TY - JOUR
T1 - Characterization of the 3'UTR of the BTD gene and identification of regulatory elements and microRNAs
AU - Silva, Gerda Cristal Villalba
AU - Borsatto, Taciane
AU - Schwartz, Ida Vanessa Doederlein
AU - Sperb-Ludwig, Fernanda
N1 - Funding Information:
This study was funded by the HCPA Research and Event Incentive Fund (FIPE) and the National Council for Scientific and Technological Development (CNPq). The authors would like to thank the staff at the HCPA Medical Genetics Service, with special thanks to those who provide care and follow-up of the patients included in the study.
Publisher Copyright:
© Sociedade Brasileira de Genética.
PY - 2022
Y1 - 2022
N2 - Reduced biotinidase activity is associated with a spectrum of deficiency ranging from total deficiency to heterozygous levels, a finding that is not always explained by the pathogenic variants observed in the BTD gene. The investigation of miRNAs, regulatory elements and variants in the 3’UTR region may present relevance in understanding the genotype-phenotype association. The aims of the study were to characterize the regulatory elements of the 3’UTR of the BTD gene and identify variants and miRNAs which may explain the discrepancies observed between genotype and biochemical phenotype. We evaluated 92 individuals with reduced biotinidase activity (level of heterozygotes = 33, borderline = 35, partial DB = 20 or total DB= 4) with previously determined BTD genotype. The 3’UTR of the BTD gene was Sanger sequenced. In silico analysis was performed to identify miRNAs and regulatory elements. No variants were found in the 3’UTR. We found 97 possible miRNAs associated with the BTD gene, 49 predicted miRNAs involved in the alanine, biotin, citrate and pyruvate metabolic pathways and 5 genes involved in biotin metabolism. Six AU-rich elements were found. Our data suggest variants in the 3'UTR of BTD do not explain the genotype–phenotype discrepancies found in Brazilian individuals with reduced biotinidase.
AB - Reduced biotinidase activity is associated with a spectrum of deficiency ranging from total deficiency to heterozygous levels, a finding that is not always explained by the pathogenic variants observed in the BTD gene. The investigation of miRNAs, regulatory elements and variants in the 3’UTR region may present relevance in understanding the genotype-phenotype association. The aims of the study were to characterize the regulatory elements of the 3’UTR of the BTD gene and identify variants and miRNAs which may explain the discrepancies observed between genotype and biochemical phenotype. We evaluated 92 individuals with reduced biotinidase activity (level of heterozygotes = 33, borderline = 35, partial DB = 20 or total DB= 4) with previously determined BTD genotype. The 3’UTR of the BTD gene was Sanger sequenced. In silico analysis was performed to identify miRNAs and regulatory elements. No variants were found in the 3’UTR. We found 97 possible miRNAs associated with the BTD gene, 49 predicted miRNAs involved in the alanine, biotin, citrate and pyruvate metabolic pathways and 5 genes involved in biotin metabolism. Six AU-rich elements were found. Our data suggest variants in the 3'UTR of BTD do not explain the genotype–phenotype discrepancies found in Brazilian individuals with reduced biotinidase.
KW - 3′UTR
KW - AU-rich elements
KW - Biotinidase
KW - Genetic variants
KW - MiRNAs
UR - https://www.scopus.com/pages/publications/85125075763
UR - https://www.scopus.com/pages/publications/85125075763#tab=citedBy
U2 - 10.1590/1678-4685-GMB-2020-0432
DO - 10.1590/1678-4685-GMB-2020-0432
M3 - Article
C2 - 35167647
AN - SCOPUS:85125075763
SN - 1415-4757
VL - 45
JO - Genetics and Molecular Biology
JF - Genetics and Molecular Biology
IS - 1
M1 - e20200432
ER -