RPB2/YOR151C Literature Guide Help

Other names published for RPB2: RPB150, RPO22, SIT2, SOH2, B150, YOR151C

RPB2 - Function/Process (85)

ReferenceOther Genes Addressed
Cai G, et al.  (2012) Interaction of the mediator head module with RNA polymerase II. Structure 20(5):899-910
Kellinger MW, et al.  (2012) 5-formylcytosine and 5-carboxylcytosine reduce the rate and substrate specificity of RNA polymerase II transcription. Nat Struct Mol Biol 19(8):831-3
Kellinger MW, et al.  (2012) Dissecting chemical interactions governing RNA polymerase II transcriptional fidelity. J Am Chem Soc 134(19):8231-40
Xie P  (2012) A dynamic model for processive transcription elongation and backtracking long pauses by multisubunit RNA polymerases. Proteins 80(8):2020-34
Bintu L, et al.  (2011) The elongation rate of RNA polymerase determines the fate of transcribed nucleosomes.LID - 10.1038/nsmb.2164 [doi] Nat Struct Mol Biol ()
Cheung AC and Cramer P  (2011) Structural basis of RNA polymerase II backtracking, arrest and reactivation. Nature 471(7337):249-53
Kireeva ML, et al.  (2011) Interaction of RNA polymerase II fork loop 2 with downstream non-template DNA regulates transcription elongation. J Biol Chem 286(35):30898-910
Alexander RD, et al.  (2010) Splicing-dependent RNA polymerase pausing in yeast. Mol Cell 40(4):582-93
Domecq C, et al.  (2010) Site-directed mutagenesis, purification and assay of Saccharomyces cerevisiae RNA polymerase II. Protein Expr Purif 69(1):83-90
Mayan M and Aragon L  (2010) Cis-interactions between non-coding ribosomal spacers dependent on RNAP-II separate RNAP-I and RNAP-III transcription domains. Cell Cycle 9(21):4328-37
Seibold SA, et al.  (2010) Conformational coupling, bridge helix dynamics and active site dehydration in catalysis by RNA polymerase. Biochim Biophys Acta 1799(8):575-587
Sigurdsson S, et al.  (2010) Evidence that transcript cleavage is essential for RNA polymerase II transcription and cell viability. Mol Cell 38(2):202-10
Damsma GE and Cramer P  (2009) Molecular basis of transcriptional mutagenesis at 8-oxoguanine. J Biol Chem 284(46):31658-63
Hodges C, et al.  (2009) Nucleosomal fluctuations govern the transcription dynamics of RNA polymerase II. Science 325(5940):626-8
Kireeva M, et al.  (2009) Millisecond phase kinetic analysis of elongation catalyzed by human, yeast, and Escherichia coli RNA polymerase. Methods 48(4):333-45
Tavenet A, et al.  (2009) Genome-wide location analysis reveals a role for Sub1 in RNA polymerase III transcription. Proc Natl Acad Sci U S A 106(34):14265-70
Wang D, et al.  (2009) Structural basis of transcription: backtracked RNA polymerase II at 3.4 angstrom resolution. Science 324(5931):1203-6
Cheng TF, et al.  (2008) Differential Blocking Effects of the Acetaldehyde-derived DNA Lesion N2-Ethyl-2'-deoxyguanosine on Transcription by Multisubunit and Single Subunit RNA Polymerases. J Biol Chem 283(41):27820-8
Brueckner F, et al.  (2007) CPD damage recognition by transcribing RNA polymerase II. Science 315(5813):859-62
Galburt EA, et al.  (2007) Backtracking determines the force sensitivity of RNAP II in a factor-dependent manner. Nature 446(7137):820-3
Lehmann E, et al.  (2007) Molecular basis of RNA-dependent RNA polymerase II activity. Nature 450(7168):445-9
Tous C and Aguilera A  (2007) Impairment of transcription elongation by R-loops in vitro. Biochem Biophys Res Commun 360(2):428-32
Bondarenko VA, et al.  (2006) Nucleosomes can form a polar barrier to transcript elongation by RNA polymerase II. Mol Cell 24(3):469-79
Miller G and Hahn S  (2006) A DNA-tethered cleavage probe reveals the path for promoter DNA in the yeast preinitiation complex. Nat Struct Mol Biol 13(7):603-10
Armache KJ, et al.  (2005) Structures of complete RNA polymerase II and its subcomplex, Rpb4/7. J Biol Chem 280(8):7131-4
Mason PB and Struhl K  (2005) Distinction and relationship between elongation rate and processivity of RNA polymerase II in vivo. Mol Cell 17(6):831-40
Chen BS and Hampsey M  (2004) Functional interaction between TFIIB and the Rpb2 subunit of RNA polymerase II: implications for the mechanism of transcription initiation. Mol Cell Biol 24(9):3983-91
Jeronimo C, et al.  (2004) RPAP1, a novel human RNA polymerase II-associated protein affinity purified with recombinant wild-type and mutated polymerase subunits. Mol Cell Biol 24(16):7043-58
Kettenberger H, et al.  (2004) Complete RNA polymerase II elongation complex structure and its interactions with NTP and TFIIS. Mol Cell 16(6):955-65
Rani PG, et al.  (2004) RNA polymerase II (Pol II)-TFIIF and Pol II-mediator complexes: the major stable Pol II complexes and their activity in transcription initiation and reinitiation. Mol Cell Biol 24(4):1709-20