Skip to main content
. 2018 May 3;35(7):477–483. doi: 10.1002/yea.3312

Table 1.

All papers currently represented in dHITS and the quantity of hits arising from each screen

Title of Manuscript Reference Number of hits in screen
Genetic basis of mitochondrial function and morphology in Saccharomyces cerevisiae Dimmer et al. (2002) 401
Genomic screen for vacuolar protein sorting genes in Saccharomyces cerevisiae Bonangelino, Chavez, and Bonifacino (2002) 146
A genome‐wide visual screen reveals a role for sphingolipids and ergosterol in cell surface delivery in yeast Proszynski et al. (2005) 22
Role of essential genes in mitochondrial morphogenesis in Saccharomyces cerevisiae Altmann and Westermann (2005) 119
A proteomic screen reveals SCFGrr1 targets that regulate the glycolytic‐gluconeogenic switch Benanti, Cheung, Brady, and Toczyski (2007) 163
The lipodystrophy protein seipin is found at endoplasmic reticulum lipid droplet junctions and is important for droplet morphology Szymanski et al. (2007) 59
Global screening of genes essential for growth in high‐pressure and cold environments: searching for basic adaptive strategies using a yeast deletion library Abe and Minegishi (2008) 80
Comprehensive phenotypic analysis for identification of genes affecting growth under ethanol stress in Saccharomyces cerevisiae Yoshikawa et al. (2009) 446
Genome wide analysis reveals novel pathways affecting endoplasmic reticulum homeostasis, protein modification and quality control Copic et al. (2009) 72
Imaging‐based live cell yeast screen identifies novel factors involved in peroxisome assembly Wolinski et al. (2009) 31
The Rpd3L HDAC complex is essential for the heat stress response in yeast Ruiz‐Roig, Vieitez, Posas, and de Nadal (2010) 276
Ergosterol content specifies targeting of tail‐anchored proteins to mitochondrial outer membranes Krumpe et al. (2012) 1
Interactions of subunit CCT3 in the yeast chaperonin CCT/TRiC with Q/N‐rich proteins revealed by high‐throughput microscopy analysis Nadler‐Holly et al. (2012) 64
Identification of genes affecting vacuole membrane fragmentation in Saccharomyces cerevisiae Michaillat and Mayer (2013) 276
Formation and dissociation of proteasome storage granules are regulated by cytosolic pH Peters, Hazan, Breker, Schuldiner, and Ben‐Aroya (2013) 11
A novel single‐cell screening platform reveals proteome plasticity during yeast stress responses (C′ GFP in DTT) Breker, Gymrek, and Schuldiner (2013) 421
A novel single‐cell screening platform reveals proteome plasticity during yeast stress responses (C′ GFP in starvation) Breker et al. (2013) 885
Genome‐wide single‐cell‐level screen for protein abundance and localization changes in response to DNA damage in S. cerevisiae Mazumder, Pesudo, McRee, Bathe, and Samson (2013) 1697
The role of Djp1 in import of the mitochondrial protein Mim1 demonstrates specificity between a cochaperone and its substrate protein Papic et al. (2013) 10
A defect in the RNA‐processing protein HNRPDL causes limb‐girdle muscular dystrophy 1G (LGMD1G) Vieira et al. (2014) 17
A dynamic interface between vacuoles and mitochondria in yeast Elbaz‐Alon, Rosenfeld‐Gur et al. (2014) 118
A functional, genome‐wide evaluation of liposensitive yeast identifies the ‘ARE2 required for viability’ (ARV1) gene product as a major component of eukaryotic fatty acid resistance Ruggles et al. (2014) 143
Genome‐wide analysis of Saccharomyces cerevisiae identifies cellular processes affecting intracellular aggregation of Alzheimer's amyloid‐beta42: importance of lipid homeostasis Nair, Traini, Dawes, and Perrone (2014) 332
Peroxisomes are juxtaposed to strategic sites on mitochondria Cohen et al. (2014) 55
The yeast oligopeptide transporter Opt2 is localized to peroxisomes and affects glutathione redox homeostasis Elbaz‐Alon, Morgan et al. (2014) 22
The yeast ER‐intramembrane protease Ypf1 refines nutrient sensing by regulating transporter abundance Avci et al. (2014) 50
Yeast phospholipid biosynthesis is linked to mRNA localization Hermesh et al. (2014) 14
Genome‐wide screen uncovers novel pathways for tRNA processing and nuclear‐cytoplasmic dynamics Wu, Bao, Chatterjee, Wan, and Hopper (2015) 172
Genome‐wide screens in Saccharomyces cerevisiae highlight a role for cardiolipin in biogenesis of mitochondrial outer membrane multispan proteins Sauerwald et al. (2015) 144
Lipid droplets are essential for efficient clearance of cytosolic inclusion bodies Moldavski et al. (2015) 59
Starvation‐dependent regulation of Golgi quality control links the TOR signaling and vacuolar protein sorting pathways Dobzinski, Chuartzman, Kama, Schuldiner, and Gerst (2015) 25
An unrecognized function for COPII components in recruiting the viral replication protein BMV 1a to the perinuclear ER Li et al. (2016) 17
Molecular insight into arsenic toxicity via the genome‐wide deletion mutant screening of Saccharomyces cerevisiae Johnson et al. (2016) 114
Water‐transfer slows aging in Saccharomyces cerevisiae Cohen et al. (2016) 424
Characterization of proteome dynamics in oleate reveals a novel peroxisome targeting receptor (C′ GFP in oleate) Yifrach et al. (2016) 461
Characterization of proteome dynamics in oleate reveals a novel peroxisome targeting receptor (N′ GFP in oleate) Yifrach et al. (2016) 718
The Protease Ste24 clears clogged translocons Ast, Michaelis, and Schuldiner (2016) 106
The SND proteins constitute an alternative targeting route to the endoplasmic reticulum Aviram et al. (2016) 91
Combining deep sequencing, proteomics, phosphoproteomics, and functional screens to discover novel regulators of sphingolipid homeostasis Lebesgue et al. (2017) 569
Pex35 is a regulator of peroxisome abundance Yofe et al. (2017) 43
Cellular consequences of diminished protein O‐mannosyltransferase activity in bakers yeast Zatorska et al. (2017) 21
Iron affects Ire1 clustering propensity and the amplitude of endoplasmic reticulum stress signaling Cohen et al. (2017) 153
A pathway of targeted autophagy is induced by DNA damage in budding yeast Eapen et al. (2017) 21
Identification of seipin‐linked factors that act as determinants of a lipid droplet subpopulation (Pdr16‐Cherry) Eisenberg‐Bord et al. (2018) 49
Identification of seipin‐linked factors that act as determinants of a lipid droplet subpopulation (Galp‐GFP‐LDO45) Eisenberg‐Bord et al. (2018) 46