Anita Hopper
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American molecular geneticist
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Why Is Anita Hopper Influential?
(Suggest an Edit or Addition)According to Wikipedia, Anita Hopper is an American molecular geneticist who is a professor at the Ohio State University. She studies the mechanisms of distribution of RNA between the nucleus and cytoplasm. She is a Fellow of the American Academy of Microbiology and the American Association for the Advancement of Science and was elected a Member of the National Academy of Sciences in 2021.
Anita Hopper's Published Works
Published Works
- tRNA biology charges to the front. (2010) (681)
- tRNA transfers to the limelight. (2003) (329)
- The yeast RNA1 gene product necessary for RNA processing is located in the cytosol and apparently excluded from the nucleus (1990) (222)
- A yeast mutant which accumulates precursor tRNAs (1978) (186)
- tRNA nuclear export in saccharomyces cerevisiae: in situ hybridization analysis. (1998) (177)
- Retrograde movement of tRNAs from the cytoplasm to the nucleus in Saccharomyces cerevisiae. (2005) (172)
- Regulation of mRNA export in response to stress in Saccharomyces cerevisiae. (1996) (170)
- Transfer RNA Post-Transcriptional Processing, Turnover, and Subcellular Dynamics in the Yeast Saccharomyces cerevisiae (2013) (167)
- Rna1p, a Ran/TC4 GTPase activating protein, is required for nuclear import (1995) (165)
- Maf1p, a Negative Effector of RNA Polymerase III inSaccharomyces cerevisiae (2001) (163)
- Isolation and characterization of MOD5, a gene required for isopentenylation of cytoplasmic and mitochondrial tRNAs of Saccharomyces cerevisiae (1987) (142)
- Nuclear tRNA aminoacylation and its role in nuclear export of endogenous tRNAs in Saccharomyces cerevisiae. (1999) (137)
- Processing of intervening sequences: a new yeast mutant which fails to excise intervening sequences from precursor tRNAs (1980) (135)
- Actin-binding Verprolin Is a Polarity Development Protein Required for the Morphogenesis and Function of the Yeast Actin Cytoskeleton (1997) (122)
- mRNA leader length and initiation codon context determine alternative AUG selection for the yeast gene MOD5. (1991) (120)
- Isolation and characterization of the TRM1 locus, a gene essential for the N2,N2-dimethylguanosine modification of both mitochondrial and cytoplasmic tRNA in Saccharomyces cerevisiae. (1986) (118)
- Cloning and characterization of LOS1, a Saccharomyces cerevisiae gene that affects tRNA splicing (1987) (113)
- Rapid and reversible nuclear accumulation of cytoplasmic tRNA in response to nutrient availability. (2007) (108)
- Defects in modification of cytoplasmic and mitochondrial transfer RNAs are caused by single nuclear mutations (1982) (100)
- Yeast Trm7 interacts with distinct proteins for critical modifications of the tRNAPhe anticodon loop. (2012) (97)
- Depletion of Saccharomyces cerevisiae tRNAHis Guanylyltransferase Thg1p Leads to Uncharged tRNAHis with Additional m5C (2005) (94)
- Retrograde nuclear accumulation of cytoplasmic tRNA in rat hepatoma cells in response to amino acid deprivation (2007) (94)
- Defects in tRNA Processing and Nuclear Export InduceGCN4 Translation Independently of Phosphorylation of the α Subunit of Eukaryotic Translation Initiation Factor 2 (2000) (88)
- Cellular dynamics of tRNAs and their genes (2010) (88)
- Regulation of tRNA Bidirectional Nuclear-Cytoplasmic Trafficking in Saccharomyces cerevisiae (2010) (86)
- MOD5 translation initiation sites determine N6-isopentenyladenosine modification of mitochondrial and cytoplasmic tRNA (1991) (84)
- Role of nuclear pools of aminoacyl-tRNA synthetases in tRNA nuclear export. (2001) (82)
- Mutations altering the mitochondrial-cytoplasmic distribution of Mod5p implicate the actin cytoskeleton and mRNA 3' ends and/or protein synthesis in mitochondrial delivery (1995) (80)
- A Los1p-independent pathway for nuclear export of intronless tRNAs in Saccharomyces cerevisiae (2002) (75)
- The Human WASP-interacting Protein, WIP, Activates the Cell Polarity Pathway in Yeast* (1999) (75)
- How single genes provide tRNA processing enzymes to mitochondria, nuclei and the cytosol. (1994) (74)
- Antagonistic effects of NES and NLS motifs determine S. cerevisiae Rna1p subcellular distribution. (1999) (72)
- MDP1, a Saccharomyces cerevisiae gene involved in mitochondrial/cytoplasmic protein distribution, is identical to the ubiquitin-protein ligase gene RSP5. (1997) (71)
- Subcellular locations of MOD5 proteins: mapping of sequences sufficient for targeting to mitochondria and demonstration that mitochondrial and nuclear isoforms commingle in the cytosol (1994) (69)
- Retrograde transfer RNA nuclear import provides a new level of tRNA quality control in Saccharomyces cerevisiae (2013) (67)
- Competition between a sterol biosynthetic enzyme and tRNA modification in addition to changes in the protein synthesis machinery causes altered nonsense suppression. (2000) (65)
- A decade of surprises for tRNA nuclear-cytoplasmic dynamics. (2008) (64)
- Interplay of heterogeneous transcriptional start sites and translational selection of AUGs dictate the production of mitochondrial and cytosolic/nuclear tRNA nucleotidyltransferase from the same gene in yeast. (1994) (63)
- Saccharomyces cerevisiae Mod5p-II contains sequences antagonistic for nuclear and cytosolic locations. (1999) (63)
- Mechanisms Leading to and the Consequences of Altering the Normal Distribution of ATP(CTP):tRNA Nucleotidyltransferase in Yeast (*) (1996) (63)
- Mating type and sporulation in yeast. I. Mutations which alter mating-type control over sporulation. (1975) (62)
- Importin-β Family Members Mediate Alpharetrovirus Gag Nuclear Entry via Interactions with Matrix and Nucleocapsid (2006) (60)
- DNA sequence and transcript mapping of MOD5: features of the 5' region which suggest two translational starts (1987) (60)
- WW domains of Rsp5p define different functions: determination of roles in fluid phase and uracil permease endocytosis in Saccharomyces cerevisiae. (2001) (59)
- Isolation of a yeast gene involved in species-specific pre-tRNA processing (1988) (59)
- Rsp5p, a New Link between the Actin Cytoskeleton and Endocytosis in the Yeast Saccharomyces cerevisiae (2002) (57)
- Structural and functional analyses of Saccharomyces cerevisiae wild-type and mutant RNA1 genes (1989) (55)
- Molecular determinants of metazoan tricRNA biogenesis (2018) (54)
- tRNA dynamics between the nucleus, cytoplasm and mitochondrial surface: Location, location, location. (2017) (54)
- Multiple Layers of Stress-Induced Regulation in tRNA Biology (2016) (51)
- Maf1 Protein, Repressor of RNA Polymerase III, Indirectly Affects tRNA Processing* (2011) (50)
- Separate information required for nuclear and subnuclear localization: additional complexity in localizing an enzyme shared by mitochondria and nuclei (1992) (47)
- SRN1, a yeast gene involved in RNA processing, is identical to HEX2/REG1, a negative regulator in glucose repression (1992) (47)
- Transfer RNA travels from the cytoplasm to organelles (2011) (45)
- Molecular characterisation of the tyrosine tRNA genes of yeast (1977) (45)
- Characterization of an essential Saccharomyces cerevisiae gene related to RNA processing: cloning of RNA1 and generation of a new allele with a novel phenotype (1985) (45)
- Protein Synthesis in Relation to Sporulation and Meiosis in Yeast (1974) (45)
- Inorganic Phosphate Deprivation Causes tRNA Nuclear Accumulation via Retrograde Transport in Saccharomyces cerevisiae (2007) (45)
- Genome-Wide Screen for Inner Nuclear Membrane Protein Targeting in Saccharomyces cerevisiae (2005) (44)
- Amino-terminal extension generated from an upstream AUG codon is not required for mitochondrial import of yeast N2,N2-dimethylguanosine-specific tRNA methyltransferase. (1987) (44)
- N2,N2-dimethylguanosine-specific tRNA methyltransferase contains both nuclear and mitochondrial targeting signals in Saccharomyces cerevisiae (1989) (43)
- RRP1, a Saccharomyces cerevisiae gene affecting rRNA processing and production of mature ribosomal subunits (1987) (42)
- Amino-terminal extension generated from an upstream AUG codon increases the efficiency of mitochondrial import of yeast N2,N2-dimethylguanosine-specific tRNA methyltransferases (1989) (42)
- The Saccharomyces cerevisiae LOS1 gene involved in pre-tRNA splicing encodes a nuclear protein that behaves as a component of the nuclear matrix. (1993) (42)
- Division of Labor Among the Yeast Sol Proteins Implicated in tRNA Nuclear Export and Carbohydrate Metabolism (2004) (41)
- Location of N2,N2-dimethylguanosine-specific tRNA methyltransferase. (1995) (41)
- maf1 mutation alters the subcellular localization of the Mod5 protein in yeast. (1994) (39)
- Cellular Dynamics of Small RNAs (2006) (37)
- tRNA processing, modification, and subcellular dynamics: past, present, and future (2015) (35)
- tRNA Processing and Subcellular Trafficking Proteins Multitask in Pathways for Other RNAs (2019) (33)
- Isopentenylation of both cytoplasmic and mitochondrial tRNA is affected by a single nuclear mutation. (1982) (32)
- In vivo biochemical analyses reveal distinct roles of β-importins and eEF1A in tRNA subcellular traffic (2015) (32)
- Quality Control Pathways for Nucleus-Encoded Eukaryotic tRNA Biosynthesis and Subcellular Trafficking (2015) (31)
- Mod5 protein binds to tRNA gene complexes and affects local transcriptional silencing (2013) (31)
- Modified view of tRNA: stability amid sequence diversity. (2006) (31)
- Sharing the load: Mex67–Mtr2 cofunctions with Los1 in primary tRNA nuclear export (2017) (29)
- Beyond tRNA cleavage: novel essential function for yeast tRNA splicing endonuclease unrelated to tRNA processing. (2012) (29)
- Nucleus-associated pools of Rna1p, the Saccharomyces cerevisiae Ran/TC4 GTPse activating protein involved in nucleus/cytosol transit. (1996) (28)
- Genome-wide screen uncovers novel pathways for tRNA processing and nuclear–cytoplasmic dynamics (2015) (27)
- Genome-Wide Investigation of the Role of the tRNA Nuclear-Cytoplasmic Trafficking Pathway in Regulation of the Yeast Saccharomyces cerevisiae Transcriptome and Proteome (2013) (27)
- Healing for destruction: tRNA intron degradation in yeast is a two-step cytoplasmic process catalyzed by tRNA ligase Rlg1 and 5′-to-3′ exonuclease Xrn1 (2014) (26)
- Separate responses of karyopherins to glucose and amino acid availability regulate nucleocytoplasmic transport (2014) (22)
- Mutation of a heterothallic strain to homothallism. (1975) (22)
- Rsp5 ubiquitin ligase modulates translation accuracy in yeast Saccharomyces cerevisiae. (2005) (22)
- Control of Saccharomyces cerevisiae pre-tRNA processing by environmental conditions (2016) (22)
- Nuclear Functions Charge Ahead (1998) (21)
- STP1, a gene involved in pre-tRNA processing, encodes a nuclear protein containing zinc finger motifs (1992) (21)
- P-body components, Dhh1 and Pat1, are involved in tRNA nuclear-cytoplasmic dynamics. (2011) (20)
- The cytoplasmic and nuclear populations of the eukaryote tRNA-isopentenyl transferase have distinct functions with implications in human cancer. (2015) (19)
- A rapid and sensitive non‐radioactive method applicable for genome‐wide analysis of Saccharomyces cerevisiae genes involved in small RNA biology (2013) (19)
- Los1p, involved in yeast pre-tRNA splicing, positively regulates members of the SOL gene family. (1996) (19)
- ADEPTs: information necessary for subcellular distribution of eukaryotic sorting isozymes resides in domains missing from eubacterial and archaeal counterparts. (2000) (18)
- Mating type and sporulation in yeast. II. Meiosis, recombination, and radiation sensitivity in an alpha-alpha diploid with altered sporulation control. (1975) (18)
- SRD1, a S. cerevisiae gene affecting pre-rRNA processing contains a C2/C2 zinc finger motif. (1994) (17)
- From powerhouse to processing plant: conserved roles of mitochondrial outer membrane proteins in tRNA splicing (2018) (17)
- Size matters: conserved proteins function in length-dependent nuclear export of circular RNAs (2018) (15)
- Mechanism and a Peptide Motif for Targeting Peripheral Proteins to the Yeast Inner Nuclear Membrane (2009) (13)
- Beyond rRNA and snRNA: tRNA as a 2′-O-methylation target for nucleolar and Cajal body box C/D RNPs (2019) (12)
- srd1, a Saccharomyces cerevisiae suppressor of the temperature-sensitive pre-rRNA processing defect of rrp1-1. (1990) (12)
- A yeast mutant defective in the processing of 27S r-RNA precursor (1976) (11)
- Faculty Opinions recommendation of The Cm56 tRNA modification in archaea is catalyzed either by a specific 2'-O-methylase, or a C/D sRNP. (2005) (8)
- Genetic methods for study of trans-acting genes involved in processing of precursors to yeast cytoplasmic transfer RNAs. (1990) (8)
- tRNA Traffic Meets a Cell-Cycle Checkpoint (2007) (8)
- A novel assay provides insight into tRNAPhe retrograde nuclear import and re-export in S. cerevisiae (2020) (8)
- Yeast ubiquitin ligase Rsp5 contains nuclear localization and export signals. (2011) (7)
- 1 Maf 1 , REPRESSOR OF RNA POLYMERASE III , INDIRECTLY AFFECTS tRNA PROCESSING (2013) (6)
- tRNA synthesis: identification of in vivo precursor tRNAs from parental and mutant yeast strains. (1981) (6)
- The glucose repression and RAS-cAMP signal transduction pathways of Saccharomyces cerevisiae each affect RNA processing and the synthesis of a reporter protein (2004) (5)
- Splicing before import – An intein in a mitochondrially targeted preprotein folds and is catalytically active in the cytoplasm in vivo (2000) (5)
- Requirement of the spindle pole body for targeting and/or tethering proteins to the inner nuclear membrane (2014) (5)
- Chromosome specificity of polysomy promotion by disruptions of the Saccharomyces cerevisiae RNA1 gene. (1987) (5)
- Protein transfer and organelle biogenesis. Academic Press, Inc, Orlando, Florida. 1988. $119.50 (1989) (5)
- Control of sporulation in yeast: SAD1-a mating-type specific, unstable alteration that uncouples sporulation from mating-type control (1980) (4)
- PTAJ, an Essential Gene of Saccharomyces cerevisiae Affecting Pre-tRNA Processing (3)
- Inorganic phosphate deprivation causes tRNA nuclear accumulation via retrograde transport in S . cerevisiae (2007) (3)
- Faculty Opinions recommendation of Global analysis of protein expression in yeast. (2003) (2)
- The Life and Times of a tRNA. (2023) (1)
- Faculty Opinions recommendation of Global analysis of protein localization in budding yeast. (2003) (1)
- 3 Processing of Yeast Cytoplasmic and Mitochondrial Precusor tRNAs (2009) (1)
- tRNA: Splicing and Intron Turnover (2020) (1)
- Role of Ran GTPase in RNA Processing and Export of RNA from the Nucleus to the Cytosol: Insights from Budding Yeast (2001) (1)
- Faculty Opinions recommendation of Nuclear export of microRNA precursors. (2004) (0)
- The 2006 George W. Beadle Medal (2005) (0)
- Faculty Opinions recommendation of Alternatively spliced TCR mRNA induced by disruption of reading frame. (2002) (0)
- tRNA: Splicing and Intron Turnover and Possible Functions (2021) (0)
- Nucleus-associated pools of Rnalp, the Saccharomyces cerevisiae (2005) (0)
- An Investigation Into the Replication of Satellite Tobacco Necrosis Virusand Tobacco Necrosis Virus Rna Genomes (1972) (0)
- Faculty Opinions recommendation of Genomewide analysis of mRNA processing in yeast using splicing-specific microarrays. (2002) (0)
- Faculty Opinions recommendation of tRNAHis maturation: an essential yeast protein catalyzes addition of a guanine nucleotide to the 5' end of tRNAHis. (2004) (0)
- Three tRNA nuclear exporters in S. cerevisiae: parallel pathways, preferences, and precision (2022) (0)
- Individual WW domains of Rsp5p differently affect fluid phase endocytosis and internalization of uracil permease (2000) (0)
- Characterization of a yeast gene involved in RNA processing (1985) (0)
- Genome-wide Screen for Inner Nuclear Membrane Protein Targeting in S. cerevisiae : Roles for N-acetylation and an Integral Membrane Protein (2005) (0)
- Faculty Opinions recommendation of Nuclear entry and CRM1-dependent nuclear export of the Rous sarcoma virus Gag polyprotein. (2002) (0)
- Isolation and Characterization of the TRMl Locus , a Gene Essential for the N 2 , N 2-Dimethylguanosine Modification of Both Mitochondrial and Cytoplasmic tRNA in Saccharomyces cereuisiae ” (2001) (0)
- The 2006 George W. Beadle Medal. Fred Sherman. (2006) (0)
- srd l , a Saccharomyces cerevisiae Suppressor of the Temperature-Sensitive Pre-rRNA Processing Defect of w p l-1 (0)
- Faculty Opinions recommendation of A large nucleolar U3 ribonucleoprotein required for 18S ribosomal RNA biogenesis. (2002) (0)
- Structural and Functional Analyses of Saccharomyces cerevisiae Wild-Type and Mutant RNA ] Genes (2003) (0)
- Faculty Opinions recommendation of Two closely related human nuclear export factors utilize entirely distinct export pathways. (2001) (0)
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