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RAF1 mutations in childhood-onset dilated cardiomyopathy

Authors :
Perundurai S. Dhandapany
Periyasamy Govindaraj
Kumarasamy Thangaraj
Andiappan Rathinavel
Sherly Pardo
Ajay Bahl
Elisabetta Flex
Madhu Khullar
Sreejith Kunnoth
Jonathan J. Edwards
Djamel Lebeche
Giuseppe Limongelli
Bruce D. Gelb
Jeffrey Robbins
Sonia Mulero-Navarro
Rumiko Matsuoka
Ilan Riess
Michiko Furutani
Toshio Nakanishi
Tomohiro Yokota
Roger J. Hajjar
Jipo Sheng
Abdur Razzaque
Bindhu Rani
Deepa Selvi Rani
Kirsten C. Sadler
Tsutomu Nishizawa
Uthiralingam Muthusami
Marco Tartaglia
Dhandapany, P
Razzaque, Ma
Muthusami, U
Kunnoth, S
Edwards, Jj
Mulero Navarro, S
Riess, I
Pardo, S
Sheng, J
Rani, D
Rani, B
Govindaraj, P
Flex, E
Yokota, T
Furutani, M
Nishizawa, T
Nakanishi, T
Robbins, J
Limongelli, Giuseppe
Hajjar, Rj
Lebeche, D
Bahl, A
Khullar, M
Rathinavel, A
Sadler, Kc
Tartaglia, M
Matsuoka, R
Thangaraj, K
Gelb, B. D.
Source :
Nature Genetics. 46:635-639
Publication Year :
2014
Publisher :
Springer Science and Business Media LLC, 2014.

Abstract

Dilated cardiomyopathy (DCM) is a highly heterogeneous trait with sarcomeric gene mutations predominating. The cause of a substantial percentage of DCMs remains unknown, and no gene-specific therapy is available. On the basis of resequencing of 513 DCM cases and 1,150 matched controls from various cohorts of distinct ancestry, we discovered rare, functional RAF1 mutations in 3 of the cohorts (South Indian, North Indian and Japanese). The prevalence of RAF1 mutations was ~9% in childhood-onset DCM cases in these three cohorts. Biochemical studies showed that DCM-associated RAF1 mutants had altered kinase activity, resulting in largely unaltered ERK activation but in AKT that was hyperactivated in a BRAF-dependent manner. Constitutive expression of these mutants in zebrafish embryos resulted in a heart failure phenotype with AKT hyperactivation that was rescued by treatment with rapamycin. These findings provide new mechanistic insights and potential therapeutic targets for RAF1-associated DCM and further expand the clinical spectrum of RAF1-related human disorders.

Details

ISSN :
15461718 and 10614036
Volume :
46
Database :
OpenAIRE
Journal :
Nature Genetics
Accession number :
edsair.doi.dedup.....e954b4000851da66e7d028930a0e58fd
Full Text :
https://doi.org/10.1038/ng.2963