TY - JOUR
T1 - Myocardial Tbx20 regulates early atrioventricular canal formation and endocardial epithelial-mesenchymal transition via Bmp2
AU - Cai, Xiaoqiang
AU - Nomura-Kitabayashi, Aya
AU - Cai, Weibin
AU - Yan, Jianyun
AU - Christoffels, Vincent M.
AU - Cai, Chen Leng
N1 - Funding Information:
The authors thank Drs. Bruce Gelb and Marek Mlodzik for critical reading of the manuscript, and Dr. Kevin Kelley in the Mouse Genetics Resource Facility at Mount Sinai School of Medicine for production of Bmp2 transgenic mice. We also thank Dr. Ahmed Mansouri (Max-Planck) for providing the plasmid to generate the Bmp2 transgenic construct, and Drs. James Martin (Baylor College of Medicine) and Hiroki Kokubo (National Institute of Genetics, Japan) for providing RNA in situ probes. This work is supported by grants to C.L.C. from the NIH/NHLBI ( 1K02 HL094688 and 1R01HL095810 ), the American Heart Association ( 0855808D ) and the March of Dimes Foundation ( 5-FY07-642 ).
PY - 2011/12/15
Y1 - 2011/12/15
N2 - During early embryogenesis, the formation of the cardiac atrioventricular canal (AVC) facilitates the transition of the heart from a linear tube into a chambered organ. However, the genetic pathways underlying this developmental process are poorly understood. The T-box transcription factor Tbx20 is expressed predominantly in the AVC of early heart tube. It was shown that Tbx20 activates Nmyc1 and suppresses Tbx2 expression to promote proliferation and specification of the atrial and ventricular chambers, yet it is not known if Tbx20 is involved in early AVC development. Here, we report that mice lacking Tbx20 in the AVC myocardium fail to form the AVC constriction, and the endocardial epithelial-mesenchymal transition (EMT) is severely perturbed. Tbx20 maintains expression of a variety of genes, including Bmp2, Tbx3 and Hand1 in the AVC myocardium. Intriguingly, we found Bmp2 downstream genes involved in the EMT initiation are also downregulated. In addition, re-expression of Bmp2 in the AVC myocardium substantially rescues the EMT defects resulting from the lack of Tbx20, suggesting Bmp2 is one of the key downstream targets of Tbx20 in AVC development. Our data support a complex signaling network with Tbx20 suppressing Tbx2 in the AVC myocardium but also indirectly promoting Tbx2 expression through Bmp2. The spatiotemporal expression of Tbx2 in the AVC appears to be balanced between these two opposing signals. Overall, our study provides genetic evidence that Tbx20 has essential roles in regulating AVC development that coordinate early cardiac chamber formation.
AB - During early embryogenesis, the formation of the cardiac atrioventricular canal (AVC) facilitates the transition of the heart from a linear tube into a chambered organ. However, the genetic pathways underlying this developmental process are poorly understood. The T-box transcription factor Tbx20 is expressed predominantly in the AVC of early heart tube. It was shown that Tbx20 activates Nmyc1 and suppresses Tbx2 expression to promote proliferation and specification of the atrial and ventricular chambers, yet it is not known if Tbx20 is involved in early AVC development. Here, we report that mice lacking Tbx20 in the AVC myocardium fail to form the AVC constriction, and the endocardial epithelial-mesenchymal transition (EMT) is severely perturbed. Tbx20 maintains expression of a variety of genes, including Bmp2, Tbx3 and Hand1 in the AVC myocardium. Intriguingly, we found Bmp2 downstream genes involved in the EMT initiation are also downregulated. In addition, re-expression of Bmp2 in the AVC myocardium substantially rescues the EMT defects resulting from the lack of Tbx20, suggesting Bmp2 is one of the key downstream targets of Tbx20 in AVC development. Our data support a complex signaling network with Tbx20 suppressing Tbx2 in the AVC myocardium but also indirectly promoting Tbx2 expression through Bmp2. The spatiotemporal expression of Tbx2 in the AVC appears to be balanced between these two opposing signals. Overall, our study provides genetic evidence that Tbx20 has essential roles in regulating AVC development that coordinate early cardiac chamber formation.
KW - Atrioventricular canal
KW - Epithelial-mesenchymal transition
KW - Heart development
KW - Mouse
KW - Tbx20
UR - https://www.scopus.com/pages/publications/82555176642
U2 - 10.1016/j.ydbio.2011.09.023
DO - 10.1016/j.ydbio.2011.09.023
M3 - Article
AN - SCOPUS:82555176642
SN - 0012-1606
VL - 360
SP - 381
EP - 390
JO - Developmental Biology
JF - Developmental Biology
IS - 2
ER -