Sanger sequencing of MMR genes in a one-plate system

Both incidence and mortality of colorectal cancer (CRC) in Romania have shown a continuous increase during the last decades. Hereditary Non-Polyposic Colorectal Cancer (HNPCC), also known as Lynch syndrome, is mainly attributable to mismatch repair (MMR) genes MSH2, MSH6, and MLH1. Individuals carry...

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Main Authors: Negura Lucian, Negura Anca
Format: Article
Language:English
Published: Sciendo 2018-04-01
Series:Romanian Journal of Laboratory Medicine
Subjects:
Online Access:https://doi.org/10.2478/rrlm-2018-0008
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spelling doaj-ca98b96a6a454009b5a8fabe7e77f0702021-09-05T14:01:30ZengSciendoRomanian Journal of Laboratory Medicine2284-56232018-04-0126215316310.2478/rrlm-2018-0008rrlm-2018-0008Sanger sequencing of MMR genes in a one-plate systemNegura Lucian0Negura Anca1University of Medicine and Pharmacy Gr.T.Popa, Iasi, RomaniaAlexandru Ioan Cuza University of Iasi, Iasi, RomaniaBoth incidence and mortality of colorectal cancer (CRC) in Romania have shown a continuous increase during the last decades. Hereditary Non-Polyposic Colorectal Cancer (HNPCC), also known as Lynch syndrome, is mainly attributable to mismatch repair (MMR) genes MSH2, MSH6, and MLH1. Individuals carrying germ-line mutations of these genes present high lifetime risk of colorectal and other cancers, compared to non-carriers. Oncogenetics is developed worldwide nowadays, for identifying hereditary predisposition to cancer and offering appropriate clinical follow-up to patients and mutation carriers in Lynch families. Molecular oncogenetic diagnosis in Lynch syndrome is based on complete Sanger sequencing of entire MMR genes, which is time and resources consuming, therefore needing an appropriate and adapted optimization. Conventional sequencing requires a sufficient number of available samples to be processed simultaneously, which increases the waiting time for diagnostic results. Complete analysis for only one patient meets difficult technical problems due to the complex co-amplification of all gene regions of interest within the same conditions, therefore increasing the costs and reducing the cost-effectiveness of the test. Here we present an original and robust technical protocol for sequencing the entire MSH2, MSH6, and MLH1 coding sequence for one patient in a single PCR plate. Our optimized and verified system overcomes all technical problems and offers a quick, robust, and cost-effective possibility to personalize molecular oncogenetic diagnosis in Lynch syndrome.https://doi.org/10.2478/rrlm-2018-0008lynch syndromemmr genessanger sequencingmolecular diagnosticcost-effectiveness
collection DOAJ
language English
format Article
sources DOAJ
author Negura Lucian
Negura Anca
spellingShingle Negura Lucian
Negura Anca
Sanger sequencing of MMR genes in a one-plate system
Romanian Journal of Laboratory Medicine
lynch syndrome
mmr genes
sanger sequencing
molecular diagnostic
cost-effectiveness
author_facet Negura Lucian
Negura Anca
author_sort Negura Lucian
title Sanger sequencing of MMR genes in a one-plate system
title_short Sanger sequencing of MMR genes in a one-plate system
title_full Sanger sequencing of MMR genes in a one-plate system
title_fullStr Sanger sequencing of MMR genes in a one-plate system
title_full_unstemmed Sanger sequencing of MMR genes in a one-plate system
title_sort sanger sequencing of mmr genes in a one-plate system
publisher Sciendo
series Romanian Journal of Laboratory Medicine
issn 2284-5623
publishDate 2018-04-01
description Both incidence and mortality of colorectal cancer (CRC) in Romania have shown a continuous increase during the last decades. Hereditary Non-Polyposic Colorectal Cancer (HNPCC), also known as Lynch syndrome, is mainly attributable to mismatch repair (MMR) genes MSH2, MSH6, and MLH1. Individuals carrying germ-line mutations of these genes present high lifetime risk of colorectal and other cancers, compared to non-carriers. Oncogenetics is developed worldwide nowadays, for identifying hereditary predisposition to cancer and offering appropriate clinical follow-up to patients and mutation carriers in Lynch families. Molecular oncogenetic diagnosis in Lynch syndrome is based on complete Sanger sequencing of entire MMR genes, which is time and resources consuming, therefore needing an appropriate and adapted optimization. Conventional sequencing requires a sufficient number of available samples to be processed simultaneously, which increases the waiting time for diagnostic results. Complete analysis for only one patient meets difficult technical problems due to the complex co-amplification of all gene regions of interest within the same conditions, therefore increasing the costs and reducing the cost-effectiveness of the test. Here we present an original and robust technical protocol for sequencing the entire MSH2, MSH6, and MLH1 coding sequence for one patient in a single PCR plate. Our optimized and verified system overcomes all technical problems and offers a quick, robust, and cost-effective possibility to personalize molecular oncogenetic diagnosis in Lynch syndrome.
topic lynch syndrome
mmr genes
sanger sequencing
molecular diagnostic
cost-effectiveness
url https://doi.org/10.2478/rrlm-2018-0008
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