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Quantitative ER ↔ Golgi Transport Kinetics and Protein Separation upon Golgi Exit Revealed by Vesicular Integral Membrane Protein 36 Dynamics in Live Cells

机译:定量ERol高尔基体转运动力学和蛋白质 水泡整体膜揭示高尔基出口分离。 活细胞中的蛋白质36动力学

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摘要

To quantitatively investigate the trafficking of the transmembrane lectin VIP36 and its relation to cargo-containing transport carriers (TCs), we analyzed a C-terminal fluorescent-protein (FP) fusion, VIP36-SP-FP. When expressed at moderate levels, VIP36-SP-FP localized to the endoplasmic reticulum, Golgi apparatus, and intermediate transport structures, and colocalized with epitope-tagged VIP36. Temperature shift and pharmacological experiments indicated VIP36-SP-FP recycled in the early secretory pathway, exhibiting trafficking representative of a class of transmembrane cargo receptors, including the closely related lectin ERGIC53. VIP36-SP-FP trafficking structures comprised tubules and globular elements, which translocated in a saltatory manner. Simultaneous visualization of anterograde secretory cargo and VIP36-SP-FP indicated that the globular structures were pre-Golgi carriers, and that VIP36-SP-FP segregated from cargo within the Golgi and was not included in post-Golgi TCs. Organelle-specific bleach experiments directly measured the exchange of VIP36-SP-FP between the Golgi and endoplasmic reticulum (ER). Fitting a two-compartment model to the recovery data predicted first order rate constants of 1.22 ± 0.44%/min for ER → Golgi, and 7.68 ± 1.94%/min for Golgi → ER transport, revealing a half-time of 113 ± 70 min for leaving the ER and 1.67 ± 0.45 min for leaving the Golgi, and accounting for the measured steady-state distribution of VIP36-SP-FP (13% Golgi/87% ER). Perturbing transport with AlF4 treatment altered VIP36-SP-GFP distribution and changed the rate constants. The parameters of the model suggest that relatively small differences in the first order rate constants, perhaps manifested in subtle differences in the tendency to enter distinct TCs, result in large differences in the steady-state localization of secretory components.
机译:为了定量研究跨膜凝集素VIP36的运输及其与货物运输载体(TCs)的关系,我们分析了C末端荧光蛋白(FP)融合蛋白VIP36-SP-FP。当以中等水平表达时,VIP36-SP-FP定位于内质网,高尔基体和中间转运结构,并与表位标记的VIP36共定位。温度变化和药理实验表明,VIP36-SP-FP在早期分泌途径中再循环,显示出代表一类跨膜货物受体的运输,包括紧密相关的凝集素ERGIC53。 VIP36-SP-FP的贩运结构包括以盐渍方式易位的肾小管和球状元件。顺行分泌性货物和VIP36-SP-FP的同时可视化表明,球形结构是高尔基之前的携带者,而VIP36-SP-FP与高尔基内部的货物隔离,不包含在高尔基之后的TC中。特定于细胞器的漂白剂实验直接测量了高尔基体与内质网(ER)之间VIP36-SP-FP的交换。拟合 两室模型对恢复数据的预测一阶速率 ER→Golgi的常数为1.22±0.44%/ min,7.68± 高尔基体→ER转运的速度为1.94%/ min,显示了 离开ER的113±70分钟,离开ER的1.67±0.45分钟 离开高尔基体,并计算出所测量的稳态 VIP36-SP-FP(13%高尔基体/ 87%ER)的分布。干扰运输 AlF4 -处理的患者改变了VIP36-SP-GFP 分布并更改了速率常数。的参数 模型表明一阶速率的差异相对较小 常数,可能表现为 输入不同的TC,导致稳态差异很大 分泌成分的定位。

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