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泛素-蛋白酶体系统在酿酒酵母a因子转运蛋白Ste6p的液泡降解中的作用。

Role for the ubiquitin-proteasome system in the vacuolar degradation of Ste6p, the a-factor transporter in Saccharomyces cerevisiae.

作者信息

Loayza D, Michaelis S

机构信息

Department of Cell Biology and Anatomy, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Mol Cell Biol. 1998 Feb;18(2):779-89. doi: 10.1128/MCB.18.2.779.

Abstract

Ste6p, the a-factor transporter in Saccharomyces cerevisiae, is a multispanning membrane protein with 12 transmembrane spans and two cytosolic ATP binding domains. Ste6p belongs to the ATP binding cassette (ABC) superfamily and provides an excellent model for examining the intracellular trafficking of a complex polytopic membrane protein in yeast. Previous studies have shown that Ste6p undergoes constitutive endocytosis from the plasma membrane, followed by delivery to the vacuole, where it is degraded in a Pep4p-dependent manner, even though only a small portion of Ste6p is exposed to the vacuolar lumen where the Pep4p-dependent proteases reside. Ste6p is known to be ubiquitinated, a modification that may facilitate its endocytosis. In the present study, we further investigated the intracellular trafficking of Ste6p, focusing on the role of the ubiquitin-proteasome machinery in the metabolic degradation of Ste6p. We demonstrate by pulse-chase analysis that the degradation of Ste6p is impaired in mutants that exhibit defects in the activity of the proteasome (doa4 and pre1,2). Likewise, by immunofluorescence, we observe that Ste6p accumulates in the vacuole in the doa4 mutant, as it does in the vacuolar protease-deficient pep4 mutant. One model consistent with our results is that the degradation of Ste6p, the bulk of which is exposed to the cytosol, requires the activity of both the cytosolic proteasomal degradative machinery and the vacuolar lumenal proteases, acting in a synergistic fashion. Alternatively, we discuss a second model whereby the ubiquitin-proteasome system may indirectly influence the Pep4p-dependent vacuolar degradation of Ste6p. This study establishes that Ste6p is distinctive in that two independent degradative systems (the vacuolar Pep4p-dependent proteases and the cytosolic proteasome) are both involved, either directly or indirectly, in the metabolic degradation of a single substrate.

摘要

Ste6p是酿酒酵母中的α-因子转运蛋白,是一种具有12个跨膜结构域和两个胞质ATP结合结构域的多次跨膜膜蛋白。Ste6p属于ATP结合盒(ABC)超家族,为研究酵母中复杂的多结构域膜蛋白的细胞内运输提供了一个极佳的模型。先前的研究表明,Ste6p从质膜进行组成型内吞作用,随后被转运至液泡,在那里它以Pep4p依赖的方式被降解,尽管只有一小部分Ste6p暴露于Pep4p依赖的蛋白酶所在的液泡腔中。已知Ste6p会被泛素化,这种修饰可能促进其胞吞作用。在本研究中,我们进一步研究了Ste6p的细胞内运输,重点关注泛素-蛋白酶体机制在Ste6p代谢降解中的作用。我们通过脉冲追踪分析证明,在蛋白酶体活性存在缺陷的突变体(doa4和pre1,2)中,Ste6p的降解受到损害。同样,通过免疫荧光,我们观察到Ste6p在doa4突变体的液泡中积累,就像在缺乏液泡蛋白酶的pep4突变体中一样。与我们的结果一致的一种模型是,大部分暴露于细胞质中的Ste6p的降解需要细胞质蛋白酶体降解机制和液泡腔蛋白酶的协同作用。或者,我们讨论了另一种模型,即泛素-蛋白酶体系统可能间接影响Ste6p的Pep4p依赖的液泡降解。本研究表明,Ste6p的独特之处在于两个独立的降解系统(液泡Pep4p依赖的蛋白酶和细胞质蛋白酶体)都直接或间接地参与了单一底物的代谢降解。

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