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Published on: April 1, 2019
Usefulness and Limitations of Multiple Ligation-Dependent Probe Amplification in Antithrombin Deficiency
Rosa Cifuentes1, José Padilla1, María Eugenia de la Morena-Barrio1
1Servicio de Hematología y Oncología Médica, Hospital Universitario Morales Meseguer, Centro Regional de Hemodonación, Universidad de Murcia, IMIB-Pascual Parrilla, CIBERER, 30008 Murcia, Spain.
Abstract:
Multiplex ligation-dependent probe amplification (MLPA) identifies genetic structural variants in SERPINC1 in 5% of cases with antithrombin deficiency (ATD), the most severe congenital thrombophilia. Our aim was to unravel the utility and limitations of MLPA in a large cohort of unrelated patients with ATD (N = 341). MLPA identified 22 structural variants (SVs) causing ATD (6.5%). MLPA did not detect SVs affecting introns (four cases), and the diagnosis was inaccurate in two cases according to long-range PCR or nanopore sequencing. MLPA was used to detect possible hidden SVs in 61 cases with type I deficiency with single nucleotide variations (SNVs) or small insertion/deletion (INDEL). One case had a false deletion of exon 7, as the 29-bp deletion affected an MLPA probe. We evaluated 32 variants affecting MLPA probes: 27 SNVs and 5 small INDELs. In three cases, MLPA gave false-positive results, all diagnosed as deletions of the affected exon: a small INDEL complex, and two SNVs affecting MLPA probes. Our study confirms the utility of MLPA to detect SVs in ATD, but also shows some limitations in detecting intronic SVs. MLPA renders imprecise and false-positive results for genetic defects which affect MLPA probes. Our results encourage the validation of MLPA results.
Insights
Multiplex ligation-dependent probe amplification (MLPA) is useful for detecting genetic structural variants in antithrombin deficiency (ATD). However, MLPA has limitations in identifying intronic variants and can produce inaccurate results for defects affecting MLPA probes.
Area of Science:
- Genetics
- Molecular Biology
- Hematology
Background:
- Antithrombin deficiency (ATD) is the most severe form of congenital thrombophilia.
- Genetic structural variants (SVs) in the SERPINC1 gene are implicated in ATD.
- Multiplex ligation-dependent probe amplification (MLPA) is a common method for detecting genetic variants.
Purpose of the Study:
- To evaluate the utility and limitations of MLPA in a large cohort of ATD patients.
- To identify specific challenges and inaccuracies associated with MLPA in ATD diagnosis.
Main Methods:
- MLPA analysis was performed on 341 unrelated ATD patients.
- Results were validated using long-range PCR and nanopore sequencing where necessary.
- Variants affecting MLPA probes were specifically evaluated.
Main Results:
- MLPA identified 22 structural variants (SVs) in 6.5% of ATD cases.
- MLPA failed to detect intronic SVs in four cases and yielded inaccurate diagnoses in two.
- False-positive results and inaccuracies were observed for genetic defects directly impacting MLPA probes.
Conclusions:
- MLPA is a valuable tool for detecting SVs in ATD but has limitations.
- Intronic variants and defects affecting MLPA probes can lead to missed or inaccurate diagnoses.
- Validation of MLPA results is crucial for reliable ATD genetic diagnosis.
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