The effect of the size of fluorescent dextran on its endocytic pathway

内吞循环 胞饮病 内吞作用 网格蛋白 动力素 细胞生物学 内化 化学 内体 右旋糖酐 生物 生物化学 细胞 细胞内
作者
Lei Li,Tao Wan,Min Wan,Bei Liu,Ran Cheng,Rongying Zhang
出处
期刊:Cell Biology International [Wiley]
卷期号:39 (5): 531-539 被引量:209
标识
DOI:10.1002/cbin.10424
摘要

Fluorescent dextrans are commonly used as macropinocytic probes to study the properties of endocytic cargoes; however, the effect of the size of dextrans on endocytic mechanisms has not been carefully analyzed. By using chemical and siRNA inhibition of individual endocytic pathways, we evaluated the internalization of two commonly used dextrans, Dex10 (dextran 10 kDa) and Dex70 (dextran 70 kDa), in mammalian HeLa cells and Caenorhabditis elegans coelomocytes. We revealed that Dex70 enters these two cell types predominantly via clathrin- and dynamin-independent and amiloride-sensitive macropinocytosis process; Dex10, on the other hand, enters the two cell types through clathrin-/dynamin-dependent micropinocytosis in addition to macropinocytosis. In addition, although different-sized dextrans follow different endocytic processes, they share common post-endocytic events. Herein, though straightforward, our studies support that the size of nanomaterials could play a paramount role in their inclusion into endocytic vesicles and suggest that care should be taken while selecting endocytic pathway markers. Based on our results, we propose that Dex70 is a better probe for macropinocytosis, whereas Dex10 and smaller molecules are better for probing general fluid-phase endocytosis, which includes macropinocytic and micropinocytic processes.

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