Trypanosome RNA editing: the complexity of getting U in and taking U out

. 2016 Jan-Feb ; 7 (1) : 33-51. [epub] 20151102

Jazyk angličtina Země Spojené státy americké Médium print-electronic

Typ dokumentu časopisecké články, Research Support, N.I.H., Extramural, práce podpořená grantem, přehledy

Perzistentní odkaz   https://www.medvik.cz/link/pmid26522170

Grantová podpora
R01 AI061580 NIAID NIH HHS - United States

RNA editing, which adds sequence information to RNAs post-transcriptionally, is a widespread phenomenon throughout eukaryotes. The most complex form of this process is the uridine (U) insertion/deletion editing that occurs in the mitochondria of kinetoplastid protists. RNA editing in these flagellates is specified by trans-acting guide RNAs and entails the insertion of hundreds and deletion of dozens of U residues from mitochondrial RNAs to produce mature, translatable mRNAs. An emerging model indicates that the machinery required for trypanosome RNA editing is much more complicated than previously appreciated. A family of RNA editing core complexes (RECCs), which contain the required enzymes and several structural proteins, catalyze cycles of U insertion and deletion. A second, dynamic multiprotein complex, the Mitochondrial RNA Binding 1 (MRB1) complex, has recently come to light as another essential component of the trypanosome RNA editing machinery. MRB1 likely serves as the platform for kinetoplastid RNA editing, and plays critical roles in RNA utilization and editing processivity. MRB1 also appears to act as a hub for coordination of RNA editing with additional mitochondrial RNA processing events. This review highlights the current knowledge regarding the complex molecular machinery involved in trypanosome RNA editing. WIREs RNA 2016, 7:33-51. doi: 10.1002/wrna.1313 For further resources related to this article, please visit the WIREs website.

Zobrazit více v PubMed

Gott JM, Emeson RB. Functions and mechanisms of RNA editing. Annu Rev Genet. 2000;34:499–531. PubMed

Benne R, Van den Burg J, Brakenhoff JP, Sloof P, Van Boom JH, Tromp MC. Major transcript of the frameshifted coxII gene from trypanosome mitochondria contains four nucleotides that are not encoded in the DNA. Cell. 1986;46:819–826. PubMed

Powell LM, Wallis SC, Pease RJ, Edwards YH, Knott TJ, Scott J. A novel form of tissue-specific RNA processing produces apolipoprotein-B48 in intestine. Cell. 1987;50:831–840. PubMed

Maier RM, Zeltz P, Kossel H, Bonnard G, Gualberto JM, Grienenberger JM. RNA editing in plant mitochondria and chloroplasts. Plant Mol Biol. 1996;32:343–365. PubMed

Maas S, Rich A, Nishikura K. A-to-I RNA editing: recent news and residual mysteries. J Biol Chem. 2003;278:1391–1394. PubMed

Bazak L, Haviv A, Barak M, Jacob-Hirsch J, Deng P, Zhang R, Isaacs FJ, Rechavi G, Li JB, Eisenberg E, et al. A-to-I RNA editing occurs at over a hundred million genomic sites, located in a majority of human genes. Genome Res. 2014;24:365–376. PubMed PMC

Gott JM, editor. Mechanisms and Functions of RNA editing in Physarum polycephalum. Caister Academic Press; Norfolk, U.K.: 2013. pp. 17–40.

Jackman JE, Alfonzo JD. Transfer RNA modifications: nature's combinatorial chemistry playground. Wiley Interdiscip Rev RNA. 2013;4:35–48. PubMed PMC

Valach M, Moreira S, Kiethega GN, Burger G. Trans-splicing and RNA editing of LSU rRNA in Diplonema mitochondria. Nucleic Acids Res. 2014;42:2660–2672. PubMed PMC

Stefl R, Oberstrass FC, Hood JL, Jourdan M, Zimmermann M, Skrisovska L, Maris C, Peng L, Hofr C, Emeson RB, et al. The solution structure of the ADAR2 dsRBM-RNA complex reveals a sequence-specific readout of the minor groove. Cell. 2010;143:225–237. PubMed PMC

Maris C, Masse J, Chester A, Navaratnam N, Allain FH. NMR structure of the apoB mRNA stem-loop and its interaction with the C to U editing APOBEC1 complementary factor. RNA. 2005;11:173–186. PubMed PMC

Simpson L, Aphasizhev R, Lukes J, Cruz-Reyes J. Guide to the nomenclature of kinetoplastid RNA editing: a proposal. Protist. 2010;161:2–6. PubMed PMC

Stuart KD, Schnaufer A, Ernst NL, Panigrahi AK. Complex management: RNA editing in trypanosomes. Trends Biochem Sci. 2005;30:97–105. PubMed

Barnes RL, Shi H, Kolev NG, Tschudi C, Ullu E. Comparative genomics reveals two novel RNAi factors in Trypanosoma brucei and provides insight into the core machinery. PLoS Pathog. 2012;8:e1002678. PubMed PMC

Jensen RE, Englund PT. Network news: the replication of kinetoplast DNA. Annu Rev Microbiol. 2012;66:473–491. PubMed

Feagin JE, Abraham JM, Stuart K. Extensive editing of the cytochrome c oxidase III transcript in Trypanosoma brucei. Cell. 1988;53:413–422. PubMed

Blum B, Bakalara N, Simpson L. A model for RNA editing in kinetoplastid mitochondria: “guide” RNA molecules transcribed from maxicircle DNA provide the edited information. Cell. 1990;60:189–198. PubMed

Seiwert SD, Stuart K. RNA editing: transfer of genetic information from gRNA to precursor mRNA in vitro. Science. 1994;266:114–117. PubMed

Golden DE, Hajduk SL. The 3'-untranslated region of cytochrome oxidase II mRNA functions in RNA editing of African trypanosomes exclusively as a cis guide RNA. RNA. 2005;11:29–37. PubMed PMC

Koslowsky D, Sun Y, Hindenach J, Theisen T, Lucas J. The insect-phase gRNA transcriptome in Trypanosoma brucei. Nucleic Acids Res. 2014;42:1873–1886. PubMed PMC

Koslowsky DJ, Reifur L, Yu LE, Chen W. Evidence for U-tail stabilization of gRNA/mRNA interactions in kinetoplastid RNA editing. RNA Biol. 2004;1:28–34. PubMed PMC

Rusche LN, Cruz-Reyes J, Piller KJ, Sollner-Webb B. Purification of a functional enzymatic editing complex from Trypanosoma brucei mitochondria. EMBO J. 1997;16:4069–4081. PubMed PMC

Panigrahi AK, Allen TE, Stuart K, Haynes PA, Gygi SP. Mass spectrometric analysis of the editosome and other multiprotein complexes in Trypanosoma brucei. J Am Soc Mass Spectrom. 2003;14:728–735. PubMed

Panigrahi AK, Schnaufer A, Ernst NL, Wang B, Carmean N, Salavati R, Stuart K. Identification of novel components of Trypanosoma brucei editosomes. RNA. 2003;9:484–492. PubMed PMC

Carnes J, Trotter JR, Peltan A, Fleck M, Stuart K. RNA editing in Trypanosoma brucei requires three different editosomes. Mol Cell Biol. 2008;28:122–130. PubMed PMC

Carnes J, Trotter JR, Ernst NL, Steinberg A, Stuart K. An essential RNase III insertion editing endonuclease in Trypanosoma brucei. Proc Natl Acad Sci U S A. 2005;102:16614–16619. PubMed PMC

Trotter JR, Ernst NL, Carnes J, Panicucci B, Stuart K. A deletion site editing endonuclease in Trypanosoma brucei. Mol Cell. 2005;20:403–412. PubMed

Ernst NL, Panicucci B, Igo RP, Jr., Panigrahi AK, Salavati R, Stuart K. TbMP57 is a 3' terminal uridylyl transferase (TUTase) of the Trypanosoma brucei editosome. Mol Cell. 2003;11:1525–1536. PubMed

McManus MT, Shimamura M, Grams J, Hajduk SL. Identification of candidate mitochondrial RNA editing ligases from Trypanosoma brucei. RNA. 2001;7:167–175. PubMed PMC

Aphasizhev R, Aphasizheva I, Nelson RE, Gao G, Simpson AM, Kang X, Falick AM, Sbicego S, Simpson L. Isolation of a U-insertion/deletion editing complex from Leishmania tarentolae mitochondria. EMBO J. 2003;22:913–924. PubMed PMC

Rusche LN, Huang CE, Piller KJ, Hemann M, Wirtz E, Sollner-Webb B. The two RNA ligases of the Trypanosoma brucei RNA editing complex: cloning the essential band IV gene and identifying the band V gene. Mol Cell Biol. 2001;21:979–989. PubMed PMC

Cruz-Reyes J, Zhelonkina AG, Huang CE, Sollner-Webb B. Distinct functions of two RNA ligases in active Trypanosoma brucei RNA editing complexes. Mol Cell Biol. 2002;22:4652–4660. PubMed PMC

Li F, Herrera J, Zhou S, Maslov DA, Simpson L. Trypanosome REH1 is an RNA helicase involved with the 3'-5' polarity of multiple gRNA-guided uridine insertion/deletion RNA editing. Proc Natl Acad Sci U S A. 2011;108:3542–3547. PubMed PMC

Koslowsky DJ, Bhat GJ, Read LK, Stuart K. Cycles of progressive realignment of gRNA with mRNA in RNA editing. Cell. 1991;67:537–546. PubMed

Schnaufer A, Ernst NL, Palazzo SS, O'Rear J, Salavati R, Stuart K. Separate insertion and deletion subcomplexes of the Trypanosoma brucei RNA editing complex. Mol Cell. 2003;12:307–319. PubMed

Ernst NL, Panicucci B, Carnes J, Stuart K. Differential functions of two editosome exoUases in Trypanosoma brucei. RNA. 2009;15:947–957. PubMed PMC

Park YJ, Budiarto T, Wu M, Pardon E, Steyaert J, Hol WG. The structure of the C-terminal domain of the largest editosome interaction protein and its role in promoting RNA binding by RNA-editing ligase L2. Nucleic Acids Res. 2012;40:6966–6977. PubMed PMC

Gao G, Rogers K, Li F, Guo Q, Osato D, Zhou SX, Falick AM, Simpson L. Uridine insertion/deletion RNA editing in Trypanosomatids: specific stimulation in vitro of Leishmania tarentolae REL1 RNA ligase activity by the MP63 zinc finger protein. Protist. 2010;161:489–496. PubMed PMC

Schnaufer A, Wu M, Park YJ, Nakai T, Deng J, Proff R, Hol WG, Stuart KD. A protein-protein interaction map of trypanosome ~20S editosomes. J Biol Chem. 2010;285:5282–5295. PubMed PMC

Panigrahi AK, Ernst NL, Domingo GJ, Fleck M, Salavati R, Stuart KD. Compositionally and functionally distinct editosomes in Trypanosoma brucei. RNA. 2006;12:1038–1049. PubMed PMC

Carnes J, Zelaya Soares C, Wickham C, Stuart K. Endonuclease associations with three distinct editosomes in Trypanosoma brucei. J Biol Chem. 2011 PubMed PMC

Carnes J, Lewis Ernst N, Wickham C, Panicucci B, Stuart K. KREX2 is not essential for either procyclic or bloodstream form Trypanosoma brucei. PLoS One. 2012;7:e33405. PubMed PMC

Rogers K, Gao G, Simpson L. Uridylate-specific 3' 5'-exoribonucleases involved in uridylate-deletion RNA editing in trypanosomatid mitochondria. J Biol Chem. 2007;282:29073–29080. PubMed

Guo X, Carnes J, Ernst NL, Winkler M, Stuart K. KREPB6, KREPB7, and KREPB8 are important for editing endonuclease function in Trypanosoma brucei. RNA. 2012;18:308–320. PubMed PMC

MacRae IJ, Doudna JA. Ribonuclease revisited: structural insights into ribonuclease III family enzymes. Curr Opin Struct Biol. 2007;17:138–145. PubMed

Alatortsev VS, Cruz-Reyes J, Zhelonkina AG, Sollner-Webb B. Trypanosoma brucei RNA editing: coupled cycles of U deletion reveal processive activity of the editing complex. Mol Cell Biol. 2008;28:2437–2445. PubMed PMC

Hashimi H, Zimmer SL, Ammerman ML, Read LK, Lukes J. Dual core processing: MRB1 is an emerging kinetoplast RNA editing complex. Trends Parasitol. 2013;29:91–99. PubMed PMC

Aphasizheva I, Zhang L, Wang X, Kaake RM, Huang L, Monti S, Aphasizhev R. RNA binding and core complexes constitute the U-insertion/deletion editosome. Mol Cell Biol. 2014;34:4329–4342. PubMed PMC

Ammerman ML, Presnyak V, Fisk JC, Foda BM, Read LK. TbRGG2 facilitates kinetoplastid RNA editing initiation and progression through intrinsic pause sites. RNA. 2010;16:2239–2251. PubMed PMC

Madina BR, Kumar V, Metz R, Mooers BH, Bundschuh R, Cruz-Reyes J. Native mitochondrial RNA-binding complexes in kinetoplastid RNA editing differ in guide RNA composition. RNA. 2014;20:1142–1152. PubMed PMC

Weng J, Aphasizheva I, Etheridge RD, Huang L, Wang X, Falick AM, Aphasizhev R. Guide RNA-binding complex from mitochondria of trypanosomatids. Mol Cell. 2008;32:198–209. PubMed PMC

Ammerman ML, Downey KM, Hashimi H, Fisk JC, Tomasello DL, Faktorova D, Kafkova L, King T, Lukes J, Read LK. Architecture of the trypanosome RNA editing accessory complex, MRB1. Nucleic Acids Res. 2012;40:5637–5650. PubMed PMC

Panigrahi AK, Zikova A, Dalley RA, Acestor N, Ogata Y, Anupama A, Myler PJ, Stuart KD. Mitochondrial complexes in Trypanosoma brucei: a novel complex and a unique oxidoreductase complex. Mol Cell Proteomics. 2008;7:534–545. PubMed

Hashimi H, Zikova A, Panigrahi AK, Stuart KD, Lukes J. TbRGG1, an essential protein involved in kinetoplastid RNA metabolism that is associated with a novel multiprotein complex. RNA. 2008;14:970–980. PubMed PMC

Vanhamme L, Perez-Morga D, Marchal C, Speijer D, Lambert L, Geuskens M, Alexandre S, Ismaili N, Goringer U, Benne R, et al. Trypanosoma brucei TBRGG1, a mitochondrial oligo(U)-binding protein that co-localizes with an in vitro RNA editing activity. J Biol Chem. 1998;273:21825–21833. PubMed

Vondruskova E, van den Burg J, Zikova A, Ernst NL, Stuart K, Benne R, Lukes J. RNA interference analyses suggest a transcript-specific regulatory role for mitochondrial RNA-binding proteins MRP1 and MRP2 in RNA editing and other RNA processing in Trypanosoma brucei. J Biol Chem. 2005;280:2429–2438. PubMed

Aphasizhev R, Aphasizheva I, Nelson RE, Simpson L. A 100-kD complex of two RNA-binding proteins from mitochondria of Leishmania tarentolae catalyzes RNA annealing and interacts with several RNA editing components. RNA. 2003;9:62–76. PubMed PMC

Acestor N, Panigrahi AK, Carnes J, Zikova A, Stuart KD. The MRB1 complex functions in kinetoplastid RNA processing. RNA. 2009;15:277–286. PubMed PMC

Madina BR, Kumar V, Mooers BH, Cruz-Reyes J. Native variants of the MRB1 complex exhibit specialized functions in kinetoplastid RNA editing. PLoS One. 2015;10:e0123441. PubMed PMC

Hashimi H, Cicova Z, Novotna L, Wen YZ, Lukes J. Kinetoplastid guide RNA biogenesis is dependent on subunits of the mitochondrial RNA binding complex 1 and mitochondrial RNA polymerase. RNA. 2009;15:588–599. PubMed PMC

Aphasizheva I, Aphasizhev R. RET1-catalyzed uridylylation shapes the mitochondrial transcriptome in Trypanosoma brucei. Mol Cell Biol. 2010;30:1555–1567. PubMed PMC

Tanifuji G, Kim E, Onodera NT, Gibeault R, Dlutek M, Cawthorn RJ, Fiala I, Lukes J, Greenwood SJ, Archibald JM. Genomic characterization of Neoparamoeba pemaquidensis (Amoebozoa) and its kinetoplastid endosymbiont. Eukaryot Cell. 2011;10:1143–1146. PubMed PMC

Fisk JC, Ammerman ML, Presnyak V, Read LK. TbRGG2, an essential RNA editing accessory factor in two Trypanosoma brucei life cycle stages. J Biol Chem. 2008;283:23016–23025. PubMed PMC

Jackson AP. Evolutionary consequences of a large duplication event in Trypanosoma brucei: chromosomes 4 and 8 are partial duplicons. BMC Genomics. 2007;8:432. PubMed PMC

Xu W, Kimelman D. Mechanistic insights from structural studies of beta-catenin and its binding partners. J Cell Sci. 2007;120:3337–3344. PubMed

McAdams NM, Ammerman ML, Nanduri J, Lott K, Fisk JC, Read LK. An arginine-glycine-rich RNA binding protein impacts the abundance of specific mRNAs in the mitochondria of Trypanosoma brucei. Eukaryot Cell. 2015;14:149–157. PubMed PMC

Shaw PL, McAdams NM, Hast MA, Ammerman ML, Read LK, Schumacher MA. Structures of the T. brucei kRNA editing factor MRB1590 reveal unique RNA-binding pore motif contained within an ABC-ATPase fold. Nucleic Acids Res. 2015 PubMed PMC

Ammerman ML, Hashimi H, Novotna L, Cicova Z, McEvoy SM, Lukes J, Read LK. MRB3010 is a core component of the MRB1 complex that facilitates an early step of the kinetoplastid RNA editing process. RNA. 2011;17:865–877. PubMed PMC

Kafkova L, Ammerman ML, Faktorova D, Fisk JC, Zimmer SL, Sobotka R, Read LK, Lukes J, Hashimi H. Functional characterization of two paralogs that are novel RNA binding proteins influencing mitochondrial transcripts of Trypanosoma brucei. RNA. 2012;18:1846–1861. PubMed PMC

Huang Z, Faktorova D, Krizova A, Kafkova L, Read LK, Lukes J, Hashimi H. Integrity of the core mitochondrial RNA binidng complex 1 is vital for trypanosome RNA editing. RNA. 2015 In press. PubMed PMC

Ammerman ML, Tomasello DL, Faktorova D, Kafkova L, Hashimi H, Lukes J, Read LK. A core MRB1 complex component is indispensable for RNA editing in insect and human infective stages of Trypanosoma brucei. PLoS One. 2013;8:e78015. PubMed PMC

Carnes J, Lerch M, Kurtz I, Stuart K. Bloodstream form Trypanosoma brucei do not require mRPN1 for gRNA processing. RNA. 2015;21:28–35. PubMed PMC

Madina BR, Kuppan G, Vashisht AA, Liang YH, Downey KM, Wohlschlegel JA, Ji X, Sze SH, Sacchettini JC, Read LK, et al. Guide RNA biogenesis involves a novel RNase III family endoribonuclease in Trypanosoma brucei. RNA. 2011;17:1821–1830. PubMed PMC

Foda BM, Downey KM, Fisk JC, Read LK. Multifunctional G-rich and RRM-containing domains of TbRGG2 perform separate yet essential functions in trypanosome RNA editing. Eukaryot Cell. 2012;11:1119–1131. PubMed PMC

Ochsenreiter T, Cipriano M, Hajduk SL. KISS: the kinetoplastid RNA editing sequence search tool. RNA. 2007;13:1–4. PubMed PMC

Missel A, Souza AE, Norskau G, Goringer HU. Disruption of a gene encoding a novel mitochondrial DEAD-box protein in Trypanosoma brucei affects edited mRNAs. Mol Cell Biol. 1997;17:4895–4903. PubMed PMC

Missel A, Goringer HU. Trypanosoma brucei mitochondria contain RNA helicase activity. Nucleic Acids Res. 1994;22:4050–4056. PubMed PMC

Hernandez A, Madina BR, Ro K, Wohlschlegel JA, Willard B, Kinter MT, Cruz-Reyes J. REH2 RNA helicase in kinetoplastid mitochondria: ribonucleoprotein complexes and essential motifs for unwinding and guide RNA (gRNA) binding. J Biol Chem. 2010;285:1220–1228. PubMed PMC

McLennan AG. The Nudix hydrolase superfamily. Cell Mol Life Sci. 2006;63:123–143. PubMed PMC

Bhat GJ, Souza AE, Feagin JE, Stuart K. Transcript-specific developmental regulation of polyadenylation in Trypanosoma brucei mitochondria. Mol Biochem Parasitol. 1992;52:231–240. PubMed

Zimmer SL, McEvoy SM, Menon S, Read LK. Additive and transcript-specific effects of KPAP1 and TbRND activities on 3' non-encoded tail characteristics and mRNA stability in Trypanosoma brucei. PLoS One. 2012;7:e37639. PubMed PMC

Aphasizheva I, Maslov D, Wang X, Huang L, Aphasizhev R. Pentatricopeptide repeat proteins stimulate mRNA adenylation/uridylation to activate mitochondrial translation in trypanosomes. Mol Cell. 2011;42:106–117. PubMed PMC

Etheridge RD, Aphasizheva I, Gershon PD, Aphasizhev R. 3' adenylation determines mRNA abundance and monitors completion of RNA editing in T. brucei mitochondria. EMBO J. 2008;27:1596–1608. PubMed PMC

Kao CY, Read LK. Opposing effects of polyadenylation on the stability of edited and unedited mitochondrial RNAs in Trypanosoma brucei. Mol Cell Biol. 2005;25:1634–1644. PubMed PMC

Adl SM, Simpson AG, Lane CE, Lukes J, Bass D, Bowser SS, Brown MW, Burki F, Dunthorn M, Hampl V, et al. The revised classification of eukaryotes. J Eukaryot Microbiol. 2012;59:429–493. PubMed PMC

Nejnovějších 20 citací...

Zobrazit více v
Medvik | PubMed

How Binding Site Flexibility Promotes RNA Scanning by TbRGG2 RRM: A Molecular Dynamics Simulation Study

. 2025 Jan 27 ; 65 (2) : 896-907. [epub] 20250113

Pam16 and Pam18 were repurposed during Trypanosoma brucei evolution to regulate the replication of mitochondrial DNA

. 2024 Aug ; 22 (8) : e3002449. [epub] 20240815

Blastocrithidia nonstop mitochondrial genome and its expression are remarkably insulated from nuclear codon reassignment

. 2024 Apr 24 ; 52 (7) : 3870-3885.

Kinetoplast Genome of Leishmania spp. Is under Strong Purifying Selection

. 2023 Jul 27 ; 8 (8) : . [epub] 20230727

Complete minicircle genome of Leptomonas pyrrhocoris reveals sources of its non-canonical mitochondrial RNA editing events

. 2021 Apr 06 ; 49 (6) : 3354-3370.

Developmental regulation of edited CYb and COIII mitochondrial mRNAs is achieved by distinct mechanisms in Trypanosoma brucei

. 2020 Sep 04 ; 48 (15) : 8704-8723.

A Uniquely Complex Mitochondrial Proteome from Euglena gracilis

. 2020 Aug 01 ; 37 (8) : 2173-2191.

Sulfonated inhibitors of the RNA editing ligases validate the essential role of the MRP1/2 proteins in kinetoplastid RNA editing

. 2020 Jul ; 26 (7) : 827-835. [epub] 20200410

ZapE/Afg1 interacts with Oxa1 and its depletion causes a multifaceted phenotype

. 2020 ; 15 (6) : e0234918. [epub] 20200624

Lexis and Grammar of Mitochondrial RNA Processing in Trypanosomes

. 2020 Apr ; 36 (4) : 337-355. [epub] 20200228

Massive mitochondrial DNA content in diplonemid and kinetoplastid protists

. 2018 Dec ; 70 (12) : 1267-1274. [epub] 20181006

Combinatorial interplay of RNA-binding proteins tunes levels of mitochondrial mRNA in trypanosomes

. 2018 Nov ; 24 (11) : 1594-1606. [epub] 20180817

Cultured bloodstream Trypanosoma brucei adapt to life without mitochondrial translation release factor 1

. 2018 Mar 23 ; 8 (1) : 5135. [epub] 20180323

Trypanosomatid mitochondrial RNA editing: dramatically complex transcript repertoires revealed with a dedicated mapping tool

. 2018 Jan 25 ; 46 (2) : 765-781.

A paradigm shift: The mitoproteomes of procyclic and bloodstream Trypanosoma brucei are comparably complex

. 2017 Dec ; 13 (12) : e1006679. [epub] 20171221

A leucine aminopeptidase is involved in kinetoplast DNA segregation in Trypanosoma brucei

. 2017 Apr ; 13 (4) : e1006310. [epub] 20170407

Differential Binding of Mitochondrial Transcripts by MRB8170 and MRB4160 Regulates Distinct Editing Fates of Mitochondrial mRNA in Trypanosomes

. 2017 Jan 31 ; 8 (1) : . [epub] 20170131

Post-transcriptional mending of gene sequences: Looking under the hood of mitochondrial gene expression in diplonemids

. 2016 Dec ; 13 (12) : 1204-1211. [epub] 20161007

Trypanosome Mitochondrial Translation and Tetracycline: No Sweat about Tet

. 2016 Apr ; 12 (4) : e1005492. [epub] 20160421

From simple to supercomplex: mitochondrial genomes of euglenozoan protists

. 2016 ; 5 () : . [epub] 20160323

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...