4.6 Article

The role of a lncRNA (TCONS_00044595) in regulating pineal CLOCK expression after neonatal hypoxia-ischemia brain injury

Journal

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2020.05.047

Keywords

HIBD; lncRNA; miRNA; miR-182; TCONS_00044595; Pineal gland; CLOCK

Funding

  1. National Natural Science Foundation of China [81871193, 81671532, 81701490, 81801505]
  2. Jiangsu Provincial Key Medical Discipline [ZDXKA2016013]
  3. Jiangsu Provincial Medical Youth Talent [QNRC2016763, QNRC2016758]
  4. Jiangsu Province Women and Children Health Research Project [F201750]
  5. Natural Science Foundation of Jiangsu Province [BK20180205]
  6. Pediatric Clinical Center of Suzhou City of China [Szzx201504]
  7. Science and Technology Project of Suzhou City of China [SS201709]
  8. Training Program Foundation for health talents of Gusu [GSWS2019049]
  9. Suzhou Industrial Technology Innovation Project [SYS201765]

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A common, yet often neglectable, feature of neonatal hypoxic-ischemic brain damage (HIBD) is circadian rhythm disorders resulted from pineal gland dysfunction. Our previous work demonstrated that miRNAs play an important role in regulating key circadian genes in the pineal gland post HIBD [5,21]. In current study, we sought out to extend our investigation by profiling expression changes of pineal long non-coding RNAs (lncRNAs) upon neonatal HIBD using RNA-Seq. After validating lncRNA changes, we showed that one lncRNA: TCONS_00044595 is highly enriched in the pineal gland and exhibits a circadian expression pattern. Next, we performed bioinformatic analysis to predict the lncRNA-miRNA regulatory network and identified 168 miRNAs that potentially targetlncRNA TCONS_00044595. We further validated the bona fide interaction between one candidate miRNA: miR-182, a known factor to regulate pineal Clock expression, and lncRNA TCONS_00044595. Finally, we showed that suppression of lncRNA TCONS_00044595 alleviated the CLOCK activation both in the cultured pinealocytes under OGD conditions and in the pineal gland post HIBD in vivo. Our study thus shed light into novel mechanisms of pathophysiology of pineal dysfunction post neonatal HIBD. (C) 2020 Elsevier Inc. All rights reserved.

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