MTR2/YKL186C Literature Guide Help

Other names published for MTR2: YKL186C

MTR2 Literature Curation Summary

Curated References for MTR2: 80

Date of last curation: 2013-05-07

ReferenceOther Genes Addressed
Kempken F  (2013) Alternative splicing in ascomycetes. Appl Microbiol Biotechnol 97(10):4235-41
Aitchison JD and Rout MP  (2012) The yeast nuclear pore complex and transport through it. Genetics 190(3):855-83
Bassler J, et al.  (2012) The conserved Bud20 zinc finger protein is a new component of the ribosomal 60S subunit export machinery. Mol Cell Biol 32(24):4898-912
Bradatsch B, et al.  (2012) Structure of the pre-60S ribosomal subunit with nuclear export factor Arx1 bound at the exit tunnel. Nat Struct Mol Biol 19(12):1234-41
Faza MB, et al.  (2012) Role of Mex67-Mtr2 in the Nuclear Export of 40S Pre-Ribosomes. PLoS Genet 8(8):e1002915
Galan A and Rodriguez-Navarro S  (2012) Sus1/ENY2: a multitasking protein in eukaryotic gene expression. Crit Rev Biochem Mol Biol 47(6):556-68
Gewartowski K, et al.  (2012) The yeast THO complex forms a 5-subunit assembly that directly interacts with active chromatin. Bioarchitecture 2(4)
Holub P, et al.  (2012) Air2p is critical for the assembly and RNA-binding of the TRAMP complex and the KOW domain of Mtr4p is crucial for exosome activation. Nucleic Acids Res 40(12):5679-93
Plass M, et al.  (2012) RNA secondary structure mediates alternative 3'ss selection in Saccharomyces cerevisiae. RNA 18(6):1103-15
Soucek S, et al.  (2012) The long and the short of it: The role of the zinc finger polyadenosine RNA binding protein, Nab2, in control of poly(A) tail length. Biochim Biophys Acta 1819(6):546-54
Steinberg G, et al.  (2012) Motor-driven motility of fungal nuclear pores organizes chromosomes and fosters nucleocytoplasmic transport. J Cell Biol 198(3):343-55
Valkov E, et al.  (2012) Structural basis for the assembly and disassembly of mRNA nuclear export complexes. Biochim Biophys Acta 1819(6):578-92
Vitaliano-Prunier A, et al.  (2012) H2B ubiquitylation controls the formation of export-competent mRNP. Mol Cell 45(1):132-9
Hackmann A, et al.  (2011) The mRNA export factor Npl3 mediates the nuclear export of large ribosomal subunits. EMBO Rep 12(10):1024-31
Linder P and Jankowsky E  (2011) From unwinding to clamping - the DEAD box RNA helicase family. Nat Rev Mol Cell Biol 12(8):505-16
Ma P and Xia X  (2011) Factors affecting splicing strength of yeast genes. Comp Funct Genomics 2011():212146
Serpeloni M, et al.  (2011) Comparative genomics of proteins involved in RNA nucleocytoplasmic export. BMC Evol Biol 11(1):7
Smith SB, et al.  (2011) Pronounced and extensive microtubule defects in a Saccharomyces cerevisiae DIS3 mutant. Yeast 28(11):755-69
Tutucci E and Stutz F  (2011) Keeping mRNPs in check during assembly and nuclear export. Nat Rev Mol Cell Biol 12(6):377-84
Dong S, et al.  (2010) Degradation of YRA1 Pre-mRNA in the cytoplasm requires translational repression, multiple modular intronic elements, Edc3p, and Mex67p. PLoS Biol 8(4):e1000360
Kressler D, et al.  (2010) Driving ribosome assembly. Biochim Biophys Acta 1803(6):673-683
Yao Y, et al.  (2010) Ecm1 is a new pre-ribosomal factor involved in pre-60S particle export. RNA 16(5):1007-17
Bergkessel M, et al.  (2009) SnapShot: Formation of mRNPs. Cell 136(4):794, 794.e1
Fasken MB and Corbett AH  (2009) Mechanisms of nuclear mRNA quality control. RNA Biol 6(3):237-41
Faza MB, et al.  (2009) Sem1 is a functional component of the nuclear pore complex-associated messenger RNA export machinery. J Cell Biol 184(6):833-46
Katahira J and Yoneda Y  (2009) Roles of the TREX complex in nuclear export of mRNA. RNA Biol 6(2):149-52
Kawashima T, et al.  (2009) Nonsense-mediated mRNA decay mutes the splicing defects of spliceosome component mutations. RNA 15(12):2236-47
Kelly SM and Corbett AH  (2009) Messenger RNA export from the nucleus: a series of molecular wardrobe changes. Traffic 10(9):1199-208
Lo KY and Johnson AW  (2009) Reengineering ribosome export. Mol Biol Cell 20(5):1545-54
Qu X, et al.  (2009) Assembly of an export-competent mRNP is needed for efficient release of the 3'-end processing complex after polyadenylation. Mol Cell Biol 29(19):5327-38