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Li, R.-Y.

Publications and source records attributed to Li, R.-Y..

2 recordsLinked to original sources

A long non-coding RNA LINC00094 regulates the transcriptional expression of lipid metabolism-related genes as a new member of core regulatory circuitry in esophageal squamous cell carcinoma

LINC00094 as a new supper-enhancer (SE)-related long non-coding RNA is associated with poor overall survival of patients with esophageal squamous cell carcinoma (ESCC). However, the transcriptional regulatory mechanism of LINC00094 and the molecular mechanisms by which LINC00094 affects the phenotype of ESCC remains unclear. Here, we found that LINC00094 promoted the proliferation of ESCC cells both in vitro and in vivo. LINC00094 knockdown significantly reduced the expression profiles of transcription activators including transcription factor 3 (TCF3) and Kruppel like factor 5 (KLF5) and lipid metabolism-related genes. Mechanically, TCF3 and KLF5 formed a core regulatory circuitry (CRC) that bound to the SEs of LINC00094 and to their own SEs to regulate the transcriptional expression in a positive feedback loop. LINC00094 recruited TCF3 and KLF5 to form a ternary complex, which forms a new CRC with TCF3 and KLF5 that regulated its own transcription as well as lipid metabolism-related genes. Knockdown of any or all three genes inhibited the expression of genes related to lipid synthesis and consistently reduced total lipid droplet levels. Treatment with SEs inhibitors (THZ1 and JQ1) effectively inhibited the formation of this CRC and the production of lipid droplets in ESCC cells. The high-risk group of CRC-associated signatures were closely associated with poor prognosis in patients with ESCC. Our findings suggest that LINC00094 is involved in the CRC by forming a complex with TCF3 and KLF5, and this regulation model can affect the phenotype of ESCC cells by controlling the expression of lipid metabolism-related genes. HighlightsO_LIWe identified a novel functional lncRNA-LINC00094 for esophageal squamous cell carcinoma. C_LIO_LILINC00094 forms a complex with the core transcription factors TCF3 and KLF5, thereby forming a core regulatory circuitry to participate in transcriptional regulation in ESCC. C_LIO_LIA core regulatory circuitry mediated by LINC00094 regulates lipid metabolism in ESCC. C_LI

cancer biology↗

Identification of the Metaphyseal Skeletal Stem Cell

Identification of novel regional skeletal stem cells (SSCs) will provide a new cellular paradigm for bone physiology and dysfunction. Several populations of SSCs have been identified at distinct skeletal sites. However, a bona fide SSC population has not yet been formally characterized in the bone marrow. Here, we identify a metaphyseal SSCs (mpSSCs) population whose transcriptional landscape is distinct from other bone mesenchymal stromal cells (bMSCs) in the bone marrow. These mpSSCs emerge at the postnatal stage and reside just underneath the growth plate, consistent with the fact that these mpSSCs are exclusively derived from hypertrophic chondrocytes (HCs). These mpSSCs possess SSC properties such as self-renewal and multipotency in vitro and in vivo, stand at the top of the HC de-differentiation path, and produce most HC progeny. Genetic block of the conversion from HCs to mpSSCs significantly compromises trabecular bone formation and bone regeneration. Thus, metaphysis houses a unique HC-derived SSC population, which is a major source of osteoblasts and bMSCs supporting postnatal trabecular bone formation.

developmental biology↗