role of SEMA7A.

Int J Gen Med

December 2024

Department of Breast Surgery, Xingtai People's Hospital, Xingtai, Hebei, 054000, People's Republic of China.

Background: Semaphorin7A (SEMA7A) has been found to regulate both nerve and vessel homeostasis, but its specific role in pan-cancer remains uncertain. This research seeks to delve into the function and clinical relevance of SEMA7A in pan-cancer.

Methods: Through an analysis of gene expression omnibus and the cancer genome atlas datasets, we investigated the impact of SEMA7A on prognosis and immune regulation across 33 types of tumors.

View Article and Find Full Text PDF

Background: Studies have shown that DNA methylation of the CACNA1C gene is involved in the pathogenesis of various diseases and the mechanism of drug action. However, its relationship with atrial fibrillation (AF) remains largely unexplored.

Objective: To investigate the association between DNA methylation of the CACNA1C gene and AF by combining decitabine (5-Aza-2'-deoxycytidine, AZA) treatment with multi-omics analysis.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!