Sall1 and Sall4 cooperatively interact with Myocd and SRF to promote cardiomyocyte proliferation by regulating CDK and cyclin genes

Author:

Katano Wataru1ORCID,Mori Shunta2,Sasaki Shun1,Tajika Yuki34ORCID,Tomita Koichi5,Takeuchi Jun K.6ORCID,Koshiba-Takeuchi Kazuko12ORCID

Affiliation:

1. Graduate School of Life Sciences, Toyo University 1 , 1-1-1, Izumino, Itakura-machi, Ora-gun, Gunma 374-0193 , Japan

2. Toyo University 2 Faculty of Life Sciences, Department of Applied Biosciences , , 1-1-1, Izumino, Itakura-machi, Ora-gun, Gunma 374-0193 , Japan

3. Graduate School of Medicine, Gunma University 3 , 3-39-22 Showa-machi, Maebashi, Gunma 371-8511 , Japan

4. Gunma Prefectural College of Health Sciences 4 Department of Radiological Technology , , 323-1, Kamioki-machi, Maebashi, Gunma 371-0052 , Japan

5. Graduate School of Biomedical Sciences, Tokushima University 5 , 3-18-15, Kuramoto-cho, Tokushima 770-8503 , Japan

6. Medical Research Institute, Tokyo Medical and Dental University 6 Department of Bio-informational Pharmacology , , 1-5-45 Yushima, Bunkyo, Tokyo 113-8510 , Japan

Abstract

ABSTRACT Sall1 and Sall4 (Sall1/4), zinc-finger transcription factors, are expressed in the progenitors of the second heart field (SHF) and in cardiomyocytes during the early stages of mouse development. To understand the function of Sall1/4 in heart development, we generated heart-specific Sall1/4 functionally inhibited mice by forced expression of the truncated form of Sall4 (ΔSall4) in the heart. The ΔSall4-overexpression mice exhibited a hypoplastic right ventricle and outflow tract, both of which were derived from the SHF, and a thinner ventricular wall. We found that the numbers of proliferative SHF progenitors and cardiomyocytes were reduced in ΔSall4-overexpression mice. RNA-sequencing data showed that Sall1/4 act upstream of the cyclin-dependent kinase (CDK) and cyclin genes, and of key transcription factor genes for the development of compact cardiomyocytes, including myocardin (Myocd) and serum response factor (Srf). In addition, ChIP-sequencing and co-immunoprecipitation analyses revealed that Sall4 and Myocd form a transcriptional complex with SRF, and directly bind to the upstream regulatory regions of the CDK and cyclin genes (Cdk1 and Ccnb1). These results suggest that Sall1/4 are critical for the proliferation of cardiac cells via regulation of CDK and cyclin genes that interact with Myocd and SRF.

Funder

Toyo University

Japan Science Society

Japan Science and Technology Agency

Naito Foundation

Japan Society for the Promotion of Science

Nanken-Kyoten

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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