Bananis E, Murray J W, Stockert R J, Satir P, Wolkoff A W
Marion Bessin Liver Research Center, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Cell Biol. 2000 Oct 2;151(1):179-86. doi: 10.1083/jcb.151.1.179.
Endocytic vesicles undergo fission to sort ligand from receptor. Using quantitative immunofluorescence and video imaging, we provide the first in vitro reconstitution of receptor-ligand sorting in early endocytic vesicles derived from rat liver. We show that to undergo fission, presegregation vesicles must bind to microtubules (MTs) and move upon addition of ATP. Over 13% of motile vesicles elongate and are capable of fission. After fission, one vesicle continues to move, whereas the other remains stationary, resulting in their separation. On average, almost 90% receptor is found in one daughter vesicle, whereas ligand is enriched by approximately 300% with respect to receptor in the other daughter vesicle. Although studies performed on polarity marked MTs showed approximately equal plus and minus end-directed motility, immunofluorescence microscopy revealed that kinesins, but not dynein, were associated with these vesicles. Motility and fission were prevented by addition of 1 mM 5'-adenylylimido-diphosphate (AMP-PNP, an inhibitor of kinesins) or incubation with kinesin antibodies, but were unaffected by addition of 5 microM vanadate (a dynein inhibitor) or dynein antibodies. These studies indicate an essential role of kinesin-based MT motility in endocytic vesicle sorting, providing a system in which factors required for endocytic vesicle processing can be identified and characterized.
内吞小泡进行裂变以将配体与受体分选开。我们利用定量免疫荧光和视频成像技术,首次在源自大鼠肝脏的早期内吞小泡中实现了受体 - 配体分选的体外重建。我们发现,为了进行裂变,预分选小泡必须与微管(MTs)结合并在添加ATP后移动。超过13%的运动性小泡会伸长并能够进行裂变。裂变后,一个小泡继续移动,而另一个则保持静止,从而导致它们分离。平均而言,在一个子小泡中发现近90%的受体,而在另一个子小泡中配体相对于受体富集约300%。尽管对标记了极性的微管进行的研究显示,向微管正端和负端的运动性大致相等,但免疫荧光显微镜检查显示,驱动蛋白与这些小泡相关,而动力蛋白则不然。添加1 mM 5'-腺苷酰亚胺二磷酸(AMP-PNP,一种驱动蛋白抑制剂)或与驱动蛋白抗体孵育可阻止运动性和裂变,但添加5 microM钒酸盐(一种动力蛋白抑制剂)或动力蛋白抗体则不会影响它们。这些研究表明基于驱动蛋白的微管运动性在内吞小泡分选中起着至关重要的作用,提供了一个可以鉴定和表征内吞小泡加工所需因子的系统。