Cargando…

Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency

Background: Genetics of 21 hydroxylase deficiency is complex with pseudogene derived point mutations and rearrangements in the CYP21A2 gene. 20-30% of these mutations are due to large 30kb deletion forming chimeric genes and large gene conversion. In general, MLPA is the choice of technique in molec...

Descripción completa

Detalles Bibliográficos
Autores principales: Ravichandran, Lavanya, Korula, Sophy, Asha, H S, Varghese, Deny, Parthiban, R, Johnson, Jabasteen, Cherian, Kripa Elizabeth, Jebasingh, Felix, Kapoor, Nitin, Mathai, Sarah, Simon, Anna, Rajaratnam, Simon, Paul, Thomas V, Thomas, Nihal, Chapla, Aaron
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9067855/
http://dx.doi.org/10.4103/2230-8210.342230
_version_ 1784700100911562752
author Ravichandran, Lavanya
Korula, Sophy
Asha, H S
Varghese, Deny
Parthiban, R
Johnson, Jabasteen
Cherian, Kripa Elizabeth
Jebasingh, Felix
Kapoor, Nitin
Mathai, Sarah
Simon, Anna
Rajaratnam, Simon
Paul, Thomas V
Thomas, Nihal
Chapla, Aaron
author_facet Ravichandran, Lavanya
Korula, Sophy
Asha, H S
Varghese, Deny
Parthiban, R
Johnson, Jabasteen
Cherian, Kripa Elizabeth
Jebasingh, Felix
Kapoor, Nitin
Mathai, Sarah
Simon, Anna
Rajaratnam, Simon
Paul, Thomas V
Thomas, Nihal
Chapla, Aaron
author_sort Ravichandran, Lavanya
collection PubMed
description Background: Genetics of 21 hydroxylase deficiency is complex with pseudogene derived point mutations and rearrangements in the CYP21A2 gene. 20-30% of these mutations are due to large 30kb deletion forming chimeric genes and large gene conversion. In general, MLPA is the choice of technique in molecular analysis of large deletions and duplications. Aim and Objectives: To evaluate long-range PCRs, restriction digestion, ASPCR and MLPA to identify various chimeric forms of CYP21A2 gene. Results: In this study, 24.2% (n=16/66) were identified with large rearrangements based on long-range PCR and restriction digestion results. Thirteen subjects were positive for chimeric genes described in 21-hydroxylase deficiency. Junction site analysis with both MLPA and ASPCR results revealed that ASPCR could detect the actual extent of rearrangement in all the chimeric genes while MLPA could miss two of the chimeric genes in four subjects. Conclusion: In this study, MLPA as a direct stand-alone technique has shown to be inadequate in identifying the extent of some rearrangements in the CYP21A2 gene. Since, it is crucial to differentiate various chimeric forms of this gene; we recommend a multistep approach including long-range PCR, restriction digestion and ASPCR/MLPA to interpret and understand the associated phenotypic severity in 21-hydroxylase deficiency.
format Online
Article
Text
id pubmed-9067855
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Wolters Kluwer - Medknow
record_format MEDLINE/PubMed
spelling pubmed-90678552022-05-05 Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency Ravichandran, Lavanya Korula, Sophy Asha, H S Varghese, Deny Parthiban, R Johnson, Jabasteen Cherian, Kripa Elizabeth Jebasingh, Felix Kapoor, Nitin Mathai, Sarah Simon, Anna Rajaratnam, Simon Paul, Thomas V Thomas, Nihal Chapla, Aaron Indian J Endocrinol Metab Abstracts … Esicon 2021 Background: Genetics of 21 hydroxylase deficiency is complex with pseudogene derived point mutations and rearrangements in the CYP21A2 gene. 20-30% of these mutations are due to large 30kb deletion forming chimeric genes and large gene conversion. In general, MLPA is the choice of technique in molecular analysis of large deletions and duplications. Aim and Objectives: To evaluate long-range PCRs, restriction digestion, ASPCR and MLPA to identify various chimeric forms of CYP21A2 gene. Results: In this study, 24.2% (n=16/66) were identified with large rearrangements based on long-range PCR and restriction digestion results. Thirteen subjects were positive for chimeric genes described in 21-hydroxylase deficiency. Junction site analysis with both MLPA and ASPCR results revealed that ASPCR could detect the actual extent of rearrangement in all the chimeric genes while MLPA could miss two of the chimeric genes in four subjects. Conclusion: In this study, MLPA as a direct stand-alone technique has shown to be inadequate in identifying the extent of some rearrangements in the CYP21A2 gene. Since, it is crucial to differentiate various chimeric forms of this gene; we recommend a multistep approach including long-range PCR, restriction digestion and ASPCR/MLPA to interpret and understand the associated phenotypic severity in 21-hydroxylase deficiency. Wolters Kluwer - Medknow 2022-03 /pmc/articles/PMC9067855/ http://dx.doi.org/10.4103/2230-8210.342230 Text en Copyright: © 2022 Indian Journal of Endocrinology and Metabolism https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Abstracts … Esicon 2021
Ravichandran, Lavanya
Korula, Sophy
Asha, H S
Varghese, Deny
Parthiban, R
Johnson, Jabasteen
Cherian, Kripa Elizabeth
Jebasingh, Felix
Kapoor, Nitin
Mathai, Sarah
Simon, Anna
Rajaratnam, Simon
Paul, Thomas V
Thomas, Nihal
Chapla, Aaron
Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title_full Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title_fullStr Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title_full_unstemmed Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title_short Abstract 109: Long-range PCRs and MLPA for molecular analysis of large rearrangements in 21 hydroxylase deficiency
title_sort abstract 109: long-range pcrs and mlpa for molecular analysis of large rearrangements in 21 hydroxylase deficiency
topic Abstracts … Esicon 2021
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9067855/
http://dx.doi.org/10.4103/2230-8210.342230
work_keys_str_mv AT ravichandranlavanya abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT korulasophy abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT ashahs abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT varghesedeny abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT parthibanr abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT johnsonjabasteen abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT cheriankripaelizabeth abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT jebasinghfelix abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT kapoornitin abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT mathaisarah abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT simonanna abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT rajaratnamsimon abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT paulthomasv abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT thomasnihal abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency
AT chaplaaaron abstract109longrangepcrsandmlpaformolecularanalysisoflargerearrangementsin21hydroxylasedeficiency