Localization and RNA Binding of Mitochondrial Aminoacyl tRNA Synthetases

被引:12
作者
Garin, Shahar [1 ]
Levi, Ofri [1 ]
Cohen, Bar [1 ]
Golani-Armon, Adi [1 ]
Arava, Yoav S. [1 ]
机构
[1] Technion Israel Inst Technol, Fac Biol, IL-32000 Haifa, Israel
基金
以色列科学基金会;
关键词
aminoacyl tRNA synthetase; mitochondria; tRNA; mitochondria import; mitochondria targeting signal; RNA recognition; translation; MESSENGER-RNA; TRANSLATIONAL CONTROL; PROTEIN-SYNTHESIS; GENE ENCODES; SACCHAROMYCES-CEREVISIAE; SPLICING FACTOR; ATP SYNTHASE; N-TERMINI; YEAST; MECHANISMS;
D O I
10.3390/genes11101185
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Mitochondria contain a complete translation machinery that is used to translate its internally transcribed mRNAs. This machinery uses a distinct set of tRNAs that are charged with cognate amino acids inside the organelle. Interestingly, charging is executed by aminoacyl tRNA synthetases (aaRS) that are encoded by the nuclear genome, translated in the cytosol, and need to be imported into the mitochondria. Here, we review import mechanisms of these enzymes with emphasis on those that are localized to both mitochondria and cytosol. Furthermore, we describe RNA recognition features of these enzymes and their interaction with tRNA and non-tRNA molecules. The dual localization of mitochondria-destined aaRSs and their association with various RNA types impose diverse impacts on cellular physiology. Yet, the breadth and significance of these functions are not fully resolved. We highlight here possibilities for future explorations.
引用
收藏
页码:1 / 20
页数:20
相关论文
共 157 条
  • [71] Small but large enough: structural properties of armless mitochondrial tRNAs from the nematode Romanomermis culicivorax
    Juehling, Tina
    Duchardt-Ferner, Elke
    Bonin, Sonja
    Woehnert, Jens
    Puetz, Joern
    Florentz, Catherine
    Betat, Heike
    Sauter, Claude
    Moerl, Mario
    [J]. NUCLEIC ACIDS RESEARCH, 2018, 46 (17) : 9170 - 9180
  • [72] KAMPER U, 1992, MOL CELL BIOL, V12, P499
  • [73] Single translation-dual destination: mechanisms of dual protein targeting in eukaryotes
    Karniely, S
    Pines, O
    [J]. EMBO REPORTS, 2005, 6 (05) : 420 - 425
  • [74] Non-AUG translation: a new start for protein synthesis in eukaryotes
    Kearse, Michael G.
    Wilusz, Jeremy E.
    [J]. GENES & DEVELOPMENT, 2017, 31 (17) : 1717 - 1731
  • [75] THE NEUROSPORA MITOCHONDRIAL TYROSYL TRANSFER-RNA SYNTHETASE IS SUFFICIENT FOR GROUP-I INTRON SPLICING INVITRO AND USES THE CARBOXY-TERMINAL TRANSFER RNA-BINDING DOMAIN ALONG WITH OTHER REGIONS
    KITTLE, JD
    MOHR, G
    GIANELOS, JA
    WANG, H
    LAMBOWITZ, AM
    [J]. GENES & DEVELOPMENT, 1991, 5 (06) : 1009 - 1021
  • [76] Crystal Structure of Human Mitochondrial PheRS Complexed with tRNAPhe in the Active "Open" State
    Klipcan, Liron
    Moor, Nina
    Finarov, Igal
    Kessler, Naama
    Sukhanova, Maria
    Safro, Mark G.
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2012, 415 (03) : 527 - 537
  • [77] Relaxed sequence constraints favor mutational freedom in idiosyncratic metazoan mitochondrial tRNAs
    Kuhle, Bernhard
    Chihade, Joseph
    Schimmel, Paul
    [J]. NATURE COMMUNICATIONS, 2020, 11 (01)
  • [78] THE YEAST MITOCHONDRIAL LEUCYL-TRANSFER RNA-SYNTHETASE IS A SPLICING FACTOR FOR THE EXCISION OF SEVERAL GROUP-I INTRONS
    LABOUESSE, M
    [J]. MOLECULAR & GENERAL GENETICS, 1990, 224 (02): : 209 - 221
  • [79] Evolution of RNA-Protein Interactions: Non-Specific Binding Led to RNA Splicing Activity of Fungal Mitochondrial Tyrosyl-tRNA Synthetases
    Lamech, Lilian T.
    Mallam, Anna L.
    Lambowitz, Alan M.
    [J]. PLOS BIOLOGY, 2014, 12 (12):
  • [80] Mechanisms and Regulation of Alternative Pre-mRNA Splicing
    Lee, Yeon
    Rio, Donald C.
    [J]. ANNUAL REVIEW OF BIOCHEMISTRY, VOL 84, 2015, 84 : 291 - 323