Fkbp1a controls ventricular myocardium trabeculation and compaction by regulating endocardial Notch1 activity

Author:

Chen Hanying1,Zhang Wenjun1,Sun Xiaoxin1,Yoshimoto Momoko2,Chen Zhuang1,Zhu Wuqiang1,Liu Jijia13,Shen Yadan13,Yong Weidong1,Li Deqiang1,Zhang Jin1,Lin Yang2,Li Baiyan14,VanDusen Nathan J.1,Snider Paige2,Schwartz Robert J.5,Conway Simon J.2,Field Loren J.1,Yoder Mervin C.2,Firulli Anthony B.1,Carlesso Nadia2,Towbin Jeffrey A.6,Shou Weinian1

Affiliation:

1. Riley Heart Research Center, Division of Pediatric Cardiology, Indiana University School of Medicine, Indianapolis, IN 46202, USA.

2. Division of Neonatology, Herman B. Wells Center for Pediatric Research, Department of Pediatrics, Indiana University School of Medicine, Indianapolis, IN 46202, USA.

3. Department of Pediatric Cardiac Surgery, The Second Xiangya Hospital, Central South University, Changsha 410008, China.

4. Department of Pharmacology, Harbin Medical University, Harbin 150081, China.

5. Department of Biology and Biochemistry, University of Houston, Houston, TX 77204, USA.

6. The Heart Institute, Division of Pediatric Cardiology, Cincinnati Children’s Hospital Medical Center, Cincinnati, OH 45229, USA.

Abstract

Trabeculation and compaction of the embryonic myocardium are morphogenetic events crucial for the formation and function of the ventricular walls. Fkbp1a (FKBP12) is a ubiquitously expressed cis-trans peptidyl-prolyl isomerase. Fkbp1a-deficient mice develop ventricular hypertrabeculation and noncompaction. To determine the physiological function of Fkbp1a in regulating the intercellular and intracellular signaling pathways involved in ventricular trabeculation and compaction, we generated a series of Fkbp1a conditional knockouts. Surprisingly, cardiomyocyte-restricted ablation of Fkbp1a did not give rise to the ventricular developmental defect, whereas endothelial cell-restricted ablation of Fkbp1a recapitulated the ventricular hypertrabeculation and noncompaction observed in Fkbp1a systemically deficient mice, suggesting an important contribution of Fkbp1a within the developing endocardia in regulating the morphogenesis of ventricular trabeculation and compaction. Further analysis demonstrated that Fkbp1a is a novel negative modulator of activated Notch1. Activated Notch1 (N1ICD) was significantly upregulated in Fkbp1a-ablated endothelial cells in vivo and in vitro. Overexpression of Fkbp1a significantly reduced the stability of N1ICD and direct inhibition of Notch signaling significantly reduced hypertrabeculation in Fkbp1a-deficient mice. Our findings suggest that Fkbp1a-mediated regulation of Notch1 plays an important role in intercellular communication between endocardium and myocardium, which is crucial in controlling the formation of the ventricular walls.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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