肌动蛋白和角蛋白是1,25d3 - marrs受体/PDIA3/ERp57的结合伙伴。

Tremaine LeBlanc, Lka Nemere
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引用次数: 4

摘要

我们已经证明,1,25 d3 - marrs受体对于1,25(OH)2D3对鸡肠道中磷酸盐和/或钙吸收的快速、基因组前效应是必要的。然而,对于1,25d3 - marrs受体促进1,25(OH) 2d3介导的磷酸盐或钙摄取以及其他细胞效应的信号机制所涉及的蛋白质的清晰理解仍在研究中。我们使用共免疫沉淀研究和质谱鉴定肌动蛋白和角蛋白是与1,25d3 - marrs受体相互作用的蛋白质。利用共聚焦显微镜,我们可视化了1,25(OH)2D3- MARRS受体在鸡肠细胞中相对于肌动蛋白和/或角蛋白分布的定位。在含酚红培养基中培养的细胞中,1,25d3 - marrs受体和肌动蛋白主要定位于细胞核,在加入(OH) 2,25 (OH)2D3后分散。在没有酚红的情况下,染色为细胞质。添加类固醇会在10秒和30秒时引起染色减少,在1到5分钟之间强度恢复。1分钟后观察到核染色。我们发现,当肠细胞内1,25d3 - marrs受体定位较低时,f -肌动蛋白浓度最高,这表明f -肌动蛋白到g -肌动蛋白的循环转化参与了1,25(OH) 2d3介导的细胞内1,25d3 - marrs受体的再分配。我们还发现,当Factin解聚为g -肌动蛋白时,角蛋白分布在1,25(OH)2D3暴露下保持不变,这表明肌动蛋白和角蛋白协同作用,促进激素介导的1,25d3 - marrs受体的再分配。我们随后调查了周期性再分配是否与125 (OH) 2d3刺激的磷酸盐或钙摄取有关,但没有发现一致的模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Actin and Keratin are Binding Partners of the 1,25D<sub>3</sub>-MARRS Receptor/PDIA3/ERp57.

Actin and Keratin are Binding Partners of the 1,25D<sub>3</sub>-MARRS Receptor/PDIA3/ERp57.

Actin and Keratin are Binding Partners of the 1,25D<sub>3</sub>-MARRS Receptor/PDIA3/ERp57.

Actin and Keratin are Binding Partners of the 1,25D3-MARRS Receptor/PDIA3/ERp57.

We have shown that the 1,25D3-MARRS receptor is necessary for the rapid, pre-genomic effects of 1,25(OH)2D3 on phosphate and/or calcium absorption in chick intestines. However, a clear understanding of the proteins involved in the signaling mechanisms by which the 1,25D3-MARRS receptor facilitates 1,25(OH)2D3-mediated phosphate or calcium uptake, as well as other cellular effects, is still under investigation. We used co-immunoprecipitation studies and mass spectroscopy to identify actin and keratin as proteins that interact with the 1,25D3-MARRS receptor. Using confocal microscopy, we visualized 1,25(OH)2D3- MARRS receptor localizations relative to actin and/or keratin distribution in chick enterocytes. Cells cultured in media containing phenol red had the 1,25D3-MARRS receptor and actin localized largely in the nucleus, which was dispersed upon addition of (OH)2 1,25(OH)2D3. In the absence of phenol red, staining was cytoplasmic. Addition of steroid caused diminished staining at 10 s and 30 s, with a return of intensity between 1 and 5 min. Nuclear staining was observed after 1 min. We found that F-actin concentrations are maximal when 1,25D3-MARRS receptor localizations within enterocytes are low suggesting that cyclical conversions of F-actin to G-actin are involved in the 1,25(OH)2D3-mediated redistribution of the 1,25D3-MARRS receptor within the cell. We also found that keratin distribution remains constant with 1,25(OH)2D3 exposure when Factin depolymerizes into G-actin, which suggests that actin and keratin work in concert to facilitate hormonemediated redistribution of the 1,25D3-MARRS receptor. We subsequently investigated whether the cyclical redistribution was related to either 1,25(OH)2D3-stimulated phosphate or calcium uptake, but no congruent pattern was found.

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