RDN37-2 Literature Guide Help

Other names published for RDN37-2: RDN37

RDN37-2 - All Curated References (108)

ReferenceOther Genes Addressed
Leger-Silvestre I, et al.  (2005) Specific Role for Yeast Homologs of the Diamond Blackfan Anemia-associated Rps19 Protein in Ribosome Synthesis. J Biol Chem 280(46):38177-85
Bouchoux C, et al.  (2004) CTD kinase I is involved in RNA polymerase I transcription. Nucleic Acids Res 32(19):5851-60
Dez C and Tollervey D  (2004) Ribosome synthesis meets the cell cycle. Curr Opin Microbiol 7(6):631-7
Gallagher JE, et al.  (2004) RNA polymerase I transcription and pre-rRNA processing are linked by specific SSU processome components. Genes Dev 18(20):2506-17
Nazar RN  (2004) Ribosomal RNA processing and ribosome biogenesis in eukaryotes. IUBMB Life 56(8):457-65
Bitterman KJ, et al.  (2003) Longevity regulation in Saccharomyces cerevisiae: linking metabolism, genome stability, and heterochromatin. Microbiol Mol Biol Rev 67(3):376-99, table of contents
Cioci F, et al.  (2003) Silencing in yeast rDNA chromatin: reciprocal relationship in gene expression between RNA polymerase I and II. Mol Cell 12(1):135-45
Peng WT, et al.  (2003) A panoramic view of yeast noncoding RNA processing. Cell 113(7):919-33
Conconi A, et al.  (2002) Transcription-coupled repair in RNA polymerase I-transcribed genes of yeast. Proc Natl Acad Sci U S A 99(2):649-54
Grandi P, et al.  (2002) 90S pre-ribosomes include the 35S pre-rRNA, the U3 snoRNP, and 40S subunit processing factors but predominantly lack 60S synthesis factors. Mol Cell 10(1):105-15
Guglielmi B and Werner M  (2002) The yeast homolog of human PinX1 is involved in rRNA and small nucleolar RNA maturation, not in telomere elongation inhibition. J Biol Chem 277(38):35712-9
Meier A, et al.  (2002) Repair of active and silenced rDNA in yeast: the contributions of photolyase and transcription-couples nucleotide excision repair. J Biol Chem 277(14):11845-52
Mills DA, et al.  (2002) Yeast diversity and persistence in botrytis-affected wine fermentations. Appl Environ Microbiol 68(10):4884-93
Moss T and Stefanovsky VY  (2002) At the center of eukaryotic life. Cell 109(5):545-8
Warner JR  (2001) Nascent ribosomes. Cell 107(2):133-6
Hyrien O  (2000) Mechanisms and consequences of replication fork arrest. Biochimie 82(1):5-17
Wai HH, et al.  (2000) Complete deletion of yeast chromosomal rDNA repeats and integration of a new rDNA repeat: use of rDNA deletion strains for functional analysis of rDNA promoter elements in vivo. Nucleic Acids Res 28(18):3524-34
Banditt M, et al.  (1999) Transcriptional activity and chromatin structure of enhancer-deleted rRNA genes in Saccharomyces cerevisiae. Mol Cell Biol 19(7):4953-60
Valente P, et al.  (1999) Sequencing as a tool in yeast molecular taxonomy. Can J Microbiol 45(11):949-58
Venema J and Tollervey D  (1999) Ribosome synthesis in Saccharomyces cerevisiae. Annu Rev Genet 33:261-311
Allmang C and Tollervey D  (1998) The role of the 3' external transcribed spacer in yeast pre-rRNA processing. J Mol Biol 278(1):67-78
Kurtzman CP and Robnett CJ  (1998) Identification and phylogeny of ascomycetous yeasts from analysis of nuclear large subunit (26S) ribosomal DNA partial sequences. Antonie Van Leeuwenhoek 73(4):331-71
Lafontaine DLJ, et al.  (1998) The box H + ACA snoRNAs carry Cbf5p, the putative rRNA pseudouridine synthase. Genes Dev 12(4):527-37
Peculis BA and Greer CL  (1998) The structure of the ITS2-proximal stem is required for pre-rRNA processing in yeast. RNA 4(12):1610-22
Morrissey JP and Tollervey D  (1997) U14 small nucleolar RNA makes multiple contacts with the pre-ribosomal RNA. Chromosoma 105(7-8):515-22
Dammann R, et al.  (1995) Transcription in the yeast rRNA gene locus: distribution of the active gene copies and chromatin structure of their flanking regulatory sequences. Mol Cell Biol 15(10):5294-303
Liang WQ and Fournier MJ  (1995) U14 base-pairs with 18S rRNA: a novel snoRNA interaction required for rRNA processing. Genes Dev 9(19):2433-43
Venema J, et al.  (1995) Development and application of an in vivo system to study yeast ribosomal RNA biogenesis and function. Yeast 11(2):145-56
Cormack BP and Struhl K  (1992) The TATA-binding protein is required for transcription by all three nuclear RNA polymerases in yeast cells. Cell 69(4):685-96
Yeh LC and Lee JC  (1992) Structure analysis of the 5' external transcribed spacer of the precursor ribosomal RNA from Saccharomyces cerevisiae. J Mol Biol 228(3):827-39