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Communication between genomic and non-genomic signaling events coordinate steroid hormone actions

机译:基因组和非基因组信号事件之间的沟通协调类固醇激素的作用

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摘要

Steroid hormones are lipophilic molecules produced in one cell that can travel great distances within the body to elicit biological effects in another cell. In the canonical pathway, steroid hormone binding to a nuclear receptor (NR), often in the cytoplasm, causes the receptor to undergo a conformational change and translocate to the nucleus, where it interacts with specific sequences of DNA to regulate transcription. In addition to the classical genomic mechanism of action, alternate mechanisms of steroid activity have emerged that involve rapid, non-genomic signaling. The distinction between these two major mechanisms of action lies in the subcellular location of the initiating steroid hormone action. Importantly, the mechanisms of action are not exclusive, in that each can affect the activity of the other. Here, we describe the different types of genomic and non-genomic steroid hormone signaling mechanisms and how they can influence one another to ultimately regulate biology. Further, we discuss the approaches being used to study the non-genomic signaling events and address important caveats to be considered when designing new experiments. Thus, this minireview can serve as an introduction to the diverse signaling mechanisms of steroid hormones and offers initial, experimental guidance to those entering the field.
机译:类固醇激素是在一个细胞中产生的亲脂分子,可以在体内传播很长一段距离,从而引起另一细胞的生物学效应。在经典途径中,类固醇激素通常与细胞质中的核受体(NR)结合,导致该受体发生构象变化并转移到核中,在核中与特定的DNA序列相互作用以调节转录。除了经典的基因组作用机制外,类固醇活性的替代机制也已出现,涉及快速的非基因组信号传导。这两种主要作用机制之间的区别在于类固醇激素作用的亚细胞位置。重要的是,作用机制不是排他的,因为每种机制都可能影响彼此的活动。在这里,我们描述了基因组和非基因组类固醇激素信号传导机制的不同类型,以及它们如何相互影响以最终调节生物学。此外,我们讨论了用于研究非基因组信号事件并解决在设计新实验时要考虑的重要警告的方法。因此,本次综述可以作为类固醇激素多种信号传导机制的介绍,并为进入该领域的人们提供初步的实验指导。

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