CKA1/YIL035C Literature Guide Help

Other names published for CKA1: CK2 subunit, YIL035C

CKA1 - Protein-protein Interactions (27)

ReferenceOther Genes Addressed
Gilmore JM, et al.  (2012) Characterization of a highly conserved histone related protein, Ydl156w, and its functional associations using quantitative proteomic analyses. Mol Cell Proteomics 11(4):M111.011544
Richardson LA, et al.  (2012) A conserved deubiquitinating enzyme controls cell growth by regulating RNA polymerase I stability. Cell Rep 2(2):372-85
Farley AR, et al.  (2011) Assessing the Components of the eIF3 Complex and their Phosphorylation Status. J Proteome Res 10(4):1481-94
Janeczko M, et al.  (2011) Interactions between subunits of protein kinase CK2 and their protein substrates influences its sensitivity to specific inhibitors. Mol Cell Biochem 356(1-2):121-6
Kurat CF, et al.  (2011) Restriction of histone gene transcription to S phase by phosphorylation of a chromatin boundary protein. Genes Dev 25(23):2489-501
Peng Y, et al.  (2011) Overlapping kinetochore targets of CK2 and Aurora B kinases in mitotic regulation. Mol Biol Cell 22(15):2680-9
Perez-Fernandez J, et al.  (2011) Elucidation of the assembly events required for the recruitment of Utp20, Imp4 and Bms1 onto nascent pre-ribosomes. Nucleic Acids Res 39(18):8105-21
Schmidt O, et al.  (2011) Regulation of mitochondrial protein import by cytosolic kinases. Cell 144(2):227-39
Pickin KA, et al.  (2010) Suppression of Ycf1p function by Cka1p-dependent phosphorylation is attenuated in response to salt stress. FEMS Yeast Res 10(7):839-57
Friedel CC, et al.  (2009) Bootstrapping the interactome: unsupervised identification of protein complexes in yeast. J Comput Biol 16(8):971-87
Siepe D and Jentsch S  (2009) Prolyl isomerase Pin1 acts as a switch to control the degree of substrate ubiquitylation. Nat Cell Biol 11(8):967-72
Gyenis L and Litchfield DW  (2008) The emerging CK2 interactome: insights into the regulation and functions of CK2. Mol Cell Biochem 316(1-2):5-14
Paumi CM, et al.  (2008) Negative Regulation of the Yeast ABC Transporter Ycf1p by Phosphorylation within Its N-terminal Extension. J Biol Chem 283(40):27079-88
Kubinski K, et al.  (2007) Yeast holoenzyme of protein kinase CK2 requires both beta and beta' regulatory subunits for its activity. Mol Cell Biochem 295(1-2):229-36
Perez-Fernandez J, et al.  (2007) The 90S preribosome is a multimodular structure that is assembled through a hierarchical mechanism. Mol Cell Biol 27(15):5414-29
Rudra D, et al.  (2007) Potential interface between ribosomal protein production and pre-rRNA processing. Mol Cell Biol 27(13):4815-24
Suter B, et al.  (2007) Examining protein protein interactions using endogenously tagged yeast arrays: The Cross-and-Capture system. Genome Res 17(12):1774-82
Coccetti P, et al.  (2006) Sic1 is phosphorylated by CK2 on Ser201 in budding yeast cells. Biochem Biophys Res Commun 346(3):786-93
Kubinski K, et al.  (2006) Yeast elf1 factor is phosphorylated and interacts with protein kinase CK2. J Biochem Mol Biol 39(3):311-8
Zielinski R, et al.  (2006) Fip1--an essential component of the Saccharomyces cerevisiae polyadenylation machinery is phosophorylated by protein kinase CK2. Mol Cell Biochem 286(1-2):191-7
De Marchis ML, et al.  (2005) Rrp15p, a novel component of pre-ribosomal particles required for 60S ribosome subunit maturation. RNA 11(4):495-502
Prather D, et al.  (2005) Identification and characterization of Elf1, a conserved transcription elongation factor in Saccharomyces cerevisiae. Mol Cell Biol 25(22):10122-35
Ptacek J, et al.  (2005) Global analysis of protein phosphorylation in yeast. Nature 438(7068):679-84
Auty R, et al.  (2004) Purification of active TFIID from Saccharomyces cerevisiae. Extensive promoter contacts and co-activator function. J Biol Chem 279(48):49973-81
Schaerer-Brodbeck C and Riezman H  (2003) Genetic and biochemical interactions between the Arp2/3 complex, Cmd1p, casein kinase II, and Tub4p in yeast. FEMS Yeast Res 4(1):37-49
Ghavidel A and Schultz MC  (2001) TATA binding protein-associated CK2 transduces DNA damage signals to the RNA polymerase III transcriptional machinery. Cell 106(5):575-84
Bojanowski K, et al.  (1993) DNA topoisomerase II and casein kinase II associate in a molecular complex that is catalytically active. J Biol Chem 268(30):22920-6