首页> 外文期刊>Journal of cell biology >The membrane proteins of the vacuolar system. II. Bidirectional flow between secondary lysosomes and plasma membrane.
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The membrane proteins of the vacuolar system. II. Bidirectional flow between secondary lysosomes and plasma membrane.

机译:液泡系统的膜蛋白。二。次级溶酶体和质膜之间的双向流动。

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Lactoperoxidase covalently coupled to latex spheres (LPO-latex) has been used to selectively iodinate the phagolysome (PL) membrane within living macrophages, as discussed in the accompanying article. This procedure labeled approximately 24 polypeptides in the PL membrane; these were similar to those iodinatable on the external surface of the plasma membrane (PM). We now report on the translocation and fate of these proteins when the cells are returned to culture. TCA-precipitable radioactivity was lost from cells with biphasic kinetics. 20-50% of the cell-associated radiolabel was rapidly digested (t 1/2 approximately equal to 1 h) and recovered in the culture medium as monoiodotyrosine. 50-80% of the label was lost slowly from cells ( 1/2 approximately equal to 24-30 h). Quantitative analysis of gel autoradiograms showed that all radiolabeled proteins were lost at the same rate in both the rapid and slow phases of digestion. Within 15-30 min aftr labeling of the PL membrane, EM autoradiography revealed that the majority of the cell-associated grains, which at time 0 were associated with PL, were now randomly dispersed over the plasmalemma. At this time, analysis of PM captured by a second phagocytic load revealed the presence of all labeled species originally present in the PL membrane. This demonstrated the rapid, synchronous centrifugal flow of PL polypeptides to the cell surface. Evidence was also obtained for the continuous influx of representative samples of the PM into the PL compartment by way of pinocytic vesicles. This was based on the constant flow of fluid phase markers into latex-containing PL and on the internalization of all iodinatable PM polypeptides into this locus. These observations provide evidence for the continuous, bidirectional flow of membrane polypeptides between the PM and the secondary lysosome and represent an example of a membrane flow and recycling mechanism.
机译:如随附文章中所述,共价偶联至乳胶球(LPO-乳胶)的乳过氧化物酶已用于选择性碘化活巨噬细胞内的吞噬体(PL)膜。该程序在PL膜上标记了大约24种多肽;这些类似于质膜(PM)外表面上的碘。现在,我们将报告当细胞返回培养时这些蛋白质的转运和命运。具有双相动力学的细胞失去了TCA可沉淀的放射性。快速消化了20-50%的细胞相关放射性标记(t 1/2大约等于1 h),并在培养基中以单碘酪氨酸的形式回收。 50-80%的标记从细胞中缓慢丢失(1/2大约等于24-30 h)。凝胶放射自显影照片的定量分析表明,在消化的快速和慢速阶段,所有放射性标记的蛋白质都以相同的速率损失。 EM放射自显影显示在PL膜的15至30分钟后标记,EM放射自显影显示,大多数与细胞相关的颗粒(在时间0与PL相关)现在随机分散在质膜上。这时,通过第二次吞噬负荷捕获的PM的分析显示,最初存在于PL膜中的所有标记物种均存在。这证明了PL多肽向细胞表面的快速同步离心流动。还获得了证据,证明有代表性的PM样品通过小球囊囊不断流入PL室。这是基于液相标记物不断流入含乳胶的PL,以及所有可碘化的PM多肽进入该基因座的内在化。这些观察结果提供了在PM与次级溶酶体之间膜多肽连续,双向流动的证据,并代表了膜流动和再循环机制的一个实例。

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