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卵泡抑素(一种激活素结合蛋白)在抑制大鼠垂体细胞中激活素作用方面的新作用。激活素的内吞降解及其被与细胞表面硫酸乙酰肝素相关的卵泡抑素加速降解。

A novel role of follistatin, an activin-binding protein, in the inhibition of activin action in rat pituitary cells. Endocytotic degradation of activin and its acceleration by follistatin associated with cell-surface heparan sulfate.

作者信息

Hashimoto O, Nakamura T, Shoji H, Shimasaki S, Hayashi Y, Sugino H

机构信息

Institute for Enzyme Research, University of Tokushima, Kuramoto, Tokushima 770, Japan.

出版信息

J Biol Chem. 1997 May 23;272(21):13835-42. doi: 10.1074/jbc.272.21.13835.

Abstract

There are two types of the activin-binding protein follistatin (FS), FS-288 and FS-315. These result from alternative splicing of mRNA. FS-288 exhibits high affinity for cell-surface heparan sulfate proteoglycans, whereas FS-315 shows low affinity. To understand the physiological role of cell-associated FS, we investigated the binding of activin to cell-associated FS and its behavior on the cell surface using primary cultured rat pituitary cells. Affinity cross-linking experiments using 125I-activin A demonstrated that activin bound to rat pituitary cells via FS as well as to their receptors on the cell surface. FS-288 promoted the binding of activin A to the cell surface more markedly than FS-315. When the cells were incubated with 125I-activin A in the presence of FS-288, significant degradation of activin A was observed, and this was dependent on the FS-288 concentration. This activin degradation was abolished by heparan sulfate, chloroquine, and several lysosomal enzyme inhibitors. Moreover, FS-288 stimulated cellular uptake of activin A, whereas chloroquine suppressed lysosomal degradation following internalization, as demonstrated by microscopic autoradiography. These results suggest that cell-associated FS-288 accelerates the uptake of activin A into pituitary cells, leading to increased degradation by lysosomal enzymes, and thus plays a role in the activin clearance system.

摘要

激活素结合蛋白卵泡抑素(FS)有两种类型,即FS - 288和FS - 315。它们是mRNA可变剪接的产物。FS - 288对细胞表面硫酸乙酰肝素蛋白聚糖具有高亲和力,而FS - 315则显示低亲和力。为了解细胞相关FS的生理作用,我们使用原代培养的大鼠垂体细胞研究了激活素与细胞相关FS的结合及其在细胞表面的行为。使用125I - 激活素A进行的亲和交联实验表明,激活素通过FS与大鼠垂体细胞结合,同时也与细胞表面的受体结合。FS - 288比FS - 315更显著地促进激活素A与细胞表面的结合。当细胞在FS - 288存在下与125I - 激活素A孵育时,观察到激活素A有明显降解,且这种降解依赖于FS - 288的浓度。硫酸乙酰肝素、氯喹和几种溶酶体酶抑制剂可消除这种激活素降解。此外,如显微放射自显影所示,FS - 288刺激激活素A的细胞摄取,而氯喹抑制内化后的溶酶体降解。这些结果表明,细胞相关的FS - 288加速激活素A进入垂体细胞的摄取,导致溶酶体酶降解增加,从而在激活素清除系统中发挥作用。

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