Decreased intranuclear cardiac troponin I impairs cardiac autophagy through FOS/ATG5 in ageing hearts

Author:

Liu Rui Min12345,Huang Shan12345,Hu Di6,Liu Lingjuan12345,Sun Hui Chao12345,Tian Jie12345ORCID,Pan Bo12345ORCID

Affiliation:

1. Department of Pediatric Cardiology National Clinical Key Cardiovascular Specialty Chongqing China

2. Ministry of Education Key Laboratory of Child Development and Disorders Chongqing China

3. National Clinical Research Center for Child Health and Disorders Chongqing China

4. China International Science and Technology Cooperation Base of Child Development and Critical Disorders Chongqing China

5. Key Laboratory of Children's Important Organ Development and Diseases of Chongqing Municipal Health Commission Chongqing China

6. Department of Otorhinolaryngology Children's Hospital of Chongqing Medical University Chongqing China

Abstract

AbstractIn our previous study, intranuclear cardiac troponin I (cTnI) may function as a co‐factor of Yin Yang 1(YY1). Here, we aimed to explore the role of intranuclear cTnI in ageing hearts. Nuclear translocation of cTnI was demonstrated using Western blot and immunofluorescence. The potential nuclear localization sequences (NLSs) of cTnI were predicted by a web server and then verified in 293T cells by putative NLS‐eGFP‐GST and NLS‐mutant transfection. The ratio of Nuclear cTnI/ Total cTnI (Nu/T) decreased significantly in ageing hearts, accompanied with ATG5‐decline‐related impaired cardiac autophagy. RNA sequencing was performed in cTnI knockout hearts. The differential expressed genes (DEGs) were analysed by overlapping with YY1 ChIP‐sequencing data. cTnI gain and loss experiments in vitro determined those filtered DEGs' expression levels. A strong correlation was found between expression patterns cTnI and FOS. Using ChIP‐q‐PCR, we demonstrated that specific binding DNA sequences of cTnI were enriched in the FOS promoter −299 to −157 region. It was further verified that pcDNA3.1 (−)‐cTnI could increase the promoter activity of FOS by using luciferase report assay. At last, we found that FOS can regulate the ATG5 (autophagy‐related gene 5) gene by using a luciferase report assay. Taken together, our results indicate that decreased intranuclear cTnI in ageing hearts may cause impaired cardiac autophagy through the FOS/ATG5 pathway.

Funder

National Natural Science Foundation of China

Chongqing Science and Technology Foundation

Natural Science Foundation of Chongqing Municipality

Publisher

Wiley

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1. Noteworthy phenomena in pediatric inherited cardiomyopathy;World Journal of Pediatrics;2024-06

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