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两种甘露糖6-磷酸受体在内体分布上的差异。

Differences in the endosomal distributions of the two mannose 6-phosphate receptors.

作者信息

Klumperman J, Hille A, Veenendaal T, Oorschot V, Stoorvogel W, von Figura K, Geuze H J

机构信息

Department of Cell Biology, Utrecht University, The Netherlands.

出版信息

J Cell Biol. 1993 Jun;121(5):997-1010. doi: 10.1083/jcb.121.5.997.

Abstract

Multiple immunolabeling of cryosections was performed to compare the subcellular distributions of the two mannose 6-phosphate receptors (MPRs) involved in the intracellular targeting of lysosomal enzymes: the cation-dependent (CD) and cation-independent (CI) MPR. In two cell types, the human hepatoma cell line HepG2 and BHK cells double transfected with cDNA's encoding for the human CD-MPR and CI-MPR, we found the two receptors at the same sites: the trans-Golgi reticulum (TGR), endosomes, electron-dense cytoplasmic vesicles, and the plasma membrane. In the TGR the two receptors colocalized and were concentrated to the same extent in the same HA I-adaptor positive coated buds and vesicles. Endosomes were identified by the presence of exogenous tracers. The two MPR codistributed to the same endosomes, but semiquantitative analysis showed a relative enrichment of the CI-MPR in endosomes containing many internal vesicles. Two endosomal subcompartments were discerned, the central vacuole and the associated tubules and vesicles (ATV). We found an enrichment of CD-MPR over CI-MPR in the ATV. Lateral segregation of the two receptors within the plane of membranes was also detected on isolated organelles. Double immunolabeling for the CD-MPR and the asialoglycoprotein receptor, which mainly recycles between endosomes and the plasma membrane, revealed that these two receptors were concentrated in different subpopulations of endosomal ATV. The small GTP-binding protein rab4, which has been shown to mediate recycling from endosomes to the plasma membrane, was localized at the cytosolic face of many endosomal ATV. Quantitative analysis of double-immunolabeled cells revealed only a limited codistribution of the MPRs and rab4 in ATV. These data suggest that the two MPRs exit the TGR via the same coated vesicles, but that upon arrival in the endosomes CD-MPR is more rapidly than CI-MPR, segregated into ATV which probably are destined to recycle MPRs to TGR.

摘要

为比较参与溶酶体酶细胞内靶向的两种甘露糖6-磷酸受体(MPR),即阳离子依赖型(CD)和阳离子非依赖型(CI)MPR的亚细胞分布,我们对冰冻切片进行了多重免疫标记。在两种细胞类型中,即人肝癌细胞系HepG2和用编码人CD-MPR和CI-MPR的cDNA进行双重转染的BHK细胞,我们在相同位点发现了这两种受体:反式高尔基体网状结构(TGR)、内体、电子致密的细胞质囊泡和质膜。在TGR中,这两种受体共定位,并且在相同的HA I衔接蛋白阳性被膜小泡和囊泡中以相同程度浓缩。通过外源示踪剂的存在鉴定内体。两种MPR共分布于相同的内体,但半定量分析显示,在含有许多内部囊泡的内体中CI-MPR相对富集。辨别出两个内体亚区室,中央液泡以及相关的小管和囊泡(ATV)。我们发现ATV中CD-MPR比CI-MPR更富集。在分离的细胞器上也检测到这两种受体在膜平面内的侧向分离。对CD-MPR和主要在内体与质膜之间循环的去唾液酸糖蛋白受体进行双重免疫标记,结果显示这两种受体集中在不同亚群的内体ATV中。已证明小GTP结合蛋白rab4介导从内体到质膜的循环,它定位于许多内体ATV的胞质面。对双重免疫标记细胞的定量分析显示,MPR和rab4在ATV中的共分布有限。这些数据表明,这两种MPR通过相同的被膜小泡离开TGR,但到达内体后,CD-MPR比CI-MPR更快地被分离到ATV中,而ATV可能注定要将MPR循环回TGR。

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