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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Cytosolic prion protein is the predominant anti-Bax prion protein form: exclusion of transmembrane and secreted prion protein forms in the anti-Bax function.
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Cytosolic prion protein is the predominant anti-Bax prion protein form: exclusion of transmembrane and secreted prion protein forms in the anti-Bax function.

机译:胞质pr病毒蛋白是主要的抗-Bax pr病毒蛋白形式:在抗-Bax功能中排除跨膜和分泌的病毒蛋白形式。

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摘要

Prion protein (PrP) prevents Bax-mediated cell death by inhibiting the initial Bax conformational change that converts cytosolic Bax into a pro-apoptotic protein. PrP is mostly a glycophosphatidylinositol-anchored cell surface protein but it is also retrotranslocated into cytosolic PrP (CyPrP) or can become a type 1 or type 2 transmembrane protein. To determine the form and subcellular location of the PrP that has anti-Bax function, we co-expressed various Syrian hamster PrP (SHaPrP) mutants that favour specific PrP topologies and subcellular localization with N-terminally green fluorescent protein tagged pro-apoptotic Bax (EGFP-Bax) in MCF-7 cells and primary human neurons. Mutants that generate both CyPrP and secreted PrP ((Sec)PrP) or only CyPrP have anti-Bax activity. Mutants that produce (Ctm)PrP or (Ntm)PrP lose the anti-Bax activity, despite their ability to also make (Sec)PrP. Transmembrane-generating mutants do not produce CyPrP and both normal and cognate mutant forms of CyPrP rescue against the loss of anti-Bax activity. (Sec)PrP-generating constructs also produce non-membrane attached (Sec)PrP. However, this form of PrP has minimal anti-Bax activity. We conclude that CyPrP is the predominant form of PrP with anti-Bax function. These results imply that the retrotranslocation of PrP encompasses a survival function and is not merely a pathway for the proteasomal degradation of misfolded protein.
机译:Prion蛋白(PrP)通过抑制将胞质Bax转化为促凋亡蛋白的初始Bax构象变化,从而防止Bax介导的细胞死亡。 PrP主要是糖基磷脂酰肌醇锚定的细胞表面蛋白,但也可以逆向转运到胞质PrP(CyPrP)中,或者可以变成1型或2型跨膜蛋白。为了确定具有抗Bax功能的PrP的形式和亚细胞位置,我们共表达了多种叙利亚仓鼠PrP(SHaPrP)突变体,这些突变体有利于特定的PrP拓扑结构,并带有N末端绿色荧光蛋白标记的促凋亡Bax进行亚细胞定位。 EGFP-Bax)在MCF-7细胞和原代人神经元中。同时产生CyPrP和分泌的PrP((Sec)PrP)或仅CyPrP的突变体具有抗Bax活性。尽管产生(Ctm)PrP或(Ntm)PrP的突变体也具有制造(Sec)PrP的能力,但它们却失去了抗Bax活性。跨膜产生突变体不产生CyPrP,CyPrP的正常和同源突变体形式均可挽救抗Bax活性的丧失。 (Sec)PrP生成的构造也产生非膜附着(Sec)PrP。但是,这种形式的PrP具有最小的抗Bax活性。我们得出的结论是CyPrP是具有抗Bax功能的PrP的主要形式。这些结果暗示PrP的逆转位具有生存功能,而不仅仅是错误折叠的蛋白质的蛋白酶体降解的途径。

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