Herriges Michael J, Tischfield David J, Cui Zheng, Morley Michael P, Han Yumiao, Babu Apoorva, Li Su, Lu MinMin, Cendan Isis, Garcia Benjamin A, Anderson Stewart A, Morrisey Edward E
Department of Cell and Developmental Biology, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Neuroscience Graduate Group, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
Genes Dev. 2017 May 1;31(9):889-903. doi: 10.1101/gad.298018.117. Epub 2017 May 25.
A subset of long noncoding RNAs (lncRNAs) is spatially correlated with transcription factors (TFs) across the genome, but how these lncRNA-TF gene duplexes regulate tissue development and homeostasis is unclear. We identified a feedback loop within the NANCI (Nkx2.1-associated noncoding intergenic RNA)-Nkx2.1 gene duplex that is essential for buffering Nkx2.1 expression, lung epithelial cell identity, and tissue homeostasis. Within this locus, Nkx2.1 directly inhibits NANCI, while NANCI acts in to promote Nkx2.1 transcription. Although loss of NANCI alone does not adversely affect lung development, concurrent heterozygous mutations in both NANCI and Nkx2.1 leads to persistent Nkx2.1 deficiency and reprogramming of lung epithelial cells to a posterior endoderm fate. This disruption in the NANCI-Nkx2.1 gene duplex results in a defective perinatal innate immune response, tissue damage, and progressive degeneration of the adult lung. These data point to a mechanism in which lncRNAs act as rheostats within lncRNA-TF gene duplex loci that buffer TF expression, thereby maintaining tissue-specific cellular identity during development and postnatal homeostasis.
一部分长链非编码RNA(lncRNA)在全基因组范围内与转录因子(TF)存在空间相关性,但这些lncRNA-TF基因双链体如何调节组织发育和体内平衡尚不清楚。我们在NANCI(Nkx2.1相关非编码基因间RNA)-Nkx2.1基因双链体中鉴定出一个反馈环,该反馈环对于缓冲Nkx2.1表达、肺上皮细胞特性和组织稳态至关重要。在这个基因座内,Nkx2.1直接抑制NANCI,而NANCI反过来促进Nkx2.1转录。虽然单独缺失NANCI不会对肺发育产生不利影响,但NANCI和Nkx2.1同时发生杂合突变会导致Nkx2.1持续缺乏,并使肺上皮细胞重编程为后端内胚层命运。NANCI-Nkx2.1基因双链体的这种破坏会导致围产期先天性免疫反应缺陷、组织损伤和成年肺的进行性退化。这些数据表明了一种机制,即lncRNA在lncRNA-TF基因双链体基因座中充当变阻器,缓冲TF表达,从而在发育和出生后稳态期间维持组织特异性细胞特性。