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2
Mutational analysis suggests that activation of the yeast pheromone response mitogen-activated protein kinase pathway involves conformational changes in the Ste5 scaffold protein.突变分析表明,酵母信息素反应丝裂原活化蛋白激酶途径的激活涉及Ste5支架蛋白的构象变化。
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Function of the MAPK scaffold protein, Ste5, requires a cryptic PH domain.丝裂原活化蛋白激酶(MAPK)支架蛋白Ste5的功能需要一个隐蔽的PH结构域。
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Nuclear shuttling of yeast scaffold Ste5 is required for its recruitment to the plasma membrane and activation of the mating MAPK cascade.酵母支架蛋白Ste5的核穿梭对于其募集到质膜以及激活交配型丝裂原活化蛋白激酶级联反应是必需的。
Cell. 1999 Aug 20;98(4):501-12. doi: 10.1016/s0092-8674(00)81978-9.

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Nucleus-specific and cell cycle-regulated degradation of mitogen-activated protein kinase scaffold protein Ste5 contributes to the control of signaling competence.有丝分裂原激活蛋白激酶支架蛋白Ste5的细胞核特异性和细胞周期调控降解有助于信号传导能力的控制。
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本文引用的文献

1
Ste5: a meeting place for MAP kinases and their associates.Ste5:丝裂原活化蛋白激酶及其相关蛋白的聚集场所。
Trends Cell Biol. 1995 Aug;5(8):322-7. doi: 10.1016/s0962-8924(00)89055-8.
2
Kinase suppressor of Ras (KSR) is a scaffold which facilitates mitogen-activated protein kinase activation in vivo.Ras激酶抑制因子(KSR)是一种支架蛋白,可在体内促进丝裂原活化蛋白激酶的激活。
Mol Cell Biol. 2002 May;22(9):3035-45. doi: 10.1128/MCB.22.9.3035-3045.2002.
3
Cdc42 regulation of kinase activity and signaling by the yeast p21-activated kinase Ste20.酵母p21激活激酶Ste20对Cdc42激酶活性和信号传导的调控
Mol Cell Biol. 2002 May;22(9):2939-51. doi: 10.1128/MCB.22.9.2939-2951.2002.
4
KSR is a scaffold required for activation of the ERK/MAPK module.KSR是激活ERK/MAPK模块所需的一种支架蛋白。
Genes Dev. 2002 Feb 15;16(4):427-38. doi: 10.1101/gad.962902.
5
Self-assembly properties of a model RING domain.一种模型环状结构域的自组装特性
Proc Natl Acad Sci U S A. 2002 Jan 22;99(2):667-72. doi: 10.1073/pnas.012317299. Epub 2002 Jan 15.
6
MAP kinase dynamics in response to pheromones in budding yeast.芽殖酵母中丝裂原活化蛋白激酶对信息素的动态响应
Nat Cell Biol. 2001 Dec;3(12):1051-9. doi: 10.1038/ncb1201-1051.
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Phosphorylation regulates the nucleocytoplasmic distribution of kinase suppressor of Ras.磷酸化作用调节Ras激酶抑制因子的核质分布。
J Biol Chem. 2002 Feb 15;277(7):5369-77. doi: 10.1074/jbc.M109875200. Epub 2001 Dec 10.
8
The Ste5p scaffold.Ste5p支架蛋白。
J Cell Sci. 2001 Nov;114(Pt 22):3967-78. doi: 10.1242/jcs.114.22.3967.
9
Integrated genomic and proteomic analyses of a systematically perturbed metabolic network.对一个系统扰动的代谢网络进行综合基因组和蛋白质组分析。
Science. 2001 May 4;292(5518):929-34. doi: 10.1126/science.292.5518.929.
10
Mutational analysis suggests that activation of the yeast pheromone response mitogen-activated protein kinase pathway involves conformational changes in the Ste5 scaffold protein.突变分析表明,酵母信息素反应丝裂原活化蛋白激酶途径的激活涉及Ste5支架蛋白的构象变化。
Mol Biol Cell. 2000 Nov;11(11):4033-49. doi: 10.1091/mbc.11.11.4033.

Ste5支架蛋白的核输出及质膜募集与寡聚化以及与信号转导组分的结合相协调。

Nuclear export and plasma membrane recruitment of the Ste5 scaffold are coordinated with oligomerization and association with signal transduction components.

作者信息

Wang Yunmei, Elion Elaine A

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Mol Biol Cell. 2003 Jun;14(6):2543-58. doi: 10.1091/mbc.e02-10-0699. Epub 2003 Feb 21.

DOI:10.1091/mbc.e02-10-0699
PMID:12808050
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC194901/
Abstract

The Ste5 scaffold activates an associated mitogen-activated protein kinase cascade by binding through its RING-H2 domain to a Gbetagamma dimer (Ste4/Ste18) at the plasma membrane in a recruitment event that requires prior nuclear shuttling of Ste5. Genetic evidence suggests that Ste5 must oligomerize to function, but its impact on Ste5 function and localization is unknown. Herein, we show that oligomerization affects Ste5 activity and localization. The majority of Ste5 is monomeric, suggesting that oligomerization is tightly regulated. Increasing the pool of Ste5 oligomers increases association with Ste11. Remarkably, Ste5 oligomers are also more efficiently exported from the nucleus, retained in the cytoplasm by Ste11 and better recruited to the plasma membrane, resulting in constitutive activation of the mating mitogen-activated protein kinase cascade. Coprecipitation tests show that the RING-H2 domain is the key determinant of oligomerization. Mutational analysis suggests that the leucine-rich domain limits the accessibility of the RING-H2 domain and inhibits export and recruitment in addition to promoting Ste11 association and activation. Our results suggest that the major form of Ste5 is an inactive monomer with an inaccessible RING-H2 domain and Ste11 binding site, whereas the active form is an oligomer that is more efficiently exported and recruited and has a more accessible RING-H2 domain and Ste11 binding site.

摘要

Ste5支架蛋白通过其RING-H2结构域与质膜上的Gβγ二聚体(Ste4/Ste18)结合,激活相关的丝裂原活化蛋白激酶级联反应,这一募集事件需要Ste5先进行核穿梭。遗传学证据表明,Ste5必须寡聚化才能发挥功能,但其对Ste5功能和定位的影响尚不清楚。在此,我们表明寡聚化会影响Ste5的活性和定位。大多数Ste5是单体形式,这表明寡聚化受到严格调控。增加Ste5寡聚体的数量会增加其与Ste11的结合。值得注意的是,Ste5寡聚体也能更有效地从细胞核输出,被Ste11保留在细胞质中,并更好地募集到质膜上,从而导致交配丝裂原活化蛋白激酶级联反应的组成性激活。共沉淀试验表明,RING-H2结构域是寡聚化的关键决定因素。突变分析表明,富含亮氨酸的结构域限制了RING-H2结构域的可及性,除了促进与Ste11的结合和激活外,还抑制输出和募集。我们的结果表明,Ste5的主要形式是一种无活性的单体,其RING-H2结构域和Ste11结合位点难以接近,而活性形式是一种寡聚体,其输出和募集效率更高,RING-H2结构域和Ste11结合位点更容易接近。