Sp6下调成釉细胞卵泡抑素基因表达。

Intan Ruspita, Keiko Miyoshi, T. Muto, K. Abe, Taigo Horiguchi, T. Noma
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引用次数: 31

摘要

Sp6是Sp家族转录因子中的一员,它调节多种细胞功能,如细胞生长和分化。Sp6又称epiprofin,在牙胚、肢芽和毛囊中特异表达,但其功能知之甚少。为了研究Sp6在牙齿发育中的可能作用,我们首先建立了一个过量产生Sp6的克隆CHA9,并分析了细胞的增殖和基因表达等特征。CHA9的亲代细胞是我们先前从大鼠下门牙上皮中建立的成釉细胞系G5细胞。Sp6的过量产生加速了细胞增殖,并诱导成釉蛋白mRNA的表达,这是成釉细胞分化的标志。其次,我们通过微阵列分析对Sp6靶基因进行全基因组筛选。在总共20,450个基因中,有448个基因被Sp6上调,500个基因被下调。我们发现卵泡素(一种BMP拮抗剂)在CHA9中的表达比对照细胞低22.4倍。将Sp6反义构建体转染到CHA9细胞后,卵泡抑素的表达恢复到与对照细胞相当的水平,表明Sp6调控成釉细胞中卵泡抑素基因的表达。我们的研究结果表明卵泡抑素基因是Sp6在成釉细胞中的靶基因之一,提示Sp6通过抑制卵泡抑素基因的表达促进成釉发育。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sp6 downregulation of follistatin gene expression in ameloblasts.
Sp6 is a member of the Sp family of transcription factors that regulate a wide range of cellular functions, such as cell growth and differentiation. Sp6, also called epiprofin, is specifically expressed in tooth germ, limb bud, and hair follicle, but there is little information on its function.To investigate the possible role of Sp6 in tooth development, first we established an Sp6-overproducing clone, CHA9, and analyzed the features of the cell, including cell proliferation and gene expression. The parental cells of CHA9 are the ameloblast-lineage G5 cells that we previously established from rat dental epithelia of lower incisor. Sp6 overproduction accelerated cell proliferation and induced the expression of ameloblastin mRNA, a marker of ameloblast differentiation. Second, we performed genome-wide screening of Sp6 target genes by microarray analysis. Out of a total 20,450 genes, 448 genes were up-regulated and 500 genes were down-regulated by Sp6. We found the expression of follistatin, a BMP antagonist, to be 22.4-fold lower in CHA9 than in control cells. Transfection of the Sp6-antisense construct into CHA9 cells restored follistatin expression back to equivalent levels seen in control cells, indicating that Sp6 regulates follistatin gene expression in ameloblasts. Our findings demonstrate that the follistatin gene is one of the Sp6 target genes in ameloblasts and suggest that Sp6 promotes amelogenesis through inhibition of follistatin gene expression.
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