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Insights from the structure of estrogen receptor into the evolution of estrogens: implications for endocrine disruption.

机译:从雌激素受体的结构到雌激素进化的见解:对内分泌干扰的影响。

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In the last decade, there has been important progress in understanding the origins and evolution of receptors for adrenal steroids (aldosterone, cortisol) and sex steroids (estradiol, progesterone, testosterone) due to the sequencing of genomes from animals that are at key sites in vertebrate evolution. Although the estrogen receptor [ER] appears to be the ancestral vertebrate steroid receptor and estradiol [E2] is the physiological ligand for vertebrate ERs, the identity of the ancestral ligand(s) for the ER remains unknown. Here, using an analysis of crystal structures of human ERalpha with E2 and other chemicals and 3D models of human ERalpha with 27-hydroxycholesterol and 5-androsten-3beta,17beta-diol, I propose that one or more Delta5 steroids were the ancestral ligands for the ER, with E2 evolving later as the canonical estrogen. The evidence that chemicals with a beta-hydroxy at C3 in a saturated A ring can act as estrogens and the conformational flexibility of the vertebrate ER can explain the diversity of synthetic chemicals that disrupt estrogen responses by binding to vertebrate ERs.
机译:在过去的十年中,由于对位于肾上腺关键部位动物的基因组进行了测序,因此在了解肾上腺类固醇(醛固酮,皮质醇)和性类固醇(雌二醇,孕酮,睾丸激素)的受体的起源和进化方面取得了重要进展。脊椎动物进化。尽管雌激素受体[ER]似乎是祖先的脊椎动物类固醇受体,而雌二醇[E2]是脊椎动物ER的生理配体,但ER的祖先配体的身份仍然未知。在这里,通过使用E2和其他化学物质对人ERalpha的晶体结构进行分析,并使用27-羟基胆固醇和5-androsten-3beta,17beta-二醇对人ERalpha的3D模型进行分析,我提出一种或多种Delta5类固醇是该化合物的祖先配体ER,E2后来演变为典型的雌激素。有证据表明,饱和A环中C3处具有β-羟基的化学物质可以作为雌激素,而脊椎动物ER的构象柔韧性可以解释合成化学物质的多样性,这些化学物质通过与脊椎动物ER结合而破坏雌激素反应。

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