Nuclear Receptors and Cyclins in Hormone Signaling

Author(s):  
Michael J. Powell ◽  
Vladimir M. Popov ◽  
Chenguang Wang ◽  
Richard G. Pestell
2020 ◽  
Author(s):  
Yanis Zekri ◽  
Laure Dall Agnol ◽  
Frédéric Flamant ◽  
Romain Guyot

SummarySeveral in vitro tests, including transcriptome analysis of neural cells, were performed to assess the capacity of 33 pesticides to act as thyroid hormone disruptors (THD). Although some pesticides elicit a cellular response, which interferes with thyroid hormone signaling, we found no evidence that they can act as receptor agonists or antagonists. We conclude that the nuclear receptors of thyroid hormone are not common targets of THD, and that pesticide neurodevelopmental toxicity is not explained by a general alteration of neural cell response to thyroid hormone.


2004 ◽  
Vol 40 ◽  
pp. 157-167 ◽  
Author(s):  
Maria Nilsson ◽  
Karin Dahlman-Wright ◽  
Jan-Åke Gustafsson

For several decades, it has been known that oestrogens are essential for human health. The discovery that there are two oestrogen receptors (ERs), ERalpha and ERbeta, has facilitated our understanding of how the hormone exerts its physiological effects. The ERs belong to the family of ligand-activated nuclear receptors, which act by modulating the expression of target genes. Studies of ER-knockout (ERKO) mice have been instrumental in defining the relevance of a given receptor subtype in a certain tissue. Phenotypes displayed by ERKO mice suggest diseases in which dysfunctional ERs might be involved in aetiology and pathology. Association between single-nucleotide polymorphisms (SNPs) in ER genes and disease have been demonstrated in several cases. Selective ER modulators (SERMs), which are selective with regard to their effects in a certain cell type, already exist. Since oestrogen has effects in many tissues, the goal with a SERM is to provide beneficial effects in one target tissue while avoiding side effects in others. Refined SERMs will, in the future, provide improved therapeutic strategies for existing and novel indications.


2017 ◽  
Author(s):  
Morten Hogild Pedersen ◽  
Ann Mosegaard Bak ◽  
Steen Bonlokke Pedersen ◽  
Niels Jessen ◽  
Niels Moller ◽  
...  

Author(s):  
Foreman M ◽  
Hare L ◽  
York K ◽  
Balakrishnan K ◽  
Sanchez FJ ◽  
...  

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