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 |