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Fluoride Alters Klk4 Expression in Maturation Ameloblasts through Androgen and Progesterone Receptor Signaling

机译:氟化物通过雄激素和孕激素受体信号改变成年成釉细胞中Klk4的表达。

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摘要

Fluorosed maturation stage enamel is hypomineralized in part due to a delay in the removal of matrix proteins to inhibit final crystal growth. The delay in protein removal is likely related to reduced expression of kallikrein-related peptidase 4 (KLK4), resulting in a reduced matrix proteinase activity that found in fluorosed enamel. Klk4 transcription is known to be regulated in other cell types by androgen receptor (AR) and progesterone receptors (PR). In this study, we determined the possible role of fluoride in down-regulation of KLK4 expression through changes in AR and PR. Immunohistochemical localization showed that both AR and PR nuclear translocation was suppressed in fluoride exposed mice. However, when AR signaling was silenced in mouse ameloblast-lineage cells (ALCs), expression of both Pgr and Klk4 were increased. Similar to the effect from AR silencing, fluoride also upregulated Pgr in ALCs, but downregulated Klk4. This finding suggests that though suppression of AR transactivation by fluoride increases Prg expression, inhibition of PR transactivation by fluoride has a much greater effect, ultimately resulting in downregulation of Klk4 expression. These findings indicate that in ameloblasts, PR has a dominant role in regulating Klk4 expression. We found that when AR was retained in the cytoplasm in the presence of fluoride, that co-localized with heat shock protein 90 (HSP90), a well-known chaperone for steroid hormone receptors. HSP90 also known to regulate TGF-β signaling. Consistent with the effect of fluoride on AR and HSP90, we found evidence of reduced TGF-β signaling activity in fluorosed ameloblasts as reduced immunolocalization of TGFB1 and TGFBR-2 and a significant increase in Cyclin D1 mRNA expression, which also possibly contributes to the reduced AR signaling activity. In vitro, when serum was removed from the media, aluminum was required for fluoride to inhibit the dissociation of HSP90 from AR. In conclusion, fluoride related downregulation of Klk4 is associated with reduced nuclear translocation of AR and PR, and also reduced TGF-β signaling activity, all of which are regulated by HSP90. We suggest that a common mechanism by which fluoride affects AR, PR, and TGF-β signaling is through inhibiting ATP-dependent conformational cycling of HSP90.
机译:氟化的成熟阶段珐琅质未矿化,部分原因是延迟了基质蛋白的去除以抑制最终晶体的生长。蛋白质去除的延迟可能与激肽释放酶相关的肽酶4(KLK4)的表达降低有关,从而导致在含氟搪瓷中发现的基质蛋白酶活性降低。已知Klk4转录在其他细胞类型中受雄激素受体(AR)和孕激素受体(PR)调节。在这项研究中,我们确定了氟化物可能通过AR和PR的变化在下调KLK4表达中发挥作用。免疫组织化学定位显示,氟化物暴露的小鼠AR和PR核易位均受到抑制。但是,当在小鼠成釉细胞谱系细胞(ALC)中使AR信号沉默时,Pgr和Klk4的表达均增加。类似于AR沉默的影响,氟化物还上调了ALC中的Pgr,但下调了Klk4。该发现表明,尽管通过氟化物抑制AR反式激活增加了Prg表达,但是通过氟化物抑制PR的反式激活具有更大的作用,最终导致Klk4表达的下调。这些发现表明在成釉细胞中,PR在调节Klk4表达中起主要作用。我们发现,当存在氟化物时,AR被保留在细胞质中时,它与热激蛋白90(HSP90)共定位,热激蛋白90是众所周知的类固醇激素受体伴侣。还已知HSP90调节TGF-β信号传导。与氟化物对AR和HSP90的作用相一致,我们发现,由于TGFB1和TGFBR-2的免疫定位降低以及Cyclin D1 mRNA表达的显着增加,氟代成纤维细胞中TGF-β信号转导活性降低的证据。 AR信号传导活动。在体外,当从培养基中去除血清时,氟化铝需要铝来抑制HSP90从AR上解离。总之,氟化物相关的Klk4下调与AR和PR的核易位减少以及TGF-β信号转导活性降低有关,所有这些均受HSP90调控。我们建议,氟化物影响AR,PR和TGF-β信号传导的常见机制是通过抑制HSP90的ATP依赖性构象循环。

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