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质膜与次级溶酶体之间物质运输的定量模型:流入、侧向扩散及降解的评估

A quantitative model of traffic between plasma membrane and secondary lysosomes: evaluation of inflow, lateral diffusion, and degradation.

作者信息

Draye J P, Courtoy P J, Quintart J, Baudhuin P

机构信息

Laboratoire de Chimie Physiologique, University of Louvain, Brussels, Belgium.

出版信息

J Cell Biol. 1988 Dec;107(6 Pt 1):2109-15. doi: 10.1083/jcb.107.6.2109.

Abstract

We present here a mathematical model that accounts for the various proportions of plasma membrane constituents occurring in the lysosomal membrane of rat fibroblasts (Draye, J.-P., J. Quintart, P. J. Courtoy, and P. Baudhuin. 1987. Eur. J. Biochem. 170: 395-403; Draye, J.-P., P. J. Courtoy, J. Quintart, and P. Baudhuin. 1987. Eur. J. Biochem. 170:405-411). It is based on contents of plasma membrane markers in purified lysosomal preparations, evaluations of their half-life in lysosomes and measurements of areas of lysosomal and plasma membranes by morphometry. In rat fibroblasts, structures labeled by a 2-h uptake of horseradish peroxidase followed by a 16-h chase (i.e., lysosomes) occupy 3% of the cellular volume and their total membrane area corresponds to 30% of the pericellular membrane area. Based on the latter values, the model predicts the rate of inflow and outflow of plasma membrane constituents into lysosomal membrane, provided their rate of degradation is known. Of the bulk of polypeptides iodinated at the cell surface, only 4% reach the lysosomes every hour, where the major part (integral of 83%) is degraded with a half-life in lysosomes of integral to 0.8 h. For specific plasma membrane constituents, this model can further account for differences in the association to the lysosomal membrane by variations in the rate either of lysosomal degradation, of inflow along the pathway from the pericellular membrane to the lysosomes, or of lateral diffusion.

摘要

我们在此展示了一个数学模型,该模型解释了大鼠成纤维细胞溶酶体膜中发生的质膜成分的各种比例(Draye, J.-P., J. Quintart, P. J. Courtoy, and P. Baudhuin. 1987. 《欧洲生物化学杂志》170: 395 - 403; Draye, J.-P., P. J. Courtoy, J. Quintart, and P. Baudhuin. 1987. 《欧洲生物化学杂志》170:405 - 411)。它基于纯化的溶酶体制剂中质膜标志物的含量、它们在溶酶体中的半衰期评估以及通过形态计量学对溶酶体膜和质膜面积的测量。在大鼠成纤维细胞中,经2小时辣根过氧化物酶摄取后再经过16小时追踪标记的结构(即溶酶体)占细胞体积的3%,其总膜面积相当于细胞外周膜面积的30%。基于后一组数值,该模型预测了质膜成分流入和流出溶酶体膜的速率,前提是已知它们的降解速率。在细胞表面碘化的大部分多肽中,每小时仅有4%到达溶酶体,其中大部分(83%的积分)在溶酶体中以0.8小时的积分半衰期被降解。对于特定的质膜成分,该模型可以通过溶酶体降解速率、从细胞外周膜到溶酶体的途径中的流入速率或横向扩散速率的变化,进一步解释与溶酶体膜结合的差异。

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