RSM22, mtYsxC and PNKD-like proteins are required for mitochondrial translation in Trypanosoma brucei
Jazyk angličtina Země Nizozemsko Médium print-electronic
Typ dokumentu časopisecké články, Research Support, N.I.H., Extramural, práce podpořená grantem
Grantová podpora
R21 AI088292
NIAID NIH HHS - United States
PubMed
28089944
DOI
10.1016/j.mito.2017.01.003
PII: S1567-7249(16)30154-4
Knihovny.cz E-zdroje
- Klíčová slova
- LSU, Mitochondrial ribosome, PNKD, SSU, YihA, YsxC,
- MeSH
- mitochondriální proteiny genetika metabolismus MeSH
- proteosyntéza * MeSH
- protozoální proteiny genetika metabolismus MeSH
- RNA interference MeSH
- sekvenční homologie aminokyselin MeSH
- Trypanosoma brucei brucei genetika růst a vývoj MeSH
- umlčování genů MeSH
- výpočetní biologie MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Research Support, N.I.H., Extramural MeSH
- Názvy látek
- mitochondriální proteiny MeSH
- protozoální proteiny MeSH
Mitochondrial ribosomes evolved from prokaryotic ribosomes, with which they therefore share more common features than with their counterparts in the cytosol. Yet, mitochondrial ribosomes are highly diverse in structure and composition, having undergone considerable changes, including reduction of their RNA component and varying degree of acquisition of novel proteins in various phylogenetic lineages. Here, we present functional analysis of three putative mitochondrial ribosome-associated proteins (RSM22, mtYsxC and PNKD-like) in Trypanosoma brucei, originally identified by database mining. While in other systems the homologs of RSM22 are known as components of mitochondrial ribosomes, YsxC was linked with ribosomes only in bacteria. The PNKD-like protein shows similarity to a human protein, the defects of which cause PNKD (paroxysmal non-kinesigenic dyskinesia). Here we show that all three proteins are important for the growth of T. brucei. They play an important function in mitochondrial translation, as their ablation by RNAi rapidly and severely affected the de novo synthesis of mitochondrial proteins. Moreover, following the RNAi-mediated depletion of RSM22, structure of the small subunit of mitochondrial ribosome becomes severely compromised, suggesting a role of RSM22 in ribosomal assembly and/or stability.
Biology Centre Institute of Parasitology Czech Academy of Sciences České Budějovice Czech Republic
Department of Biology University of California Riverside CA USA
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