Genome-wide identification of Chiari malformation type I associated candidate genes and chromosomal variations

Timuçin AvŞar1,2,3, Şeyma ÇaliŞ3,4, Baran Yilmaz5

  • 1Department of Medical Biology, School of Medicine, Bahçeşehir University, İstanbul Turkey.

Insights

Genomic variations in OLFML2A, SLC4A9, and COL4A1 are linked to Chiari malformation type I (CMI) in familial cases. Copy number variations in the 11p15.4 region may also contribute to CMI development.

Area of Science:

  • Genetics
  • Neurology
  • Medical Research

Background:

  • Chiari malformation type I (CMI) is a heterogeneous brain malformation involving cerebellar herniation.
  • The precise pathogenesis of CMI remains unclear, with limited understanding of genetic contributions.
  • Familial studies are essential for elucidating the genetic basis of complex diseases like CMI.

Purpose of the Study:

  • To identify genomic variations associated with Chiari malformation type I (CMI) in familial cases.
  • To investigate the role of single nucleotide variations (SNVs) and copy number variations (CNVs) in CMI pathogenesis.
  • To explore potential genetic risk factors within affected families.

Main Methods:

  • Microarray analysis was performed on individuals from two Turkish families with CMI.
  • Whole genome SNV data was analyzed for B allele frequency (BAF) and log R ratio (LRR) to identify SNVs and CNVs.
  • Comparative analysis was conducted between affected patients and unaffected family members.

Main Results:

  • Two missense variations (OLFML2A, SLC4A9) and one 5'UTR variation (COL4A1) were significantly associated with CMI.
  • Twelve intronic SNVs in genes including FAM155A, NR3C1, TRPC7, ASTN2, and TRAF1 were linked to CMI.
  • CNV analysis identified the 11p15.4 chromosomal region as potentially inherited and associated with CMI in one family.

Conclusions:

  • Genetic variations in OLFML2A, SLC4A9, and COL4A1 are implicated in the molecular pathogenesis of CMI.
  • The 11p15.4 chromosomal region represents a potential risk area for CMI.
  • Familial genomic studies are crucial for understanding the complex genetic underpinnings of Chiari malformation type I.