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NPl1是酵母中的一个必需基因,参与Gap1和Fur4通透酶的诱导降解,它编码Rsp5泛素蛋白连接酶。

NPl1, an essential yeast gene involved in induced degradation of Gap1 and Fur4 permeases, encodes the Rsp5 ubiquitin-protein ligase.

作者信息

Hein C, Springael J Y, Volland C, Haguenauer-Tsapis R, André B

机构信息

Laboratoire de Physiologie Cellulaire et de Génétique des Levures, Université Libre de Bruxelles, Belgium.

出版信息

Mol Microbiol. 1995 Oct;18(1):77-87. doi: 10.1111/j.1365-2958.1995.mmi_18010077.x.

Abstract

When yeast cells growing on a poor nitrogen source are supplied with NH4+ ions, several nitrogen permeases including the general amino acid permease (Gap1p) are rapidly and completely inactivated. This report shows that inactivation by NH4+ of the Gap1 permease is accompanied by its degradation. A functional NPl1 gene product is required for both inactivation and degradation of Gap1p. Molecular analysis of the NPl1 gene showed that it is identical to RSP5. The RSP5 product is a ubiquitin-protein ligase (E3 enzyme) whose physiological function was, however, unknown. Its C-terminal region is very similar to that of other members of the E6-AP-like family of ubiquitin-protein ligases. Its N-terminal region contains a single C2 domain that may be a Ca(2+)-dependent phospholipid interaction motif, followed by several copies of a recently identified domain called WW(P). The Npi1/Rsp5 protein has a homologue both in humans and in mice, the latter being involved in brain development. Stress-induced degradation of the uracil permease (Fur4p), a process in which ubiquitin is probably involved, was also found to require a functional NPl1/RSP5 product. Chromosomal deletion of NPl1/RSP5 showed that this gene is essential for cell viability. In the viable npi1/rsp5 strain, expression of NPl1/RSP5 is reduced as a result of insertion of a Ty1 element in its 5' region. Our results show that the Npi1/Rsp5 ubiquitin-protein ligase participates in induced degradation of at least two permeases, Gap1p and Fur4p, and probably also other proteins.

摘要

当在贫氮源上生长的酵母细胞被供应NH4+离子时,包括通用氨基酸通透酶(Gap1p)在内的几种氮通透酶会迅速且完全失活。本报告表明,NH4+使Gap1通透酶失活的同时伴随着其降解。Gap1p的失活和降解都需要功能性的NPl1基因产物。对NPl1基因的分子分析表明,它与RSP5相同。RSP5产物是一种泛素 - 蛋白连接酶(E3酶),但其生理功能尚不清楚。它的C末端区域与泛素 - 蛋白连接酶的E6 - AP样家族的其他成员非常相似。它的N末端区域包含一个单一的C2结构域,可能是一个Ca(2+)依赖的磷脂相互作用基序,随后是几个最近鉴定的称为WW(P)的结构域的拷贝。Npi1/Rsp5蛋白在人类和小鼠中都有同源物,后者参与大脑发育。尿嘧啶通透酶(Fur4p)的应激诱导降解,这一过程可能涉及泛素,也被发现需要功能性的NPl1/RSP5产物。NPl1/RSP5的染色体缺失表明该基因对细胞活力至关重要。在可行的npi1/rsp5菌株中,由于Ty1元件插入其5'区域,NPl1/RSP5的表达降低。我们的结果表明,Npi1/Rsp5泛素 - 蛋白连接酶参与了至少两种通透酶Gap1p和Fur4p以及可能其他蛋白质的诱导降解。

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