Literature DB >> 25219767

Genome-wide CNV analysis in 221 unrelated patients and targeted high-throughput sequencing reveal novel causative candidate genes for colorectal adenomatous polyposis.

Sukanya Horpaopan1, Isabel Spier, Alexander M Zink, Janine Altmüller, Stefanie Holzapfel, Andreas Laner, Stefanie Vogt, Siegfried Uhlhaas, Stefanie Heilmann, Dietlinde Stienen, Sandra M Pasternack, Kathleen Keppler, Ronja Adam, Katrin Kayser, Susanne Moebus, Markus Draaken, Franziska Degenhardt, Hartmut Engels, Andrea Hofmann, Markus M Nöthen, Verena Steinke, Alberto Perez-Bouza, Stefan Herms, Elke Holinski-Feder, Holger Fröhlich, Holger Thiele, Per Hoffmann, Stefan Aretz.   

Abstract

To uncover novel causative genes in patients with unexplained adenomatous polyposis, a model disease for colorectal cancer, we performed a genome-wide analysis of germline copy number variants (CNV) in a large, well characterized APC and MUTYH mutation negative patient cohort followed by a targeted next generation sequencing (NGS) approach. Genomic DNA from 221 unrelated German patients was genotyped on high-resolution SNP arrays. Putative CNVs were filtered according to stringent criteria, compared with those of 531 population-based German controls, and validated by qPCR. Candidate genes were prioritized using in silico, expression, and segregation analyses, data mining and enrichment analyses of genes and pathways. In 27% of the 221 unrelated patients, a total of 77 protein coding genes displayed rare, nonrecurrent, germline CNVs. The set included 26 candidates with molecular and cellular functions related to tumorigenesis. Targeted high-throughput sequencing found truncating point mutations in 12% (10/77) of the prioritized genes. No clear evidence was found for autosomal recessive subtypes. Six patients had potentially causative mutations in more than one of the 26 genes. Combined with data from recent studies of early-onset colorectal and breast cancer, recurrent potential loss-of-function alterations were detected in CNTN6, FOCAD (KIAA1797), HSPH1, KIF26B, MCM3AP, YBEY and in three genes from the ARHGAP family. In the canonical Wnt pathway oncogene CTNNB1 (β-catenin), two potential gain-of-function mutations were found. In conclusion, the present study identified a group of rarely affected genes which are likely to predispose to colorectal adenoma formation and confirmed previously published candidates for tumor predisposition as etiologically relevant.
© 2014 UICC.

Entities:  

Keywords:  candidate genes; copy number variation; gastrointestinal polyposis; genetic cause; hereditary colorectal cancer; next generation sequencing; unexplained polyposis

Mesh:

Substances:

Year:  2014        PMID: 25219767     DOI: 10.1002/ijc.29215

Source DB:  PubMed          Journal:  Int J Cancer        ISSN: 0020-7136            Impact factor:   7.396


  30 in total

1.  C21orf57 is a human homologue of bacterial YbeY proteins.

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Journal:  Biochem Biophys Res Commun       Date:  2017-01-30       Impact factor: 3.575

2.  Exome Sequencing Identifies Biallelic MSH3 Germline Mutations as a Recessive Subtype of Colorectal Adenomatous Polyposis.

Authors:  Ronja Adam; Isabel Spier; Bixiao Zhao; Michael Kloth; Jonathan Marquez; Inga Hinrichsen; Jutta Kirfel; Aylar Tafazzoli; Sukanya Horpaopan; Siegfried Uhlhaas; Dietlinde Stienen; Nicolaus Friedrichs; Janine Altmüller; Andreas Laner; Stefanie Holzapfel; Sophia Peters; Katrin Kayser; Holger Thiele; Elke Holinski-Feder; Giancarlo Marra; Glen Kristiansen; Markus M Nöthen; Reinhard Büttner; Gabriela Möslein; Regina C Betz; Angela Brieger; Richard P Lifton; Stefan Aretz
Journal:  Am J Hum Genet       Date:  2016-07-28       Impact factor: 11.025

3.  Exome sequencing identifies potential novel candidate genes in patients with unexplained colorectal adenomatous polyposis.

Authors:  Isabel Spier; Martin Kerick; Dmitriy Drichel; Sukanya Horpaopan; Janine Altmüller; Andreas Laner; Stefanie Holzapfel; Sophia Peters; Ronja Adam; Bixiao Zhao; Tim Becker; Richard P Lifton; Elke Holinski-Feder; Sven Perner; Holger Thiele; Markus M Nöthen; Per Hoffmann; Bernd Timmermann; Michal R Schweiger; Stefan Aretz
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9.  Exploration of the Key Proteins in the Normal-Adenoma-Carcinoma Sequence of Colorectal Cancer Evolution Using In-Depth Quantitative Proteomics.

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10.  New insights into the mechanisms underlying 5-fluorouracil-induced intestinal toxicity based on transcriptomic and metabolomic responses in human intestinal organoids.

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Journal:  Arch Toxicol       Date:  2021-06-20       Impact factor: 5.153

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