AI Article Synopsis

  • - Arthrogryposis multiplex congenita (AMC) is a condition with non-progressive congenital contractures affecting multiple body areas, and about 20% of affected children also experience scoliosis, which is a significant spinal curvature.
  • - Researchers explored the DECIPHER database for genetic mutations associated with both AMC and scoliosis, identifying only two patients with shared characteristics and highlighting specific genes with copy number variations (CNVs) related to both conditions.
  • - A total of 227 genes were found to be associated with AMC and scoliosis, pointing to diverse cellular functions such as gene regulation and growth factors, paving the way for future genomic research to identify potential treatments and prognostic markers.

Article Abstract

Arthrogryposis multiplex congenita (AMC) describes a group of conditions characterized by the presence of non-progressive congenital contractures in multiple body areas. Scoliosis, defined as a coronal plane spine curvature of ≥10 degrees as measured radiographically, has been reported to occur in approximately 20% of children with AMC. To identify genes that are associated with both scoliosis as a clinical outcome and AMC, we first queried the DECIPHER database for copy number variations (CNVs). Upon query, we identified only two patients with both AMC and scoliosis (AMC-SC). The first patient contained CNVs in three genes (, , and , while the second case had a CNV in . Looking into small variants, using a combination of Human Phenotype Ontogeny and literature searching, 908 genes linked with scoliosis and 444 genes linked with AMC were identified. From these lists, 227 genes were associated with AMC-SC. Ingenuity Pathway Analysis (IPA) was performed on the final gene list to gain insight into the functional interactions of genes and various categories. To summarize, this group of genes encompasses a diverse group of cellular functions including transcription regulation, transmembrane receptor, growth factor, and ion channels. These results provide a focal point for further research using genomics and animal models to facilitate the identification of prognostic factors and therapeutic targets for AMC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8305424PMC
http://dx.doi.org/10.3390/genes12071052DOI Listing

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