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嗜铬细胞瘤PC12细胞上高亲和力受体对神经生长因子的内化作用。

The internalization of nerve growth factor by high-affinity receptors on pheochromocytoma PC12 cells.

作者信息

Hosang M, Shooter E M

出版信息

EMBO J. 1987 May;6(5):1197-202. doi: 10.1002/j.1460-2075.1987.tb02354.x.

Abstract

The internalization and subsequent fate of the two populations of nerve growth factor (NGF) receptors on pheochromocytoma PC12 cells were explored either by identifying the relative amounts and sizes of the receptors, after incubation of cells with [125I]NGF, by cross-linking with a photoreactive heterobifunctional reagent or by following the topological distribution of the cross-linked receptors with time. The ratio of the slow, high-affinity to the fast, low-affinity NGF receptor decreased over a 5-h incubation with [125I]NGF in a process which did not involve proteolytic conversion of the slow to the fast receptor. During this period the cross-linked slow receptor moved from a trypsin-labile to a trypsin-stable site suggestive of internalization. In contrast, the cross-linked fast NGF receptor remained trypsin sensitive for at least 2 h of incubation, indicative of a constant cell surface localization. The internalized [125I]NGF in the cross-linked slow NGF receptor was not degraded, indicating that cross-linking, by preventing the acid pH-induced dissociation of the NGF-receptor complex in the endosomes, blocks normal sorting of [125I]NGF to the lysosomes. The cross-linked receptor was not recycled to the cell surface. If this reflects the properties of the unmodified receptor then another process, possibly receptor conversion, is required to replenish slow NGF receptors in the cell surface.

摘要

通过在细胞与[125I]神经生长因子(NGF)孵育后,利用光反应性异双功能试剂进行交联来鉴定受体的相对数量和大小,或者通过追踪交联受体随时间的拓扑分布,探索了嗜铬细胞瘤PC12细胞上两种神经生长因子受体的内化及后续命运。在与[125I]NGF孵育5小时的过程中,慢速、高亲和力NGF受体与快速、低亲和力NGF受体的比例下降,该过程不涉及慢速受体向快速受体的蛋白水解转化。在此期间,交联的慢速受体从对胰蛋白酶敏感的位点转移到对胰蛋白酶稳定的位点,提示发生了内化。相反,交联的快速NGF受体在孵育至少2小时内仍对胰蛋白酶敏感,表明其在细胞表面持续定位。交联的慢速NGF受体中内化的[125I]NGF未被降解,这表明交联通过防止内体中NGF - 受体复合物因酸性pH诱导的解离,阻断了[125I]NGF向溶酶体的正常分选。交联的受体未再循环至细胞表面。如果这反映了未修饰受体的特性,那么需要另一个过程,可能是受体转化,来补充细胞表面的慢速NGF受体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89e2/553919/622985c3f618/emboj00245-0058-a.jpg

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