a Guangdong Provincial Key Lab of Agro-Animal Genomics and Molecular Breeding and Key Lab of Chicken Genetics, Breeding and Reproduction, Ministry of Agriculture , College of Animal Science of South China Agricultural University , Guangzhou , P.R. China.
b Animal Genomics and Improvement Laboratory, Agricultural Research Service , United States Department of Agriculture , Beltsville , MD , USA.
RNA Biol. 2019 May;16(5):626-638. doi: 10.1080/15476286.2019.1572440. Epub 2019 Feb 14.
Natural antisense transcripts (NATs) are widely present in mammalian genomes and act as pivotal regulator molecules of gene expression. However, studies on NATs in the chicken are relatively rare. We identified a novel antisense transcript in the chicken, designated GHR-AS-EST, transcribed from the growth hormone receptor (GHR) locus, which encodes a well-known regulatory molecule of muscle development and fat deposition. GHR-AS-EST is predominantly expressed in the chicken liver and muscle tissues. GHR-AS-EST sequence conservation among vertebrates is weak. GHR-AS-EST forms an RNA-RNA duplex with GHBP to increase its stability, and regulates the expression of GHR sense transcripts at both the mRNA and protein levels. Further, GHR-AS-EST promotes cell proliferation by stimulating the expression of signaling factors in the JAK2/STAT pathway, and contributes to fat deposition via downregulating the expression of signaling factors in the JAK2/SOCS pathway in LMH hepatocellular carcinoma cells. We expect that the discovery of a NAT for a regulatory gene associated with cell proliferation and lipolysis will further our understanding of the molecular regulation of both muscle development and fat deposition.
天然反义转录本 (NATs) 在哺乳动物基因组中广泛存在,作为基因表达的关键调控分子发挥作用。然而,关于鸡的 NAT 的研究相对较少。我们在鸡中鉴定了一种新的反义转录本,命名为 GHR-AS-EST,它来源于生长激素受体 (GHR) 基因座,编码一种已知的肌肉发育和脂肪沉积的调节分子。GHR-AS-EST 在鸡的肝脏和肌肉组织中表达丰富。GHR-AS-EST 在脊椎动物中的序列保守性较弱。GHR-AS-EST 与 GHBP 形成 RNA-RNA 双链以增加其稳定性,并在 mRNA 和蛋白质水平上调节 GHR 有义转录本的表达。此外,GHR-AS-EST 通过刺激 JAK2/STAT 途径中的信号因子表达促进细胞增殖,并通过下调 JAK2/SOCS 途径中的信号因子表达促进脂肪沉积,在 LMH 肝癌细胞中。我们预计,与细胞增殖和脂肪分解相关的调节基因的 NAT 的发现将进一步加深我们对肌肉发育和脂肪沉积的分子调控的理解。