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MEK-ERK pathway modulation ameliorates disease phenotypes in a mouse model of Noonan syndrome associated with the Raf1L613V mutation
Xue Wu, … , Benjamin G. Neel, Toshiyuki Araki
Xue Wu, … , Benjamin G. Neel, Toshiyuki Araki
Published February 21, 2011
Citation Information: J Clin Invest. 2011;121(3):1009-1025. https://doi.org/10.1172/JCI44929.
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Research Article

MEK-ERK pathway modulation ameliorates disease phenotypes in a mouse model of Noonan syndrome associated with the Raf1L613V mutation

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Abstract

Hypertrophic cardiomyopathy (HCM) is a leading cause of sudden death in children and young adults. Abnormalities in several signaling pathways are implicated in the pathogenesis of HCM, but the role of the RAS-RAF-MEK-ERK MAPK pathway has been controversial. Noonan syndrome (NS) is one of several autosomal-dominant conditions known as RASopathies, which are caused by mutations in different components of this pathway. Germline mutations in RAF1 (which encodes the serine-threonine kinase RAF1) account for approximately 3%–5% of cases of NS. Unlike other NS alleles, RAF1 mutations that confer increased kinase activity are highly associated with HCM. To explore the pathogenesis of such mutations, we generated knockin mice expressing the NS-associated Raf1L613V mutation. Like NS patients, mice heterozygous for this mutation (referred to herein as L613V/+ mice) had short stature, craniofacial dysmorphia, and hematologic abnormalities. Valvuloseptal development was normal, but L613V/+ mice exhibited eccentric cardiac hypertrophy and aberrant cardiac fetal gene expression, and decompensated following pressure overload. Agonist-evoked MEK-ERK activation was enhanced in multiple cell types, and postnatal MEK inhibition normalized the growth, facial, and cardiac defects in L613V/+ mice. These data show that different NS genes have intrinsically distinct pathological effects, demonstrate that enhanced MEK-ERK activity is critical for causing HCM and other RAF1-mutant NS phenotypes, and suggest a mutation-specific approach to the treatment of RASopathies.

Authors

Xue Wu, Jeremy Simpson, Jenny H. Hong, Kyoung-Han Kim, Nirusha K. Thavarajah, Peter H. Backx, Benjamin G. Neel, Toshiyuki Araki

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Figure 8

Enhanced Mek and Erk activation in L613V/+ hearts after pressure overload.

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Enhanced Mek and Erk activation in L613V/+ hearts after pressure overloa...
Hearts from WT and L613V/+ mice were subjected to TAC for the indicated number of minutes (n = 5 per group per time point), then lysed and analyzed by immunoblotting with the indicated antibodies. Erk2 levels are shown as a loading control. Each lane represents an individual animal; quantification of all samples is also shown. (A) Mek activation, with all samples from a single time point analyzed on the same gel. (B) Representative samples of Erk activation from each time point analyzed on the same gel. (A and B) *P < 0.05, 2-tailed Student’s t test.

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