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Delivery of ligands from sorting endosomes to late endosomes occurs by maturation of sorting endosomes

机译:配体从分选内体到晚期内体的递送通过分选内体的成熟而发生

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摘要

After endocytosis, lysosomally targeted ligands pass through a series of endosomal compartments. The endocytic apparatus that accomplishes this passage may be considered to take one of two forms: (a) a system in which lysosomally targeted ligands pass through preexisting, long- lived early sorting endosomes and are then selectively transported to long-lived late endosomes in carrier vesicles, or (b) a system in which lysosomally targeted ligands are delivered to early sorting endosomes which themselves mature into late endosomes. We have previously shown that sorting endosomes in CHO cells fuse with newly formed endocytic vesicles (Dunn, K. W., T. E. McGraw, and F. R. Maxfield. 1989. J. Cell Biol. 109:3303-3314) and that previously endocytosed ligands lose their accessibility to fusion with a half-time of approximately 8 min (Salzman, N. H., and F. R. Maxfield. 1989. J. Cell Biol. 109:2097- 2104). Here we have studied the properties of individual endosomes by digital image analysis to distinguish between the two mechanisms for entry of ligands into late endosomes. We incubated TRVb-1 cells (derived from CHO cells) with diO-LDL followed, after a variable chase, by diI-LDL, and measured the diO content of diI-containing endosomes. As the chase period was lengthened, an increasing percentage of the endosomes containing diO-LDL from the initial incubation had no detectable diI-LDL from the second incubation, but those endosomes that contained both probes showed no decrease in the amount of diO-LDL per endosomes. These results indicate that (a) a pulse of fluorescent LDL is retained by individual sorting endosomes, and (b) with time sorting endosomes lose the ability to fuse with primary endocytic vesicles. These data are inconsistent with a preexisting compartment model which predicts that the concentration of ligand in sorting endosomes will decline during a chase interval, but that the ability of the stable sorting endosome to receive newly endocytosed ligands will remain high. These data are consistent with a maturation mechanism in which the sorting endosome retains and accumulates lysosomally directed ligands until it loses its ability to fuse with newly formed endocytic vesicles and matures into a late endosome. We also find that, as expected according to the maturation model, new sorting endosomes are increasingly labeled during the chase period indicating that new sorting endosomes are continuously formed to replace those that have matured into late endosomes.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:内吞后,溶酶体靶向的配体穿过一系列内体区室。可以认为完成这种传代的内吞设备采取以下两种形式之一:(a)一种系统,其中溶酶体靶向的配体穿过预先存在的,寿命长的早期分选内体,然后选择性地转运至载体中的寿命长的晚期内体囊泡,或(b)将溶酶体靶向的配体递送至早期分选的内体的系统,其自身成熟为晚期内体。我们以前已经表明,在CHO细胞中分选内体与新形成的内吞囊泡融合(Dunn,KW,TE McGraw和FR Maxfield。1989. J. Cell Biol。109:3303-3314),并且以前被内吞的配体失去了与约半分钟的时间融合(Salzman,NH,和FRMaxfield.1989。J.CellBiol.109:2097-2104)。在这里,我们通过数字图像分析研究了单个内体的特性,以区分配体进入晚期内体的两种机制。我们将TRVb-1细胞(源自CHO细胞)与diO-LDL一起孵育,然后在可变追赶下与diI-LDL孵育,并测量含diI的内体的diO含量。随着追踪时间的延长,从初次孵育开始含有diO-LDL的内体的百分比不断增加,而从第二次孵育开始没有可检测到的diI-LDL,但是包含两种探针的那些内体显示的diO-LDL的量没有减少。内体。这些结果表明(a)单个分选的内体保留了荧光LDL的脉冲,(b)随着时间分选的内体失去了与初级内吞囊泡融合的能力。这些数据与先前存在的区室模型不一致,该模型预测在追踪间隔期间分选内体的配体浓度将下降,但是稳定分选内体接收新的内吞配体的能力将保持较高。这些数据与成熟机制一致,在该机制中,分选的内体保留并积累了溶酶体定向的配体,直到它失去与新形成的内吞囊泡融合并成熟为晚期内体的能力。我们还发现,正如成熟模型所预期的那样,新的分选内体在追逐期间越来越多地被标记,这表明新的分选内体不断形成以取代已经成熟的晚期内体。(摘要截短了400字)

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