NONMMUT140591.1 may serve as a ceRNA to regulate Gata5 in UT-B knockout-induced cardiac conduction block

Author:

Lv Xuejiao1,Sun Yuxin2,Tan Wenxi1,Liu Yang1,Wen Naiyan3,Fu Shuang4,Yu Lanying4,Liu Tiantian4,Qi Xiaocui4,Shu Nanqi4,Du Yanwei4,Zhang Wenfeng5,Meng Yan1

Affiliation:

1. Department of Respiratory Medicine and Pathophysiology, Jilin University , No. 218, Ziqiang Road, Nanguan District, Changchun , 130041 Jilin , China

2. Department of Otolaryngology, Jilin University, Changchun , Jilin , 130021 , China

3. Department of Nursing, Changchun University of Chinese Medicine , Changchun , Jilin , 130117 , China

4. Department of Pathology and Pathophysiology, Changchun University of Chinese Medicine , Changchun , Jilin , 130117 , China

5. Department of Prescriptions, Changchun University of Chinese Medicine, Changchun , Jilin , 130117 , China

Abstract

Abstract We intended to explore the potential molecular mechanisms underlying the cardiac conduction block inducted by urea transporter (UT)-B deletion at the transcriptome level. The heart tissues were harvested from UT-B null mice and age-matched wild-type mice for lncRNA sequencing analysis. Based on the sequencing data, the differentially expressed mRNAs (DEMs) and lncRNAs (DELs) between UT-B knockout and control groups were identified, followed by function analysis and mRNA–lncRNA co-expression analysis. The miRNAs were predicted, and then the competing endogenous RNA (ceRNA) network was constructed. UT-B deletion results in the aberrant expression of 588 lncRNAs and 194 mRNAs. These DEMs were significantly enriched in the inflammation-related pathway. A lncRNA–mRNA co-expression network and a ceRNA network were constructed on the basis of the DEMs and DELs. The complement 7 (C7)–NONMMUT137216.1 co-expression pair had the highest correlation coefficient in the co-expression network. NONMMUT140591.1 had the highest degree in the ceRNA network and was involved in the ceRNA of NONMMUT140591.1-mmu-miR-298-5p-Gata5 (GATA binding protein 5). UT-B deletion may promote cardiac conduction block via inflammatory process. The ceRNA NONMMUT140591.1-mmu-miR-298-5p-Gata5 may be a potential molecular mechanism of UT-B knockout-induced cardiac conduction block.

Publisher

Walter de Gruyter GmbH

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Neuroscience

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