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  • Lionheart LincRNA alleviate...
    Kuwabara, Yasuhide; Tsuji, Shuhei; Nishiga, Masataka; Izuhara, Masayasu; Ito, Shinji; Nagao, Kazuya; Horie, Takahiro; Watanabe, Shin; Koyama, Satoshi; Kiryu, Hisanori; Nakashima, Yasuhiro; Baba, Osamu; Nakao, Tetsushi; Nishino, Tomohiro; Sowa, Naoya; Miyasaka, Yui; Hatani, Takeshi; Ide, Yuya; Nakazeki, Fumiko; Kimura, Masahiro; Yoshida, Yoshinori; Inada, Tsukasa; Kimura, Takeshi; Ono, Koh

    Communications biology, 08/2020, Letnik: 3, Številka: 1
    Journal Article

    Recent high-throughput approaches have revealed a vast number of transcripts with unknown functions. Many of these transcripts are long noncoding RNAs (lncRNAs), and intergenic region-derived lncRNAs are classified as long intergenic noncoding RNAs (lincRNAs). Although Myosin heavy chain 6 (Myh6) encoding primary contractile protein is down-regulated in stressed hearts, the underlying mechanisms are not fully clarified especially in terms of lincRNAs. Here, we screen upregulated lincRNAs in pressure overloaded hearts and identify a muscle-abundant lincRNA termed Lionheart. Compared with controls, deletion of the Lionheart in mice leads to decreased systolic function and a reduction in MYH6 protein levels following pressure overload. We reveal decreased MYH6 results from an interaction between Lionheart and Purine-rich element-binding protein A after pressure overload. Furthermore, human LIONHEART levels in left ventricular biopsy specimens positively correlate with cardiac systolic function. Our results demonstrate Lionheart plays a pivotal role in cardiac remodeling via regulation of MYH6.