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首页> 外文期刊>BMC Cell Biology >αS1-casein, which is essential for efficient ER-to-Golgi casein transport, is also present in a tightly membrane-associated form
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αS1-casein, which is essential for efficient ER-to-Golgi casein transport, is also present in a tightly membrane-associated form

机译:αS1-酪蛋白对于有效的ER到高尔基酪蛋白运输至关重要,也以与膜紧密结合的形式存在

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Background Caseins, the main milk proteins, aggregate in the secretory pathway of mammary epithelial cells into large supramolecular structures, casein micelles. The role of individual caseins in this process and the mesostructure of the casein micelle are poorly known. Results In this study, we investigate primary steps of casein micelle formation in rough endoplasmic reticulum-derived vesicles prepared from rat or goat mammary tissues. The majority of both αS1- and β-casein which are cysteine-containing casein was dimeric in the endoplasmic reticulum. Saponin permeabilisation of microsomal membranes in physico-chemical conditions believed to conserve casein interactions demonstrated that rat immature β-casein is weakly aggregated in the endoplasmic reticulum. In striking contrast, a large proportion of immature αS1-casein was recovered in permeabilised microsomes when incubated in conservative conditions. Furthermore, a substantial amount of αS1-casein remained associated with microsomal or post-ER membranes after saponin permeabilisation in non-conservative conditions or carbonate extraction at pH11, all in the presence of DTT. Finally, we show that protein dimerisation via disulfide bond is involved in the interaction of αS1-casein with membranes. Conclusions These experiments reveal for the first time the existence of a membrane-associated form of αS1-casein in the endoplasmic reticulum and in more distal compartments of the secretory pathway of mammary epithelial cells. Our data suggest that αS1-casein, which is required for efficient export of the other caseins from the endoplasmic reticulum, plays a key role in early steps of casein micelle biogenesis and casein transport in the secretory pathway.
机译:背景酪蛋白是主要的乳蛋白,在乳腺上皮细胞的分泌途径中聚集成大的超分子结构酪蛋白胶束。酪蛋白在此过程中的作用以及酪蛋白胶束的介观结构尚不清楚。结果在这项研究中,我们调查了酪蛋白胶束在大鼠或山羊乳腺组织制备的粗糙内质网囊泡中形成的主要步骤。含半胱氨酸酪蛋白的α S1 -和β-酪蛋白中的大多数在内质网中都是二聚体。认为可以保持酪蛋白相互作用的理化条件下,微粒体膜的皂素通透性表明,大鼠未成熟的β-酪蛋白在内质网中微弱聚集。与之形成鲜明对比的是,在保守条件下孵育时,通透的微粒体中回收了大部分未成熟的α S1 -酪蛋白。此外,在非保守条件下进行皂苷透化或在pH11下进行碳酸盐萃取后,所有的D S1 -酪蛋白仍与微粒体或ER后膜结合。最后,我们证明了通过二硫键的蛋白质二聚作用与α S1 -酪蛋白与膜的相互作用有关。结论这些实验首次揭示了内质网和乳腺上皮细胞分泌途径的更远侧隔室中膜相关形式的α S1 -酪蛋白的存在。我们的数据表明,α S1 -酪蛋白是其他酪蛋白从内质网有效出口所必需的,在酪蛋白胶束生物发生的早期步骤和酪蛋白在分泌途径中的运输中起关键作用。

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