NPL3/YDR432W Literature Guide Help

Other names published for NPL3: MTR13, MTS1, NOP3, NAB1, YDR432W

NPL3 - Function/Process (40)

ReferenceOther Genes Addressed
Rajyaguru P, et al.  (2012) Scd6 Targets eIF4G to Repress Translation: RGG Motif Proteins as a Class of eIF4G-Binding Proteins. Mol Cell 45(2):244-54
Dori-Bachash M, et al.  (2011) Coupled evolution of transcription and mRNA degradation. PLoS Biol 9(7):e1001106
Hackmann A, et al.  (2011) The mRNA export factor Npl3 mediates the nuclear export of large ribosomal subunits. EMBO Rep 12(10):1024-31
Estrella LA, et al.  (2009) The shuttling protein Npl3 promotes translation termination accuracy in Saccharomyces cerevisiae. J Mol Biol 394(3):410-22
McBride AE, et al.  (2009) Specific sequences within arginine-glycine-rich domains affect mRNA-binding protein function. Nucleic Acids Res 37(13):4322-30
Dermody JL, et al.  (2008) Unphosphorylated SR-like protein Npl3 stimulates RNA polymerase II elongation. PLoS ONE 3(9):e3273
Kress TL, et al.  (2008) A Single SR-like Protein, Npl3, Promotes Pre-mRNA Splicing in Budding Yeast. Mol Cell 32(5):727-34
Soong TT, et al.  (2008) Physical protein-protein interactions predicted from microarrays. Bioinformatics 24(22):2608-14
Bucheli ME, et al.  (2007) Polyadenylation site choice in yeast is affected by competition between Npl3 and polyadenylation factor CFI. RNA 13(10):1756-64
Rollenhagen C, et al.  (2007) Following temperature stress, export of heat shock mRNA occurs efficiently in cells with mutations in genes normally important for mRNA export. Eukaryot Cell 6(3):505-13
Wong CM, et al.  (2007) Yeast Cap Binding Complex Impedes Recruitment of Cleavage Factor IA to Weak Termination Sites. Mol Cell Biol 27(18):6520-31
Bucheli ME and Buratowski S  (2005) Npl3 is an antagonist of mRNA 3' end formation by RNA polymerase II. EMBO J 24(12):2150-60
Gilbert W and Guthrie C  (2004) The Glc7p nuclear phosphatase promotes mRNA export by facilitating association of Mex67p with mRNA. Mol Cell 13(2):201-12
Markovich S, et al.  (2004) Genomic approach to identification of mutations affecting caspofungin susceptibility in Saccharomyces cerevisiae. Antimicrob Agents Chemother 48(10):3871-6
Windgassen M, et al.  (2004) Yeast shuttling SR proteins Npl3p, Gbp2p, and Hrb1p are part of the translating mRNPs, and Npl3p can function as a translational repressor. Mol Cell Biol 24(23):10479-91
Lei EP and Silver PA  (2002) Intron status and 3'-end formation control cotranscriptional export of mRNA. Genes Dev 16(21):2761-6
Gilbert W, et al.  (2001) Phosphorylation by Sky1p promotes Npl3p shuttling and mRNA dissociation. RNA 7(2):302-13
Lei EP, et al.  (2001) Messenger RNAs are recruited for nuclear export during transcription. Genes Dev 15(14):1771-82
Zahler AM  (2001) Tale of a tail kinase. Nat Struct Biol 8(2):104-6
Gratzer S, et al.  (2000) The mitochondrial protein targeting suppressor (mts1) mutation maps to the mRNA-binding domain of Npl3p and affects translation on cytoplasmic polysomes. Mol Microbiol 35(6):1277-85
Stage-Zimmermann T, et al.  (2000) Factors affecting nuclear export of the 60S ribosomal subunit in vivo. Mol Biol Cell 11(11):3777-89
Yun CY and Fu XD  (2000) Conserved SR protein kinase functions in nuclear import and its action is counteracted by arginine methylation in Saccharomyces cerevisiae. J Cell Biol 150(4):707-18
Krebber H, et al.  (1999) Uncoupling of the hnRNP Npl3p from mRNAs during the stress-induced block in mRNA export. Genes Dev 13(15):1994-2004
Liu Y, et al.  (1999) A Crm1p-independent nuclear export path for the mRNA-associated protein, Npl3p/Mtr13p. Proc Natl Acad Sci U S A 96(12):6739-44
Siebel CW, et al.  (1999) Conservation in budding yeast of a kinase specific for SR splicing factors. Proc Natl Acad Sci U S A 96(10):5440-5
Gottschalk A, et al.  (1998) A comprehensive biochemical and genetic analysis of the yeast U1 snRNP reveals five novel proteins. RNA 4(4):374-93
Senger B, et al.  (1998) Mtr10p functions as a nuclear import receptor for the mRNA-binding protein Npl3p. EMBO J 17(8):2196-207
Shen EC, et al.  (1998) Arginine methylation facilitates the nuclear export of hnRNP proteins. Genes Dev 12(5):679-91
Pemberton LF, et al.  (1997) A distinct and parallel pathway for the nuclear import of an mRNA-binding protein. J Cell Biol 139(7):1645-53
Saavedra CA, et al.  (1997) Yeast heat shock mRNAs are exported through a distinct pathway defined by Rip1p. Genes Dev 11(21):2845-56