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Chan, S. S. K.

Publications and source records attributed to Chan, S. S. K..

2 recordsLinked to original sources

Cardiac Development Long non-coding RNA (CARDEL) is activated during human heart development and contributes to cardiac specification and homeostasis

Successful heart development depends on the careful orchestration of a network of transcription factors and signaling pathways. In recent years, the in vitro cardiac differentiation using human pluripotent stem cells (hPSCs) has been used to uncover the intricate gene network regulation involved in the proper formation and function of the human heart. Here, we searched for uncharacterized cardiac developmental genes by combining a temporal evaluation of the human cardiac specification in vitro with the analysis of fetal and adult heart tissue gene expression. We discovered that CARDEL (CARdiac DEvelopment Long non-coding RNA; LINC00890; SERTM2) expression coincides with the commitment to the cardiac lineage. CARDEL knockout hPSCs differentiated poorly in cardiac cells, and hPSC-derived cardiomyocytes showed faster beating rates after CARDEL controlled overexpression during differentiation. Altogether, we demonstrate physiological and molecular evidence that CARDEL expression contributes to sculpting the cardiac program during cell-fate commitment.

developmental biology↗

The cardiac lncRNA Chantico directly regulates Cxcl1 chemokine transcription

Withdrawal StatementThe corresponding author has withdrawn this preprint owing to inability to reproduce some of the data, instances of inappropriate data exclusion, and loss of much of the primary experimental records/data. Specifically, Figures 2B,E,H; 3; 4; 5A,B,D; 6; S2A,C; S4A; S5; and S6A,B and attendant text contain analyses for which the primary record and/or raw data no longer exist; the analyses, where still available, suffer from inappropriate data exclusion and thus should not be construed to be an accurate reflection of the experiments. Attempts by others in the lab to repeat several of the experiments in these indicated panels have failed reproduce the presented effects, despite showing much greater precision. Therefore the authors do not wish this work to be cited as reference for the project. If you have any questions, please contact the corresponding author.

molecular biology↗