异源生物感受器的激活:进入细胞核。
Activation of xenobiotic receptors: driving into the nucleus.
机构信息
University of Maryland School of Pharmacy, Department of Pharmaceutical Sciences, 20 Penn Street, Baltimore, MD 21201, USA.
出版信息
Expert Opin Drug Metab Toxicol. 2010 Apr;6(4):409-26. doi: 10.1517/17425251003598886.
IMPORTANCE OF THE FIELD
Xenobiotic receptors (XRs) play pivotal roles in regulating the expression of genes that determine the clearance and detoxification of xenobiotics, such as drugs and environmental chemicals. Recently, it has become increasingly evident that most XRs shuttle between the cytoplasm and nucleus, and activation of such receptors is directly associated with xenobiotic-induced nuclear import.
AREAS COVERED IN THIS REVIEW
The scope of this review covers research literature that discusses nuclear translocation and activation of XRs, as well as unpublished data generated from this laboratory. Specific emphasis is given to the constitutive androstane receptor (CAR), the pregnane X receptor and the aryl hydrocarbon receptor.
WHAT THE READERS WILL GAIN
A number of molecular chaperons presumably associated with cellular localization of XRs have been identified. Primary hepatocyte cultures have been established as a unique model retaining inactive CAR in the cytoplasm. Moreover, several splicing variants of human CAR exhibit altered cellular localization and chemical activation.
TAKE HOME MESSAGE
Nuclear accumulation is an essential step in the activation of XRs. Although great strides have been made, much remains to be understood concerning the mechanisms underlying intracellular localization and trafficking of XRs, which involve both direct ligand-binding and indirect pathways.
重要性领域
外来生物受体 (XRs) 在调节基因表达方面起着关键作用,这些基因决定了外来生物(如药物和环境化学物质)的清除和解毒。最近,越来越明显的是,大多数 XRs 在细胞质和细胞核之间穿梭,并且这些受体的激活与外来生物诱导的核内输入直接相关。
本综述涵盖的范围
本综述涵盖了讨论 XRs 的核易位和激活的研究文献,以及本实验室生成的未发表数据。特别强调了组成型雄烷受体 (CAR)、孕烷 X 受体和芳香烃受体。
读者将获得的信息
已经鉴定出许多假定与 XRs 细胞定位相关的分子伴侣。原代肝细胞培养已被确立为一种独特的模型,使细胞质中的非活性 CAR 保持不变。此外,人类 CAR 的几种剪接变体表现出改变的细胞定位和化学激活。
重要信息
核积累是 XRs 激活的必要步骤。尽管已经取得了很大的进展,但对于 XRs 的细胞内定位和运输的机制仍有许多需要了解,这涉及直接配体结合和间接途径。
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本文引用的文献
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Trends Endocrinol Metab. 2009-8
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