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通过流式细胞术研究的胞饮作用动力学。

Kinetics of pinocytosis studied by flow cytometry.

作者信息

van Deurs B, Röpke C, Thorball N

出版信息

Eur J Cell Biol. 1984 May;34(1):96-102.

PMID:6203751
Abstract

Kinetics of pinocytosis of FITC-Dextran (mw 70 000) was analysed in mouse L-cells using flow cytometry with a fluorescence-activated cell sorter (FACS). In each experiment information on 2 X 10(4) individual, living cells was obtained. The population of L-cells thus analysed was shown to be rather homogeneous with respect to cell size, and the peak of the FITC-fluorescence curve--a histogram of the accumulated signals from L-cells exposed to FITC-Dextran--was shown to be representative of the average size of the L-cells. It was found that the cellular accumulation of FITC-Dextran was proportional to the tracer. However, the rate of accumulation decreased with increasing time of incubation (up to 3 h). When cells were pulse-labeled for 10 min at 37 degrees C, rinsed carefully with ice-cold PBS, and reincubated at 37 degrees C for various periods of time, about 50% of the initial cellular FITC-fluorescence disappeared within approximately 15 min of reincubation, whereafter no measurable decrease in cellular fluorescence was seen. In addition, a rapid increase of intact FITC-Dextran molecules in the reincubation medium occurred within the first 15 to 30 min of reincubation, whereafter no further increase took place. Thus, a large portion of previously endocytosed FITC-Dextran becomes rapidly exocytosed, while the rest becomes sequestered within a compartment from where little or no exocytosis occurs. The deviation from linearity in accumulation related to time, and the distinct biphasic kinetics of exocytosis are taken to support a generalized two-compartment model for endocytosis and membrane recycling, the two compartments being endocytic vacuoles (endosomes) and (secondary) lysosomes, respectively.

摘要

利用带有荧光激活细胞分选仪(FACS)的流式细胞术,分析了小鼠L细胞中异硫氰酸荧光素标记的葡聚糖(分子量70000)的胞饮动力学。在每个实验中,获得了关于2×10⁴个单个活细胞的信息。经分析,L细胞群体在细胞大小方面相当均匀,并且异硫氰酸荧光素荧光曲线的峰值——来自暴露于异硫氰酸荧光素标记葡聚糖的L细胞的累积信号直方图——被证明代表了L细胞的平均大小。研究发现,异硫氰酸荧光素标记葡聚糖的细胞内积累与示踪剂成正比。然而,积累速率随着孵育时间的增加(长达3小时)而降低。当细胞在37℃脉冲标记10分钟,用冰冷的磷酸盐缓冲盐水仔细冲洗,然后在37℃再孵育不同时间时,在再孵育约15分钟内,初始细胞异硫氰酸荧光素荧光约50%消失,此后细胞荧光未见可测量的降低。此外,在再孵育的最初15至30分钟内,再孵育培养基中完整的异硫氰酸荧光素标记葡聚糖分子迅速增加,此后不再进一步增加。因此,大部分先前内吞的异硫氰酸荧光素标记葡聚糖迅速被胞吐,而其余部分则被隔离在一个几乎不发生或不发生胞吐的区室中。积累与时间的线性偏差以及明显的胞吐双相动力学支持了内吞作用和膜循环的广义双区室模型,这两个区室分别是内吞泡(内体)和(次级)溶酶体。

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