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本文引用的文献

1
The Hsp90 co-chaperone Sgt1 governs Candida albicans morphogenesis and drug resistance.Hsp90 共伴侣 Sgt1 调控白念珠菌形态发生和耐药性。
PLoS One. 2012;7(9):e44734. doi: 10.1371/journal.pone.0044734. Epub 2012 Sep 6.
2
Farnesol and cyclic AMP signaling effects on the hypha-to-yeast transition in Candida albicans.法尼醇和环磷酸腺苷信号对白色念珠菌菌丝-酵母转变的影响。
Eukaryot Cell. 2012 Oct;11(10):1219-25. doi: 10.1128/EC.00144-12. Epub 2012 Aug 10.
3
Identification and functional characterization of Rca1, a transcription factor involved in both antifungal susceptibility and host response in Candida albicans.白色念珠菌中参与抗真菌药敏性和宿主反应的转录因子Rca1的鉴定及功能表征
Eukaryot Cell. 2012 Jul;11(7):916-31. doi: 10.1128/EC.00134-12. Epub 2012 May 11.
4
RAS Mutations and Oncogenesis: Not all RAS Mutations are Created Equally.RAS突变与肿瘤发生:并非所有RAS突变都是相同的。
Front Genet. 2012 Jan 3;2:100. doi: 10.3389/fgene.2011.00100. eCollection 2011.
5
Regulating the regulator: post-translational modification of RAS.调节蛋白的调节作用:RAS 的翻译后修饰。
Nat Rev Mol Cell Biol. 2011 Dec 22;13(1):39-51. doi: 10.1038/nrm3255.
6
Inhibition of Ras for cancer treatment: the search continues.抑制 Ras 用于癌症治疗:探索仍在继续。
Future Med Chem. 2011 Oct;3(14):1787-808. doi: 10.4155/fmc.11.121.
7
Roles of Ras1 membrane localization during Candida albicans hyphal growth and farnesol response.白色念珠菌菌丝生长和法尼醇反应过程中Ras1膜定位的作用。
Eukaryot Cell. 2011 Nov;10(11):1473-84. doi: 10.1128/EC.05153-11. Epub 2011 Sep 9.
8
Alternative mating type configurations (a/α versus a/a or α/α) of Candida albicans result in alternative biofilms regulated by different pathways.白色念珠菌的交配型构型(a/α 对 a/a 或 α/α)导致不同途径调控的不同生物膜。
PLoS Biol. 2011 Aug;9(8):e1001117. doi: 10.1371/journal.pbio.1001117. Epub 2011 Aug 2.
9
Hyphal development in Candida albicans requires two temporally linked changes in promoter chromatin for initiation and maintenance.白色念珠菌菌丝体发育需要启动子染色质在起始和维持过程中有两个时间上相关的变化。
PLoS Biol. 2011 Jul;9(7):e1001105. doi: 10.1371/journal.pbio.1001105. Epub 2011 Jul 19.
10
The quorum-sensing molecules farnesol/homoserine lactone and dodecanol operate via distinct modes of action in Candida albicans.群体感应分子法尼醇/高丝氨酸内酯和十二烷醇在白色念珠菌中通过不同的作用模式发挥作用。
Eukaryot Cell. 2011 Aug;10(8):1034-42. doi: 10.1128/EC.05060-11. Epub 2011 Jun 10.

调控白念珠菌 Ras1 的蛋白水解参与形态发生和群体感应调控。

Regulated proteolysis of Candida albicans Ras1 is involved in morphogenesis and quorum sensing regulation.

机构信息

Geisel School of Medicine at Dartmouth, Hanover, NH 03755, USA.

出版信息

Mol Microbiol. 2013 Jul;89(1):166-78. doi: 10.1111/mmi.12268. Epub 2013 Jun 10.

DOI:10.1111/mmi.12268
PMID:23692372
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3782256/
Abstract

In Candida albicans, a fungal pathogen, the small G-protein Ras1 regulates many important behaviors including white-opaque switching, biofilm formation, and the induction and maintenance of hyphal growth. Like other Ras proteins, Ras1 is activated upon guanine triphosphate binding, and its activity is further modulated by post-translational lipid modifications. Here, we report that the levels of membrane-associated, full-length Ras1 were higher in hyphae than in yeast, and that yeast contained a shorter, soluble Ras1 species that resulted from cleavage. Deletion of the putative cleavage site led to more rapid induction of hyphal growth and delayed hypha-to-yeast transitions. The cleaved Ras1 species was less able to activate its effector, adenylate cyclase (Cyr1), unless tethered to the membrane by a heterologous membrane-targeting domain. Ras1 cleavage was repressed by cAMP-signalling, indicating the presence of a positive feedback loop in which Cyr1 and cAMP influence Ras1. The C. albicans quorum sensing molecule farnesol, which inhibits Cyr1 and represses filamentation, caused an increase in the fraction of Ras1 in the cleaved form, particularly in nascent yeast formed from hyphae. This newly recognized mode of Ras regulation may control C. albicans Ras1 activity in important ways.

摘要

在真菌病原体白色念珠菌中,小 G 蛋白 Ras1 调节许多重要行为,包括白-暗转变、生物膜形成以及菌丝生长的诱导和维持。与其他 Ras 蛋白一样,Ras1 在结合鸟嘌呤三磷酸后被激活,其活性进一步受到翻译后脂质修饰的调节。在这里,我们报告说,与酵母相比,菌丝中膜相关的全长 Ras1 水平更高,并且酵母中存在一种较短的可溶性 Ras1 物种,这是由切割产生的。删除假定的切割位点导致菌丝生长更快诱导和菌丝向酵母转变延迟。被切割的 Ras1 物种激活其效应物腺苷酸环化酶(Cyr1)的能力较低,除非通过异源膜靶向结构域与膜结合。Ras1 切割受到 cAMP 信号的抑制,表明存在正反馈回路,其中 Cyr1 和 cAMP 影响 Ras1。白色念珠菌群体感应分子法尼醇抑制 Cyr1 并抑制菌丝形成,导致 Ras1 以切割形式的比例增加,尤其是从菌丝形成的新生酵母中。这种新发现的 Ras 调节模式可能以重要方式控制白色念珠菌 Ras1 活性。