tL(CAA)M Literature Guide Help

tL(CAA)M - Additional Literature (27)

ReferenceOther Genes Addressed
Qi X, et al.  (2012) Retrotransposon profiling of RNA polymerase III initiation sites. Genome Res 22(4):681-92
Karkusiewicz I, et al.  (2011) Maf1 protein, repressor of RNA polymerase III, indirectly affects tRNA processing. J Biol Chem 286(45):39478-88
Yukawa Y, et al.  (2011) A common sequence motif involved in selection of transcription start sites of Arabidopsis and budding yeast tRNA genes. Genomics 97(3):166-72
Nguyen VC, et al.  (2010) Replication stress checkpoint signaling controls tRNA gene transcription. Nat Struct Mol Biol 17(8):976-81
Ouameur AA, et al.  (2010) Probing tRNA interaction with biogenic polyamines. RNA 16(10):1968-79
Wang X, et al.  (2009) Mutation in MTO1 involved in tRNA modification impairs mitochondrial RNA metabolism in the yeast Saccharomyces cerevisiae. Mitochondrion 9(3):180-5
Zaborske JM, et al.  (2009) Genome-wide Analysis of tRNA Charging and Activation of the eIF2 Kinase Gcn2p. J Biol Chem 284(37):25254-67
Copela LA, et al.  (2008) Competition between the Rex1 exonuclease and the La protein affects both Trf4p-mediated RNA quality control and pre-tRNA maturation. RNA 14(6):1214-27
Haeusler RA, et al.  (2008) Clustering of yeast tRNA genes is mediated by specific association of condensin with tRNA gene transcription complexes. Genes Dev 22(16):2204-14
Thompson DM, et al.  (2008) tRNA cleavage is a conserved response to oxidative stress in eukaryotes. RNA 14(10):2095-103
Ciesla M, et al.  (2007) Maf1 Is Involved in Coupling Carbon Metabolism to RNA Polymerase III Transcription. Mol Cell Biol 27(21):7693-702
Jako E, et al.  (2007) In silico detection of tRNA sequence features characteristic to aminoacyl-tRNA synthetase class membership. Nucleic Acids Res 35(16):5593-609
Wang X, et al.  (2007) Deletion of the MTO2 gene related to tRNA modification causes a failure in mitochondrial RNA metabolism in the yeast Saccharomyces cerevisiae. FEBS Lett 581(22):4228-34
Whitney ML, et al.  (2007) Rapid and reversible nuclear accumulation of cytoplasmic tRNA in response to nutrient availability. Mol Biol Cell 18(7):2678-86
Yoshihisa T, et al.  (2007) Cytoplasmic splicing of tRNA in Saccharomyces cerevisiae. Genes Cells 12(3):285-97
Goodenbour JM and Pan T  (2006) Diversity of tRNA genes in eukaryotes. Nucleic Acids Res 34(21):6137-46
Kassavetis GA and Steiner DF  (2006) Nhp6 is a transcriptional initiation fidelity factor for RNA polymerase III transcription in vitro and in vivo. J Biol Chem 281(11):7445-51
Marck C, et al.  (2006) The RNA polymerase III-dependent family of genes in hemiascomycetes: comparative RNomics, decoding strategies, transcription and evolutionary implications. Nucleic Acids Res 34(6):1816-35
Fan X, et al.  (2005) Distinct transcriptional responses of RNA polymerases I, II and III to aptamers that bind TBP. Nucleic Acids Res 33(3):838-45
Giuliodori S, et al.  (2003) A composite upstream sequence motif potentiates tRNA gene transcription in yeast. J Mol Biol 333(1):1-20
Thompson M, et al.  (2003) Nucleolar clustering of dispersed tRNA genes. Science 302(5649):1399-401
Yoshihisa T, et al.  (2003) Possibility of cytoplasmic pre-tRNA splicing: the yeast tRNA splicing endonuclease mainly localizes on the mitochondria. Mol Biol Cell 14(8):3266-79
Ursic D, et al.  (1997) The yeast SEN1 gene is required for the processing of diverse RNA classes. Nucleic Acids Res 25(23):4778-85
Soma A, et al.  (1996) The anticodon loop is a major identity determinant of Saccharomyces cerevisiae tRNA(Leu). J Mol Biol 263(5):707-14
Ho CK, et al.  (1990) Accumulation of pre-tRNA splicing '2/3' intermediates in a Saccharomyces cerevisiae mutant. EMBO J 9(4):1245-52
Stillman DJ, et al.  (1984) Correlations between transcription of a yeast tRNA gene and transcription factor-DNA interactions. J Biol Chem 259(12):7955-62
Knapp G, et al.  (1978) Transcription and processing of intervening sequences in yeast tRNA genes. Cell 14(2):221-36