American Journal of Physiology-Cell Physiology · 2017 · 18 citations · 28 references
Estrogen plays important roles in regulation of bone formation. Cl<sup>-</sup> channels in the ClC family are expressed in osteoblasts and are associated with bone physiology and pathology, but the relationship between Cl<sup>-</sup> channels and estrogen is not clear. In this study the action of estrogen on Cl<sup>-</sup> channels was investigated in the MC3T3-E1 osteoblast cell line. Our results show that 17β-estradiol could activate a current that reversed at a potential close to the Cl<sup>-</sup> equilibrium potential, with a sequence of anion selectivity of I<sup>-</sup> > Br<sup>-</sup> > Cl<sup>-</sup> > gluconate, and was inhibited by the Cl<sup>-</sup> channel blockers 5-nitro-2-(3-phenylpropylamino)-benzoate and 4,4'-diisothiocyano-2,2'-stilbene disulfonic acid. Knockdown of ClC-3 Cl<sup>-</sup> channel expression by a specific small interfering RNA to ClC-3 attenuated activation of the 17β-estradiol-induced Cl<sup>-</sup> current. Extracellular application of membrane-impermeable 17β-estradiol-albumin conjugates activated a similar current. The estrogen-activated Cl<sup>-</sup> current could be inhibited by the estrogen receptor (ER) antagonist fulvestrant (ICI 182780). The selective ERα agonist, but not ERβ agonist, activated a Cl<sup>-</sup> current similar to that induced by 17β-estradiol. Silencing ERα expression prevented activation of estrogen-induced currents. Immunofluorescence and coimmunoprecipitation experiments demonstrated that ClC-3 Cl<sup>-</sup> channels and ERα were colocalized and closely related in cells. Estrogen promoted translocation of ClC-3 and ERα to the cell membrane from the nucleus. In conclusion, our findings show that Cl<sup>-</sup> channels can be activated by estrogen via ERα on the cell membrane and suggest that the ClC-3 Cl<sup>-</sup> channel may be one of the targets of estrogen in the regulation of osteoblast activity.
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Loss of the ClC-7 Chloride Channel Leads to Osteopetrosis in Mice and Man
Uwe Kornak, Dagmar Kasper, Michael R. Bösl et al. · Cell · 2001 · 984 citations
Reversal of Bone Loss in Mice by Nongenotropic Signaling of Sex Steroids
Stavroula Kousteni, J.-R. Chen, Teresita Bellido et al. · Science · 2002 · 421 citations
Estrogen enhances differentiation of osteoblasts in mouse bone marrow culture
Qiang Qu, M. Perälä-Heape, Anita I. Kapanen et al. · Bone · 1998 · 246 citations
Developmental Biology, Bone Morphogenic Protein, Bone Repair +8