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Tumor protein D52 expression and Ca2+-dependent phosphorylation modulates lysosomal membrane protein trafficking to the plasma membrane

机译:肿瘤蛋白D52表达和Ca2 +依赖性磷酸化调节溶酶体膜蛋白向质膜的运输

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摘要

Tumor protein D52 (also known as CRHSP-28) is highly expressed in multiple cancers and tumor-derived cell lines; however, it is normally abundant in secretory epithelia throughout the digestive system, where it has been implicated in Ca2+-dependent digestive enzyme secretion (). Here we demonstrate, using site-specific mutations, that Ca2+-sensitive phosphorylation at serine 136 modulates the accumulation of D52 at the plasma membrane within 2 min of cell stimulation. When expressed in Chinese hamster ovary CHO-K1 cells, D52 colocalized with adaptor protein AP-3, Rab27A, vesicle-associated membrane protein VAMP7, and lysosomal-associated membrane protein LAMP1, all of which are present in lysosome-like secretory organelles. Overexpression of D52 resulted in a marked accumulation of LAMP1 on the plasma membrane that was further enhanced following elevation of cellular Ca2+. Strikingly, mutation of serine 136 to alanine abolished the Ca2+-stimulated accumulation of LAMP1 at the plasma membrane whereas phosphomimetic mutants constitutively induced LAMP1 plasma membrane accumulation independent of elevated Ca2+. Identical results were obtained for endogenous D52 in normal rat kidney and HeLA cells, where both LAMP1 and D52 rapidly accumulated on the plasma membrane in response to elevated cellular Ca2+. Finally, D52 induced the uptake of LAMP1 antibodies from the cell surface in accordance with both the level of D52 expression and phosphorylation at serine 136 demonstrating that D52 altered the plasma membrane recycling of LAMP1-associated secretory vesicles. These findings implicate both D52 expression and Ca2+-dependent phosphorylation at serine 136 in lysosomal membrane trafficking to and from the plasma membrane providing a novel Ca2+-sensitive pathway modulating the lysosome-like secretory pathway.
机译:肿瘤蛋白D52(也称为CRHSP-28)在多种癌症和肿瘤衍生的细胞系中高表达;然而,它通常在整个消化系统的分泌上皮细胞中丰富,并与Ca 2 + 依赖性消化酶的分泌有关。在这里,我们证明了使用位点特异性突变,在细胞刺激后2分钟内,丝氨酸136处的Ca 2 + 敏感磷酸化调节了D52在质膜的积累。当在中国仓鼠卵巢CHO-K1细胞中表达时,D52与衔接蛋白AP-3,Rab27A,囊泡相关膜蛋白VAMP7和溶酶体相关膜蛋白LAMP1共定位,所有这些蛋白均存在于溶酶体样分泌细胞器中。 D52的过度表达导致LAMP1在质膜上的明显积累,并随着细胞Ca 2 + 的升高而进一步增强。令人惊讶的是,丝氨酸136向丙氨酸的突变消除了Ca 2 + 刺激的LAMP1在质膜上的积累,而模拟磷酸化突变体组成性地诱导了LAMP1质膜的积累,而与Ca 2 + 。正常大鼠肾脏和HeLA细胞中的内源性D52获得了相同的结果,其中LAMP1和D52都响应细胞Ca 2 + 升高而迅速积聚在质膜上。最后,D52根据D52表达水平和丝氨酸136处的磷酸化诱导了从细胞表面摄取LAMP1抗体,表明D52改变了与LAMP1相关的分泌性囊泡的质膜回收。这些发现暗示在溶酶体膜向和从质膜运输中的溶酶体膜运输中,丝氨酸136的D52表达和Ca 2 + 依赖性磷酸化提供了新的Ca 2 + 敏感途径调节溶酶体样分泌途径。

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