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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Sec61alpha synthesis is enhanced during translocation of nascent chains of collagen type IV in F9 teratocarcinoma cells after retinoic acid treatment
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Sec61alpha synthesis is enhanced during translocation of nascent chains of collagen type IV in F9 teratocarcinoma cells after retinoic acid treatment

机译:维甲酸处理后的F9畸形癌细胞中IV型胶原新生链的易位过程中Sec61alpha的合成得到增强

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摘要

Nascent procollagen peptides and other secretory proteins are transported across the endoplasmic reticulum (ER) membrane through a protein-conducting channel called translocon. Sec61alpha, a multispanning membrane translocon protein, has been implicated as being essential for translocation of polypeptide chains into the cisterns of the ER. Sec61alpha forms a protein complex with collagen and Hsp47, an ER-resident heat shock protein that binds specifically to collagen. However, it is not known whether Sec61alpha is ubiquitously produced in collagen-producing F9 teratocarcinoma cells or under heat shock treatment. Furthermore, the production and utilization of Sec61alpha may depend on the stage of cell differentiation. Cultured F9 teratocarcinoma cells are capable of differentiation in response to low concentrations of retinoic acid. This differentiation results in loss of tumorigenicity. Mouse F9 cells were grown in culture medium at 37oC and 43oC (heat shock treatment) treated or not with retinoic acid, and labeled in certain instances with 35S-methionine. Membrane-bound polysomes of procollagen IV were then isolated. Immunoprecipitation and Western blot analysis were performed using polyclonal antibodies against collagen IV, Hsp47 and Sec61alpha. Under retinoic acid-untreated conditions, F9 cells produced undetectable amounts of Sec61alpha. Sec61alpha, Hsp47 and type IV collagen levels were increased after retinoic acid treatment. Heat shock treatment did not alter Sec61alpha levels, suggesting that Sec61alpha production is probably not affected by heat shock. These data indicate that the enhanced production of Sec61alpha in retinoic acid-induced F9 teratocarcinoma cells parallels the increased synthesis of Hsp47 and collagen type IV.
机译:新生胶原蛋白肽和其他分泌蛋白通过称为translocon的蛋白传导通道跨过内质网(ER)膜运输。 Sec61alpha,一种跨跨膜转座蛋白,已被认为对多肽链向ER储水池的转运至关重要。 Sec61alpha与胶原蛋白和Hsp47形成蛋白质复合物,Hsp47是ER驻留的热休克蛋白,与胶原蛋白特异性结合。然而,尚不清楚在产生胶原的F9畸胎瘤细胞中还是在热激处理下普遍产生Sec61alpha。此外,Sec61alpha的生产和利用可能取决于细胞分化的阶段。培养的F9畸胎瘤细胞能够响应低浓度的视黄酸而分化。这种分化导致致瘤性的丧失。小鼠F9细胞在37oC和43oC(热休克处理)的培养基中进行过视黄酸处理或未视黄酸处理,并在某些情况下用35S-蛋氨酸标记。然后分离出胶原蛋白IV的膜结合多聚体。使用针对胶原蛋白IV,Hsp47和Sec61alpha的多克隆抗体进行免疫沉淀和蛋白质印迹分析。在视黄酸未处理的条件下,F9细胞产生了不可检测量的Sec61alpha。维甲酸处理后,Sec61alpha,Hsp47和IV型胶原水平增加。热激处理并未改变Sec61alpha的水平,这表明Sec61alpha的产生可能不受热激影响。这些数据表明,在视黄酸诱导的F9畸胎性癌细胞中Sec61alpha的产量增加与Hsp47和IV型胶原的合成增加平行。

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