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Updated: Sep 14, 2025

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Identification of a PATL2 missense variant (c.877G>T) disrupting canonical splicing and contributing to female
Hongyan Li1, Yue Lin1, Weixu Ma1
1Affiliated Foshan Maternity and Child Healthcare Hospital, Guangdong Medical University, Foshan, Guangdong, China.
Background:
PATL2 deficiency is a significant cause of female infertility. Although multiple PATL2 missense variants have been reported in prior studies, a number of these variants remain classified as variants of uncertain significance (VUS).
Methods:
We present a patient of primary infertility characterized by oocyte maturation disorders and fertilization failure. Comprehensive genetic analysis was conducted through whole-exome sequencing (WES) to identify pathogenic variants, followed by Sanger sequencing for familial co-segregation analysis. Reverse transcription (RT-PCR), cDNA sequencing and quantitative RT-PCR were performed to validate the effect of the variant on pre-mRNA splicing.
Results:
We identified compound heterozygous variants in the PATL2 gene by WES: a pathogenic splice-site splicing variant (c.223-14_223-2del) and a missense variant (c.877G>T) initially classified as a VUS. Sanger sequencing confirmed that the proband carried biallelic variants, whereas her sisters with either wild-type genotypes or a single heterozygous variant exhibited normal fertility, supporting the co-segregation of the identified variants. Critically, RNA assays demonstrated that the missense variant c.877G>T disrupts canonical splicing of PATL2, resulting in exon 12 skipping.
Conclusion:
This study provides the first experimental evidence that a PATL2 missense variant (c.877G>T) can exert its pathogenicity through aberrant splicing, supporting its pathogenic reclassification and elucidating a genotype-phenotype correlation for PATL2 missense variants through functional assays.
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