DHH1/YDL160C Literature Guide Help

Other names published for DHH1: YDL160C

DHH1 - Genetic Interactions (38)

ReferenceOther Genes Addressed
Chang LC and Lee FJ  (2012) The RNA helicase Dhh1p cooperates with Rbp1p to promote porin mRNA decay via its non-conserved C-terminal domain. Nucleic Acids Res 40(3):1331-44
Risler JK, et al.  (2012) Host co-factors of the retrovirus-like transposon Ty1. Mob DNA 3(1):12
Balagopal V and Parker R  (2011) Stm1 modulates translation after 80S formation in Saccharomyces cerevisiae. RNA 17(5):835-42
Buchan JR, et al.  (2011) Stress-specific composition, assembly and kinetics of stress granules in Saccharomyces cerevisiae. J Cell Sci 124(Pt 2):228-39
Carroll JS, et al.  (2011) The DExD/H box ATPase Dhh1 functions in translational repression, mRNA decay, and processing body dynamics. J Cell Biol 194(4):527-37
Hurto RL and Hopper AK  (2011) P-body components, Dhh1 and Pat1, are involved in tRNA nuclear-cytoplasmic dynamics. RNA 17(5):912-24
Luo G, et al.  (2011) Nutrients and the Pkh1/2 and Pkc1 Protein Kinases Control mRNA Decay and P-body Assembly in Yeast. J Biol Chem 286(11):8759-70
Luo X, et al.  (2011) Initiation of the yeast G0 program requires Igo1 and Igo2, which antagonize activation of decapping of specific nutrient-regulated mRNAs. RNA Biol 8(1):14-7
Dutko JA, et al.  (2010) 5' to 3' mRNA decay factors colocalize with Ty1 gag and human APOBEC3G and promote Ty1 retrotransposition. J Virol 84(10):5052-66
Louw C, et al.  (2010) Regulation of endo-polygalacturonase activity in Saccharomyces cerevisiae. FEMS Yeast Res 10(1):44-57
Talarek N, et al.  (2010) Initiation of the TORC1-regulated G0 program requires Igo1/2, which license specific mRNAs to evade degradation via the 5'-3' mRNA decay pathway. Mol Cell 38(3):345-55
Traven A, et al.  (2010) The yeast PUF protein Puf5 has Pop2-independent roles in response to DNA replication stress. PLoS One 5(5):e10651
Balagopal V and Parker R  (2009) Stm1 Modulates mRNA Decay and Dhh1 Function in Saccharomyces cerevisiae. Genetics 181(1):93-103
Luhtala N and Parker R  (2009) LSM1 over-expression in Saccharomyces cerevisiae depletes U6 snRNA levels. Nucleic Acids Res 37(16):5529-36
Beckham C, et al.  (2008) The DEAD-Box RNA Helicase Ded1p Affects and Accumulates in Saccharomyces cerevisiae P-Bodies. Mol Biol Cell 19(3):984-93
Bennett CB, et al.  (2008) Yeast Screens Identify the RNA Polymerase II CTD and SPT5 as Relevant Targets of BRCA1 Interaction. PLoS ONE 3(1):e1448
Buchan JR, et al.  (2008) P bodies promote stress granule assembly in Saccharomyces cerevisiae. J Cell Biol 183(3):441-55
Ka M, et al.  (2008) The DEAD-box RNA helicase, Dhh1, functions in mating by regulating Ste12 translation in Saccharomyces cerevisiae. Biochem Biophys Res Commun 367(3):680-6
Pedro-Segura E, et al.  (2008) The Cth2 ARE-binding Protein Recruits the Dhh1 Helicase to Promote the Decay of Succinate Dehydrogenase SDH4 mRNA in Response to Iron Deficiency. J Biol Chem 283(42):28527-35
Mazzoni C, et al.  (2007) The C-terminus of the yeast Lsm4p is required for the association to P-bodies. FEBS Lett 581(25):4836-40
Ohn T, et al.  (2007) CAF1 plays an important role in mRNA deadenylation separate from its contact to CCR4. Nucleic Acids Res 35(9):3002-15
Stribinskis V and Ramos KS  (2007) Rpm2p, a protein subunit of mitochondrial RNase P, physically and genetically interacts with cytoplasmic processing bodies. Nucleic Acids Res 35(4):1301-11
Teixeira D and Parker R  (2007) Analysis of P-body assembly in Saccharomyces cerevisiae. Mol Biol Cell 18(6):2274-87
Alcazar-Roman AR, et al.  (2006) Inositol hexakisphosphate and Gle1 activate the DEAD-box protein Dbp5 for nuclear mRNA export. Nat Cell Biol 8(7):711-6
Jang LT, et al.  (2006) Determinants of Rbp1p localization in specific cytoplasmic mRNA-processing foci, P-bodies. J Biol Chem 281(39):29379-90
Park YU, et al.  (2006) Identification of Translational Regulation Target Genes during Filamentous Growth in Saccharomyces cerevisiae: Regulatory Role of Caf20 and Dhh1. Eukaryot Cell 5(12):2120-7
Segal SP, et al.  (2006) Sbp1p affects translational repression and decapping in Saccharomyces cerevisiae. Mol Cell Biol 26(13):5120-30
Coller J and Parker R  (2005) General translational repression by activators of mRNA decapping. Cell 122(6):875-86
Liu H and Kiledjian M  (2005) Scavenger decapping activity facilitates 5' to 3' mRNA decay. Mol Cell Biol 25(22):9764-72
Kihara A and Igarashi Y  (2004) Cross talk between sphingolipids and glycerophospholipids in the establishment of plasma membrane asymmetry. Mol Biol Cell 15(11):4949-59