Cell Membrane and Nuclear Estrogen Receptors (ERs) Originate from a Single Transcript: Studies of ERα and ERβ Expressed in Chinese Hamster Ovary Cells

Мембранные и ядерные рецепторы эстрогенов (ER) происходят из единого транскрипта: исследование ERα и ERβ, экспрессируемых в клетках яичника китайского хомячка
Mahnaz Razandi, Ali Pedram, Geoffrey L. Greene, Ellis R. Levin
1999-02-01

Chinese hamster ovary cellsERalpha and ERbetamembrane estrogen receptorsmitogen-activated protein kinasenuclear estrogen receptors
The existence of a putative membrane estrogen receptor (ER) has been supported by studies accomplished over the past 20 yr. However, the origin and functions of this receptor are not well defined. To study the membrane receptor, we transiently transfected cDNAs for ERalpha or ERbeta into Chinese hamster ovary (CHO) cells. Transfection of ERalpha resulted in a single transcript by Northern blot, specific binding of labeled 17beta-estradiol (E2), and expression of ER in both nuclear and membrane cell fractions. Competitive binding studies in both compartments revealed near identical dissociation constants (K(d)S) of 0.283 and 0.287 nM, respectively, but the membrane receptor number was only 3% as great as the nuclear receptor density. Transfection of ERbeta3 also yielded a single transcript and nuclear and membrane receptors with respective Kd values of 1.23 and 1.14 nM; the membrane receptor number was only 2% compared with expressed nuclear receptors. Estradiol binding to CHO-ERalpha or CHO-ERbeta activated Galphaq and G(alpha)s proteins in the membrane and rapidly stimulated corresponding inositol phosphate production and adenylate cyclase activity. Binding by 17-beta-E2 to either expressed receptor comparably enhanced the nuclear incorporation of thymidine, critically dependent upon the activation of the mitogen-activated protein kinase, ERK (extracellular regulated kinase). In contrast, c-Jun N-terminal kinase activity was stimulated by 17-beta-E2 in ERbeta-expressing CHO, but was inhibited in CHO-ERalpha cells. In summary, membrane and nuclear ER can be derived from a single transcript and have near-identical affinities for 17-beta-E2, but there are considerably more nuclear than membrane receptors. This is also the first report that cells can express a membrane ERbeta. Both membrane ERs activate G proteins, ERK, and cell proliferation, but there is novel differential regulation of c-Jun kinase activity by ERbeta and ERalpha.
1
Both receptors enhance nuclear thymidine incorporation through ERK-dependent signaling, whereas estradiol differentially regulates c-Jun N-terminal kinase in ERα- versus ERβ-expressing cells.
2
Membrane ERα and ERβ activate Gαq and Gαs proteins, rapidly stimulating inositol phosphate production and adenylate cyclase activity.
3
Membrane and nuclear ERα and ERβ are derived from a single transcript in transfected Chinese hamster ovary cells.
4
Membrane and nuclear receptors have nearly identical estradiol affinities, while membrane receptor abundance is only 3% for ERα and 2% for ERβ of nuclear levels.
5
The study provides the first report that cells can express a membrane ERβ receptor.

ERα and ERβ expressed in Chinese hamster ovary (CHO) cells, including their nuclear and membrane estrogen receptors

The origin, ligand-binding properties, signaling activities, and differential regulation of nuclear and membrane ERα/ERβ receptors

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1999-02-01
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Mahnaz Razandi
Ali Pedram
Geoffrey L. Greene
Ellis R. Levin
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