APC11/YDL008W Literature Guide Help

Other names published for APC11: anaphase promoting complex subunit 11, YDL008W

APC11 - Additional Literature (22)

ReferenceOther Genes Addressed
Zhang Z, et al.  (2013) Recombinant expression, reconstitution and structure of human anaphase-promoting complex (APC/C). Biochem J 449(2):365-71
da Fonseca PC, et al.  (2011) Structures of APC/C(Cdh1) with substrates identify Cdh1 and Apc10 as the D-box co-receptor. Nature 470(7333):274-8
Li M, et al.  (2010) Identifying the overlapping complexes in protein interaction networks. Int J Data Min Bioinform 4(1):91-108
Turner EL, et al.  (2010) The Saccharomyces cerevisiae Anaphase-Promoting Complex Interacts with Multiple Histone-Modifying Enzymes To Regulate Cell Cycle Progression. Eukaryot Cell 9(10):1418-1431
Schuyler SC and Murray AW  (2009) An in vitro assay for cdc20-dependent mitotic anaphase-promoting complex activity from budding yeast. Methods Mol Biol 545:271-85
Breslow DK, et al.  (2008) A comprehensive strategy enabling high-resolution functional analysis of the yeast genome. Nat Methods 5(8):711-8
Blethrow JD, et al.  (2007) Modular mass spectrometric tool for analysis of composition and phosphorylation of protein complexes. PLoS One 2(4):e358
Ko N, et al.  (2007) Identification of Yeast IQGAP (Iqg1p) as an Anaphase-Promoting-Complex Substrate and Its Role in Actomyosin-Ring-Independent Cytokinesis. Mol Biol Cell 18(12):5139-53
Jensen LJ, et al.  (2006) Co-evolution of transcriptional and post-translational cell-cycle regulation. Nature 443(7111):594-7
Andrews CA, et al.  (2005) Evidence that the yeast spindle assembly checkpoint has a target other than the anaphase promoting complex. Cell Cycle 4(11):1555-7
Carroll CW and Morgan DO  (2005) Enzymology of the anaphase-promoting complex. Methods Enzymol 398:219-30
Davierwala AP, et al.  (2005) The synthetic genetic interaction spectrum of essential genes. Nat Genet 37(10):1147-52
Kumar P and Wang CC  (2005) Depletion of anaphase-promoting complex or cyclosome (APC/C) subunit homolog APC1 or CDC27 of Trypanosoma brucei arrests the procyclic form in metaphase but the bloodstream form in anaphase. J Biol Chem 280(36):31783-91
Passmore LA, et al.  (2005) Structural analysis of the anaphase-promoting complex reveals multiple active sites and insights into polyubiquitylation. Mol Cell 20(6):855-66
Perry J, et al.  (2005) Bioinformatic analyses implicate the collaborating meiotic crossover/chiasma proteins Zip2, Zip3, and Spo22/Zip4 in ubiquitin labeling. Proc Natl Acad Sci U S A 102(49):17594-9
Banerjee D, et al.  (2004) Genome-wide expression profile of steroid response in Saccharomyces cerevisiae. Biochem Biophys Res Commun 317(2):406-13
Chang TS, et al.  (2004) The RING-H2-finger protein APC11 as a target of hydrogen peroxide. Free Radic Biol Med 37(4):521-30
Yoon HJ, et al.  (2002) Proteomics analysis identifies new components of the fission and budding yeast anaphase-promoting complexes. Curr Biol 12(23):2048-54
Chan AH, et al.  (2001) Molecular cloning and characterization of a RING-H2 finger protein, ANAPC11, the human homolog of yeast Apc11p. J Cell Biochem 83(2):249-58
Gmachl M, et al.  (2000) The RING-H2 finger protein APC11 and the E2 enzyme UBC4 are sufficient to ubiquitinate substrates of the anaphase-promoting complex. Proc Natl Acad Sci U S A 97(16):8973-8
Seol JH, et al.  (1999) Cdc53/cullin and the essential Hrt1 RING-H2 subunit of SCF define a ubiquitin ligase module that activates the E2 enzyme Cdc34. Genes Dev 13(12):1614-26
Irniger S and Nasmyth K  (1997) The anaphase-promoting complex is required in G1 arrested yeast cells to inhibit B-type cyclin accumulation and to prevent uncontrolled entry into S-phase. J Cell Sci 110 ( Pt 13)():1523-31