| Literature DB >> 29101495 |
Yang Liu1,2, Jian Wang1, Jieli Li1, Rui Wang1,3, Binu Tharakan4, Shenyuan L Zhang1, Carl W Tong1,5, Xu Peng6.
Abstract
BACKGROUND: Cdc42 is a member of the Rho GTPase family and functions as a molecular switch in regulating cytoskeleton remodeling and cell polarity establishment. Inactivating Cdc42 in cardiomyocytes resulted in embryonic lethality with heart developmental defects, including ventricular septum defects and thin ventricle wall syndrome.Entities:
Keywords: Cdc42; GTPase; Heart development; Right ventricle development
Year: 2017 PMID: 29101495 PMCID: PMC5670094 DOI: 10.1186/s40169-017-0171-4
Source DB: PubMed Journal: Clin Transl Med ISSN: 2001-1326
Fig. 1Inactivation of Cdc42 in embryonic cardiomyocytes impaired right ventricle growth. Histological transverse sections through the hearts from E14.5 control (a) and knockout embryos (b, c). H&E staining showed a smaller right ventricle in the different section levels of the knockout (b, c). Black arrows indicate evaginations in the ventricle wall. Scale bar: 250 μm
Fig. 2Microarray analysis of dHand and MEF-2c expression levels in E14.5 embryonic hearts. a The expression level of dHand was down-regulated in the knockout hearts. b MEF-2c expression levels were comparable between control and knockout. *P < 0.05
Fig. 3Real-time PCR analysis of dHand expression levels. The expression level of dHand was significantly decreased in Cdc42 knockout heart. *P < 0.05