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劳氏肉瘤病毒Gag蛋白在内质网中的运输与加工

Transport and processing of the Rous sarcoma virus Gag protein in the endoplasmic reticulum.

作者信息

Krishna N K, Weldon R A, Wills J W

机构信息

Department of Microbiology and Immunology, Pennsylvania State University College of Medicine, Hershey 17033, USA.

出版信息

J Virol. 1996 Mar;70(3):1570-9. doi: 10.1128/JVI.70.3.1570-1579.1996.

Abstract

The Gag proteins of replication-competent retroviruses direct budding at the plasma membrane and are cleaved by the viral protease (PR) just before or very soon after particle release. In contrast, defective retroviruses that bud into the endoplasmic reticulum (ER) have been found, and morphologically these appear to contain uncleaved Gag proteins. From this, it has been proposed that activation of PR may depend upon a host factor found only at the plasma membrane. However, if Gag proteins were cleaved by PR before the particle could pinch off the ER membrane, then the only particles that would remain visible are those that packaged smaller-than-normal amounts of PR, and these would have an immature morphology. To distinguish between these two hypotheses, we made use of the Rous sarcoma virus (RSV) Gag protein, the PR of RSV IS included on each Gag molecule. To target Gag to the ER, a signal peptide was installed at its amino terminus in place of the plasma membrane-binding domain. An intervening, hydrophobic, transmembrane anchor was included to keep Gag extended into the cytoplasm. We found that PR-mediated processing occurred, although the cleavage products were rapidly degraded. When the anchor was removed, allowing the entire protein to be inserted into the lumen of the ER, Gag processing occurred with a high level of efficiency, and the cleavage products were quite stable. Thus, PR activation does not require targeting of Gag molecules to the plasma membrane. Unexpectedly, molecules lacking the transmembrane anchor were rapidly secreted from the cell in a nonmembrane-enclosed form and in a manner that was very sensitive to brefeldin A and monensin. In contrast, the wild-type RSV and Moloney murine leukemia virus Gag proteins were completely insensitive to these inhibitors, suggesting that the normal mechanism of transport to the plasma membrane does not require interactions with the secretory pathway.

摘要

具有复制能力的逆转录病毒的Gag蛋白在质膜处引导出芽,并在颗粒释放之前或之后不久被病毒蛋白酶(PR)切割。相比之下,已发现有缺陷的逆转录病毒在内质网(ER)中出芽,从形态上看,这些病毒似乎含有未切割的Gag蛋白。据此推测,PR的激活可能依赖于仅在质膜上发现的一种宿主因子。然而,如果Gag蛋白在颗粒从ER膜脱离之前就被PR切割,那么唯一可见的颗粒将是那些包装了比正常量少的PR的颗粒,而这些颗粒将具有不成熟的形态。为了区分这两种假设,我们利用了劳氏肉瘤病毒(RSV)的Gag蛋白,RSV的PR包含在每个Gag分子上。为了将Gag靶向到ER,在其氨基末端安装了一个信号肽来取代质膜结合结构域。还包含一个中间的疏水跨膜锚,以使Gag延伸到细胞质中。我们发现PR介导的加工过程发生了,尽管切割产物迅速降解。当去除锚,使整个蛋白质插入ER腔时,Gag加工高效发生,并且切割产物相当稳定。因此,PR激活不需要将Gag分子靶向到质膜。出乎意料的是,缺乏跨膜锚的分子以非膜包裹的形式迅速从细胞中分泌出来,并且对布雷菲德菌素A和莫能菌素非常敏感。相比之下,野生型RSV和莫洛尼鼠白血病病毒Gag蛋白对这些抑制剂完全不敏感,这表明运输到质膜的正常机制不需要与分泌途径相互作用。

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