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The Effector Domain Region of the Vibrio vulnificus MARTX Toxin Confers Biphasic Epithelial Barrier Disruption and Is Essential for Systemic Spread from the Intestine.创伤弧菌MARTX毒素的效应结构域区域导致双相上皮屏障破坏,并且对于从肠道的全身扩散至关重要。
PLoS Pathog. 2017 Jan 6;13(1):e1006119. doi: 10.1371/journal.ppat.1006119. eCollection 2017 Jan.
2
RAS isoforms and mutations in cancer at a glance.癌症中的RAS亚型与突变一览。
J Cell Sci. 2016 Apr 1;129(7):1287-92. doi: 10.1242/jcs.182873. Epub 2016 Mar 16.
3
MARTX effector cross kingdom activation by Golgi-associated ADP-ribosylation factors.高尔基体相关ADP-核糖基化因子介导的MARTX效应蛋白的跨物种激活作用
Cell Microbiol. 2016 Aug;18(8):1078-93. doi: 10.1111/cmi.12568. Epub 2016 Feb 19.
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The Makes Caterpillars Floppy (MCF)-Like Domain of Vibrio vulnificus Induces Mitochondrion-Mediated Apoptosis.创伤弧菌 MCF 样结构域诱导线粒体介导的细胞凋亡
Infect Immun. 2015 Nov;83(11):4392-403. doi: 10.1128/IAI.00570-15. Epub 2015 Sep 8.
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Trends Cell Biol. 2015 Sep;25(9):545-55. doi: 10.1016/j.tcb.2015.06.002. Epub 2015 Jul 6.
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8
Site-specific processing of Ras and Rap1 Switch I by a MARTX toxin effector domain.一种MARTX毒素效应结构域对Ras和Rap1开关I进行位点特异性加工。
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Allosteric effects of the oncogenic RasQ61L mutant on Raf-RBD.致癌性RasQ61L突变体对Raf-RBD的变构效应。
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10
Cytotoxicity of the Vibrio vulnificus MARTX toxin effector DUF5 is linked to the C2A subdomain.创伤弧菌MARTX毒素效应器DUF5的细胞毒性与C2A亚结构域相关。
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MARTX Ras/Rap1特异性内肽酶的底物识别

Substrate Recognition of MARTX Ras/Rap1-Specific Endopeptidase.

作者信息

Biancucci Marco, Rabideau Amy E, Lu Zeyu, Loftis Alex R, Pentelute Bradley L, Satchell Karla J F

机构信息

Department of Microbiology-Immunology, Northwestern University Feinberg School of Medicine , Chicago, Illinois 60611, United States.

Department of Chemistry, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.

出版信息

Biochemistry. 2017 May 30;56(21):2747-2757. doi: 10.1021/acs.biochem.7b00246. Epub 2017 May 11.

DOI:10.1021/acs.biochem.7b00246
PMID:28459538
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5626579/
Abstract

Ras/Rap1-specific endopeptidase (RRSP) is a cytotoxic effector domain of the multifunctional autoprocessing repeats-in-toxin (MARTX) toxin of highly virulent strains of Vibrio vulnificus. RRSP blocks RAS-MAPK kinase signaling by cleaving Ras and Rap1 within the switch I region between Y32 and D33. Although the RRSP processing site is highly conserved among small GTPases, only Ras and Rap1 have been identified as proteolytic substrates. Here we report that residues Y32 and D33 at the scissile bond play an important role in RRSP substrate recognition, while the nucleotide state of Ras has an only minimal effect. In addition, substrate specificity is generated by residues across the entire switch I region. Indeed, swapping the Ras switch I region into either RalA or RhoA, GTPases that are not recognized by RRSP, generated chimeras that are substrates of RRSP. However, a difference in the processing efficiency of Ras switch I in the context of Ras, RalA, or RhoA indicates that protein regions outside Ras switch I also contribute to efficient RRSP substrate recognition. Moreover, we show that synthetic peptides corresponding to the Ras and Rap1, but not RalA, switch I regions are cleaved by RRSP, demonstrating sequence-specific substrate recognition. In conclusion, this work demonstrates that the GTPase recognition of RRSP is independent of the nucleotide state and is mainly driven by the Ras and Rap1 switch I loop and also influenced by additional protein-protein interactions, increasing the substrate specificity of RRSP.

摘要

Ras/Rap1特异性内肽酶(RRSP)是创伤弧菌高毒力菌株多功能自加工重复毒素(MARTX毒素)的细胞毒性效应结构域。RRSP通过在Y32和D33之间的开关I区域内切割Ras和Rap1来阻断RAS-MAPK激酶信号传导。尽管RRSP的加工位点在小GTP酶中高度保守,但仅Ras和Rap1被鉴定为蛋白水解底物。在此我们报告,切割键处的Y32和D33残基在RRSP底物识别中起重要作用,而Ras的核苷酸状态影响极小。此外,底物特异性由整个开关I区域的残基产生。确实,将Ras开关I区域交换到RRSP无法识别的RalA或RhoA这两种GTP酶中,产生了RRSP的底物嵌合体。然而,Ras开关I在Ras、RalA或RhoA背景下加工效率的差异表明,Ras开关I区域之外的蛋白质区域也有助于RRSP有效识别底物。此外,我们表明,与Ras和Rap1而非RalA开关I区域相对应的合成肽被RRSP切割,证明了序列特异性底物识别。总之,这项工作表明,RRSP对GTP酶的识别独立于核苷酸状态,主要由Ras和Rap1开关I环驱动,也受其他蛋白质-蛋白质相互作用的影响,从而提高了RRSP的底物特异性。