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Establishment of Linkage Phase, Using Oxford Nanopore Technologies, for Preimplantation Genetic Testing of Coffin-Lowry Syndrome with a Mutation

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Journal Front Genet
Date 2023 Oct 2
PMID 37779904
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Abstract

This study aimed to perform preimplantation genetic testing (PGT) for a female Coffin-Lowry Syndrome (CLS) patient with a mutation (DNM) in RPS6KA3. It was challenging to establish the haplotype in this family because of the lack of information from affected family members. Hence, we explored a new and reliable strategy for the detection of the DNM in PGT, using Oxford Nanopore Technologies (ONT) and the MARSALA platform. We performed whole-exome sequencing (WES) on the proband and confirmed the pathogenic mutation by Sanger sequencing. The proband then underwent PGT to prevent the transmission of the pathogenic mutation to her offspring. We diverged from the conventional methods and used long-read sequencing (LRS) on the ONT platform to directly detect the mutation and nearby SNPs, for construction of the haplotype in the preclinical phase of PGT. In the clinical phase of embryo diagnosis, the MARSALA method was used to detect both the SNP-based haplotype and chromosome copy number variations (CNVs), in each blastocyst. Finally, a normal embryo was selected by comparison to the haplotype of the proband and transferred into the uterus. Sanger sequencing and karyotyping were performed by amniocentesis, at 17 weeks of gestation, to confirm the accuracy of PGT. Using WES, we found the novel, heterozygous, pathogenic c.1496delG (p.Gly499Valfs*25) mutation of RPS6KA3 in the proband. The SNP-based haplotype that was linked to the pathogenic mutation site was successfully established in the proband, without the need for other family members to be tested with ONT. Eight blastocysts were biopsied to perform PGT and were assessed with a haplotype linkage analysis (30 SNP sites selected), to give results that were consistent with direct mutation detection using Sanger sequencing. The results of PGT showed that three of the eight blastocysts were normal, without the DNM. Moreover, the patient had a successful pregnancy, after transfer of a normal blastocyst into the uterus, and delivered a healthy baby. The ONT platform, combined with the MARSALA method, can be used to perform PGT for DNM patients without the need for other samples as a reference.

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Wen X, Li Z, Cheng L, Huo J, Yu W, Ou Z Front Endocrinol (Lausanne). 2024; 15:1441014.

PMID: 39411311 PMC: 11473338. DOI: 10.3389/fendo.2024.1441014.

References
1.
Jonsson H, Sulem P, Kehr B, Kristmundsdottir S, Zink F, Hjartarson E . Parental influence on human germline de novo mutations in 1,548 trios from Iceland. Nature. 2017; 549(7673):519-522. DOI: 10.1038/nature24018. View

2.
Cong Y, Jin H, Wu K, Wang H, Wang D . Case Report: Chinese female patients with a heterozygous pathogenic gene variant c.898C>T and distal 22q11.2 microdeletion. Front Genet. 2022; 13:900226. PMC: 9420874. DOI: 10.3389/fgene.2022.900226. View

3.
Li Q, Mao Y, Li S, Du H, He W, He J . Haplotyping by linked-read sequencing (HLRS) of the genetic disease carriers for preimplantation genetic testing without a proband or relatives. BMC Med Genomics. 2020; 13(1):117. PMC: 7441613. DOI: 10.1186/s12920-020-00766-1. View

4.
Delaunoy J, Dubos A, Marques Pereira P, Hanauer A . Identification of novel mutations in the RSK2 gene (RPS6KA3) in patients with Coffin-Lowry syndrome. Clin Genet. 2006; 70(2):161-6. DOI: 10.1111/j.1399-0004.2006.00660.x. View

5.
Handyside A, Harton G, Mariani B, Thornhill A, Affara N, Shaw M . Karyomapping: a universal method for genome wide analysis of genetic disease based on mapping crossovers between parental haplotypes. J Med Genet. 2009; 47(10):651-8. DOI: 10.1136/jmg.2009.069971. View