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Case-control analysis of truncating mutations in DNA damage response genes connects TEX15 and FANCD2 with hereditary breast cancer susceptibility

Katrin Rapakko; Anna Nurmi; Robert Winqvist; Jiangbo Tang; Maria Tengström; Kristiina Aittomäki; Katri Pylkäs; Johanna Schleutker; Anna Tervasmäki; Pentti Nieminen; Sini Lehto; Saila Kauppila; Heli Nevanlinna; Arto Mannermaa; Tuomo Mantere; Carl Blomqvist; Åke Borg; Riitta Hanhisalo; Anne Kallioniemi; Anders Kvist; Päivi Auvinen; Arja Jukkola-Vuorinen; Jaana M. Hartikainen; Maija Suvanto; Roger A. Greenberg; Mervi Grip

Case-control analysis of truncating mutations in DNA damage response genes connects TEX15 and FANCD2 with hereditary breast cancer susceptibility

Katrin Rapakko
Anna Nurmi
Robert Winqvist
Jiangbo Tang
Maria Tengström
Kristiina Aittomäki
Katri Pylkäs
Johanna Schleutker
Anna Tervasmäki
Pentti Nieminen
Sini Lehto
Saila Kauppila
Heli Nevanlinna
Arto Mannermaa
Tuomo Mantere
Carl Blomqvist
Åke Borg
Riitta Hanhisalo
Anne Kallioniemi
Anders Kvist
Päivi Auvinen
Arja Jukkola-Vuorinen
Jaana M. Hartikainen
Maija Suvanto
Roger A. Greenberg
Mervi Grip
Katso/Avaa
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Nature Publishing Group
doi:10.1038/s41598-017-00766-9
URI
http://www.nature.com/articles/s41598-017-00766-9
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Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2021042718804
Tiivistelmä

Several known breast cancer susceptibility genes encode proteins
involved in DNA damage response (DDR) and are characterized by rare
loss-of-function mutations. However, these explain less than half of the
familial cases. To identify novel susceptibility factors, 39 rare
truncating mutations, identified in 189 Northern Finnish hereditary
breast cancer patients in parallel sequencing of 796 DDR genes, were
studied for disease association. Mutation screening was performed for
Northern Finnish breast cancer cases (n = 578–1565) and controls
(n = 337–1228). Mutations showing potential cancer association were
analyzed in additional Finnish cohorts. c.7253dupT in TEX15, encoding a DDR factor important in meiosis, associated with hereditary breast cancer (p = 0.018)
and likely represents a Northern Finnish founder mutation. A
deleterious c.2715 + 1G > A mutation in the Fanconi anemia gene, FANCD2, was over two times more common in the combined Finnish hereditary cohort compared to controls. A deletion (c.640_644del5) in RNF168,
causative for recessive RIDDLE syndrome, had high prevalence in
majority of the analyzed cohorts, but did not associate with breast
cancer. In conclusion, truncating variants in TEX15 and FANCD2
are potential breast cancer risk factors, warranting further
investigations in other populations. Furthermore, high frequency of RNF168 c.640_644del5 indicates the need for its testing in Finnish patients with RIDDLE syndrome symptoms.

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