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超越协同作用:皮质酮和甲状腺激素对 Xenopus tropicalis 蝌蚪的基因调控有许多相互作用。

Beyond synergy: corticosterone and thyroid hormone have numerous interaction effects on gene regulation in Xenopus tropicalis tadpoles.

机构信息

Department of Biological Sciences, University of Cincinnati, Ohio 45221, USA.

出版信息

Endocrinology. 2012 Nov;153(11):5309-24. doi: 10.1210/en.2012-1432. Epub 2012 Sep 11.

DOI:10.1210/en.2012-1432
PMID:22968645
Abstract

Hormones play critical roles in vertebrate development, and frog metamorphosis has been an excellent model system to study the developmental roles of thyroid hormone (TH) and glucocorticoids. Whereas TH regulates the initiation and rate of metamorphosis, the actions of corticosterone (CORT; the main glucocorticoid in frogs) are more complex. In the absence of TH during premetamorphosis, CORT inhibits development, but in the presence of TH during metamorphosis, CORT synergizes with TH to accelerate development. Synergy at the level of gene expression is known for three genes in frogs, but the nature and extent of TH and CORT cross talk is otherwise unknown. Therefore, to examine TH and CORT interactions, we performed microarray analysis on tails from Xenopus tropicalis tadpoles treated with CORT, TH, CORT+TH, or vehicle for 18 h. The expression of 5432 genes was significantly altered in response to either or both hormones. Using Venn diagrams and cluster analysis, we identified 16 main patterns of gene regulation due to up- or down-regulation by TH and/or CORT. Many genes were affected by only one of the hormones, and a large proportion of regulated genes (22%) required both hormones. We also identified patterns of additive or synergistic, inhibitory, subtractive, and annihilatory regulation. A total of 928 genes (17%) were regulated by novel interactions between the two hormones. These data expand our understanding of the hormonal cross talk underlying the gene regulation cascade directing tail resorption and suggest the possibility that CORT affects not only the timing but also the nature of TH-dependent tissue transformation.

摘要

激素在脊椎动物发育中起着至关重要的作用,而青蛙变态是研究甲状腺激素 (TH) 和糖皮质激素发育作用的极好模型系统。虽然 TH 调节变态的开始和速度,但皮质酮 (CORT;青蛙的主要糖皮质激素) 的作用更为复杂。在前期变态期间缺乏 TH 时,CORT 会抑制发育,但在变态期间存在 TH 时,CORT 与 TH 协同加速发育。在青蛙的三个基因中已知存在基因表达水平的协同作用,但 TH 和 CORT 串扰的性质和程度尚不清楚。因此,为了研究 TH 和 CORT 的相互作用,我们对用 CORT、TH、CORT+TH 或载体处理的 Xenopus tropicalis 蝌蚪尾巴进行了微阵列分析 18 小时。5432 个基因的表达因一种或两种激素而显著改变。使用 Venn 图和聚类分析,我们确定了 16 种主要的基因调控模式,这些模式是由于 TH 和/或 CORT 的上调或下调引起的。许多基因仅受一种激素影响,而受调节基因的很大一部分(22%)需要两种激素。我们还确定了加性或协同性、抑制性、相消性和消除性调节的模式。总共 928 个基因(17%)受到两种激素之间新的相互作用的调节。这些数据扩展了我们对激素串扰的理解,这种串扰是指导尾巴吸收的基因调控级联的基础,并表明 CORT 不仅影响 TH 依赖性组织转化的时间,而且还影响其性质。

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