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Proteomics Uncovers Novel Components of an Interactive Protein Network Supporting RNA Export in Trypanosomes
AH. Inoue, PF. Domingues, M. Serpeloni, PM. Hiraiwa, NM. Vidal, ER. Butterfield, RC. Del Pino, A. Ludwig, C. Boehm, MC. Field, AR. Ávila
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články, práce podpořená grantem
Grantová podpora
Wellcome Trust - United Kingdom
MR/N010558/1
Medical Research Council - United Kingdom
204697/Z/16/Z
Wellcome Trust - United Kingdom
NLK
Directory of Open Access Journals
od 2021
Free Medical Journals
od 2002 do Před 1 rokem
Freely Accessible Science Journals
od 2002
PubMed Central
od 2008
Europe PubMed Central
od 2008 do Před 1 rokem
Open Access Digital Library
od 2002-01-01
ROAD: Directory of Open Access Scholarly Resources
od 2002
- MeSH
- aktivní transport - buněčné jádro MeSH
- proteomika * MeSH
- RNA MeSH
- sestřih RNA MeSH
- transport RNA MeSH
- Trypanosoma cruzi * MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
In trypanosomatids, transcription is polycistronic and all mRNAs are processed by trans-splicing, with export mediated by noncanonical mechanisms. Although mRNA export is central to gene regulation and expression, few orthologs of proteins involved in mRNA export in higher eukaryotes are detectable in trypanosome genomes, necessitating direct identification of protein components. We previously described conserved mRNA export pathway components in Trypanosoma cruzi, including orthologs of Sub2, a component of the TREX complex, and eIF4AIII (previously Hel45), a core component of the exon junction complex (EJC). Here, we searched for protein interactors of both proteins using cryomilling and mass spectrometry. Significant overlap between TcSub2 and TceIF4AIII-interacting protein cohorts suggests that both proteins associate with similar machinery. We identified several interactions with conserved core components of the EJC and multiple additional complexes, together with proteins specific to trypanosomatids. Additional immunoisolations of kinetoplastid-specific proteins both validated and extended the superinteractome, which is capable of supporting RNA processing from splicing through to nuclear export and cytoplasmic events. We also suggest that only proteomics is powerful enough to uncover the high connectivity between multiple aspects of mRNA metabolism and to uncover kinetoplastid-specific components that create a unique amalgam to support trypanosome mRNA maturation.
Biology Centre University of South Bohemia České Budějovice Czech Republic
Instituto Carlos Chagas FIOCRUZ Curitiba Paraná Brazil
School of Life Sciences University of Dundee Dundee Scotland UK
Citace poskytuje Crossref.org
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