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PMID: 23623389 Published · ppublish English

Malfunction of nuclease ERCC1-XPF results in diverse clinical manifestations and causes Cockayne syndrome, xeroderma pigmentosum, and Fanconi anemia.

American journal of human genetics ·Vol. 92 ·No. 5 ·2013-07-05

Kashiyama Kazuya, Nakazawa Yuka, Pilz Daniela T, Guo Chaowan, Shimada Mayuko, Sasaki Kensaku, Fawcett Heather, Wing Jonathan F, Lewin Susan O, Carr Lucinda, Li Tao-Sheng, Yoshiura Koh-ichiro, Utani Atsushi, Hirano Akiyoshi, Yamashita Shunichi, Greenblatt Danielle, Nardo Tiziana, Stefanini Miria, McGibbon David, Sarkany Robert, Fassihi Hiva, Takahashi Yoshito, Nagayama Yuji, Mitsutake Norisato, Lehmann Alan R, Ogi Tomoo

Abstract

Cockayne syndrome (CS) is a genetic disorder characterized by developmental abnormalities and photodermatosis resulting from the lack of transcription-coupled nucleotide excision repair, which is responsible for the removal of photodamage from actively transcribed genes. To date, all identified causative mutations for CS have been in the two known CS-associated genes, ERCC8 (CSA) and ERCC6 (CSB). For the rare combined xeroderma pigmentosum (XP) and CS phenotype, all identified mutations are in three of the XP-associated genes, ERCC3 (XPB), ERCC2 (XPD), and ERCC5 (XPG). In a previous report, we identified several CS cases who did not have mutations in any of these genes. In this paper, we describe three CS individuals deficient in ERCC1 or ERCC4 (XPF). Remarkably, one of these individuals with XP complementation group F (XP-F) had clinical features of three different DNA-repair disorders--CS, XP, and Fanconi anemia (FA). Our results, together with those from Bogliolo et al., who describe XPF alterations resulting in FA alone, indicate a multifunctional role for XPF.

Article Info
Journal
American journal of human genetics
Abbr.
Am J Hum Genet
Published
2013-07-05
Indexed
2013-05-06
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
0370475
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