Recent advances of PIWI‐interacting RNA in cardiovascular diseases

Author:

Li Bo12,Wang Kai2ORCID,Cheng Wei3,Fang Bo2,Li Ying Hui2,Yang Su Min4,Zhang Mei Hua1,Wang Yun Hong5,Wang Kun12

Affiliation:

1. Key Laboratory of Maternal & Fetal Medicine of National Health Commission of China Shandong Provincial Maternal and Child Health Care Hospital affiliated to Qingdao University Jinan Shandong China

2. Institute for Translational Medicine The Affiliated Hospital of Qingdao University, College of Medicine, Qingdao University Qingdao Shandong China

3. Department of Cardiovascular Surgery Beijing Children's Hospital, Capital Medical University National Center for Children's Health Beijing China

4. Department of Cardiovascular Surgery The Affiliated Hospital of Qingdao University Qingdao Shandong China

5. Hypertension Center Beijing Anzhen Hospital Capital Medical University Beijing China

Abstract

AbstractBackgroundThe relationship between noncoding RNAs (ncRNAs) and human diseases has been a hot topic of research, but the study of ncRNAs in cardiovascular diseases (CVDs) is still in its infancy. PIWI‐interacting RNA (piRNA), a small ncRNA that binds to the PIWI protein to maintain genome stability by silencing transposons, was widely studied in germ lines and stem cells. In recent years, piRNA has been shown to be involved in key events of multiple CVDs through various epigenetic modifications, revealing the potential value of piRNA as a new biomarker or therapeutic target.ConclusionThis review explores origin, degradation, function, mechanism and important role of piRNA in CVDs, and the promising therapeutic targets of piRNA were summarized. This review provide a new strategy for the treatment of CVDs and lay a theoretical foundation for future research.Key points piRNA can be used as a potential therapeutic target and biomaker in CVDs. piRNA influences apoptosis, inflammation and angiogenesis by regulating epigenetic modificaions. Critical knowledge gaps remain in the unifying piRNA nomenclature and PIWI‐independent function.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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