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Ste5环指-H2结构域:在酵母信息素信号传导中Ste4促进的寡聚化作用。

Ste5 RING-H2 domain: role in Ste4-promoted oligomerization for yeast pheromone signaling.

作者信息

Inouye C, Dhillon N, Thorner J

机构信息

Department of Molecular and Cell Biology, Division of Biochemistry and Molecular Biology, University of California, Berkeley, CA 94720-3202, USA.

出版信息

Science. 1997 Oct 3;278(5335):103-6. doi: 10.1126/science.278.5335.103.

Abstract

Ste5 is a scaffold for the mitogen-activated protein kinase (MAPK) cascade components in a yeast pheromone response pathway. Ste5 also associates with Ste4, the beta subunit of a heterotrimeric guanine nucleotide-binding protein, potentially linking receptor activation to stimulation of the MAPK cascade. A RING-H2 motif at the Ste5 amino terminus is apparently essential for function because Ste5(C177S) and Ste5(C177A C180A) mutants did not rescue the mating defect of a ste5Delta cell. In vitro Ste5(C177A C180A) bound each component of the MAPK cascade, but not Ste4. Unlike wild-type Ste5, the mutant did not appear to oligomerize; however, when fused to a heterologous dimerization domain (glutathione S-transferase), the chimeric protein restored mating in an ste5Delta cell and an ste4Delta ste5Delta double mutant. Thus, the RING-H2 domain mediates Ste4-Ste5 interaction, which is a prerequisite for Ste5-Ste5 self-association and signaling.

摘要

Ste5是酵母信息素反应途径中丝裂原活化蛋白激酶(MAPK)级联组分的支架蛋白。Ste5还与异源三聚体鸟嘌呤核苷酸结合蛋白的β亚基Ste4相互作用,可能将受体激活与MAPK级联的刺激联系起来。Ste5氨基末端的一个RING-H2基序对于其功能显然至关重要,因为Ste5(C177S)和Ste5(C177A C180A)突变体无法挽救ste5Δ细胞的交配缺陷。在体外,Ste5(C177A C180A)能结合MAPK级联的每个组分,但不能结合Ste4。与野生型Ste5不同,该突变体似乎不会发生寡聚化;然而,当与异源二聚化结构域(谷胱甘肽S-转移酶)融合时,嵌合蛋白可恢复ste5Δ细胞和ste4Δ ste5Δ双突变体中的交配能力。因此,RING-H2结构域介导Ste4与Ste5的相互作用,这是Ste5自身缔合和信号传导的先决条件。

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