Pages that link to "Q27931442"
Jump to navigation
Jump to search
The following pages link to Role of mitochondria in the pheromone- and amiodarone-induced programmed death of yeast (Q27931442):
Displaying 50 items.
- Aging as a particular case of phenoptosis, the programmed death of an organism (a response to Kirkwood and Melov "On the programmed/non-programmed nature of ageing within the life history") (Q24616222) (← links)
- External and internal triggers of cell death in yeast (Q26751420) (← links)
- Lam1p YHR155W (Q27553191) (← links)
- Copper and manganese induce yeast apoptosis via different pathways (Q27929933) (← links)
- A new family of StART domain proteins at membrane contact sites has a role in ER-PM sterol transport. (Q27934991) (← links)
- ADP/ATP carrier is required for mitochondrial outer membrane permeabilization and cytochrome c release in yeast apoptosis (Q27938787) (← links)
- TheMEF2gene is essential for yeast longevity, with a dual role in cell respiration and maintenance of mitochondrial membrane potential (Q27938851) (← links)
- Cleavage of Mcd1 by caspase-like protease Esp1 promotes apoptosis in budding yeast (Q27939230) (← links)
- Apoptosis in yeast--mechanisms and benefits to a unicellular organism (Q28272610) (← links)
- Endonuclease G mediates α-synuclein cytotoxicity during Parkinson's disease (Q28300290) (← links)
- The role of mitochondria in yeast programmed cell death (Q28386025) (← links)
- Purpurin triggers caspase-independent apoptosis in Candida dubliniensis biofilms (Q28537918) (← links)
- Derivatives of rhodamine 19 as mild mitochondria-targeted cationic uncouplers (Q30500224) (← links)
- Crucial mitochondrial impairment upon CDC48 mutation in apoptotic yeast. (Q33249013) (← links)
- The Warburg effect suppresses oxidative stress induced apoptosis in a yeast model for cancer (Q33412131) (← links)
- Calnexin regulates apoptosis induced by inositol starvation in fission yeast (Q33482822) (← links)
- Caloric Restriction-Induced Extension of Chronological Lifespan Requires Intact Respiration in Budding Yeast (Q33654670) (← links)
- Synergistic roles of the proteasome and autophagy for mitochondrial maintenance and chronological lifespan in fission yeast. (Q33734309) (← links)
- The eEF1γ subunit contacts RNA polymerase II and binds vimentin promoter region (Q33789087) (← links)
- Lack of trehalose accelerates H2O2-induced Candida albicans apoptosis through regulating Ca2 signaling pathway and caspase activity (Q33796684) (← links)
- Hydrogen Peroxide Acts on Sensitive Mitochondrial Proteins to Induce Death of a Fungal Pathogen Revealed by Proteomic Analysis (Q33960340) (← links)
- Response of Saccharomyces cerevisiae to the stimulation of lipopolysaccharide (Q34020428) (← links)
- The Antifungal Plant Defensin HsAFP1 from Heuchera sanguinea Induces Apoptosis in Candida albicans (Q34047342) (← links)
- Swapping of the N-terminus of VDAC1 with VDAC3 restores full activity of the channel and confers anti-aging features to the cell (Q34113154) (← links)
- The Mechanism of Antifungal Action of Essential Oil from Dill (Anethum graveolens L.) on Aspergillus flavus (Q34137499) (← links)
- A Mitochondria-Dependent Pathway Mediates the Apoptosis of GSE-Induced Yeast (Q34189772) (← links)
- Programmed cell death in Saccharomyces cerevisiae is hampered by the deletion of GUP1 gene (Q34278323) (← links)
- Programmed and altruistic ageing (Q34469684) (← links)
- Penetrating cations enhance uncoupling activity of anionic protonophores in mitochondria (Q34692496) (← links)
- Multiple signaling pathways regulate yeast cell death during the response to mating pheromones (Q34886111) (← links)
- Identification and phylogenetic analyses of VASt, an uncharacterized protein domain associated with lipid-binding domains in Eukaryotes (Q35194975) (← links)
- Trichothecene Mycotoxins Inhibit Mitochondrial Translation—Implication for the Mechanism of Toxicity (Q35710230) (← links)
- Programmed cell death in aging (Q35779447) (← links)
- Oxidative stress and programmed cell death in yeast (Q36049724) (← links)
- Enhanced J-protein interaction and compromised protein stability of mtHsp70 variants lead to mitochondrial dysfunction in Parkinson's disease (Q36083113) (← links)
- Why yeast cells can undergo apoptosis: death in times of peace, love, and war (Q36119166) (← links)
- Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan (Q36304181) (← links)
- Apoptotic signals induce specific degradation of ribosomal RNA in yeast (Q36676485) (← links)
- Mitochondrial death pathways in yeast and mammalian cells (Q36844722) (← links)
- Molecular machinery of mitochondrial dynamics in yeast (Q36909235) (← links)
- Human lactoferrin induces apoptosis-like cell death in Candida albicans: critical role of K -channel-mediated K efflux (Q36949508) (← links)
- Fungicidal activity of amiodarone is tightly coupled to calcium influx (Q37137863) (← links)
- ISC1-dependent metabolic adaptation reveals an indispensable role for mitochondria in induction of nuclear genes during the diauxic shift in Saccharomyces cerevisiae (Q37155488) (← links)
- Apoptotic death of ageing yeast. (Q37265273) (← links)
- Of yeast, mice and men: MAMs come in two flavors. (Q37607813) (← links)
- Apoptosis in yeast: triggers, pathways, subroutines (Q37675909) (← links)
- How do yeast sense mitochondrial dysfunction? (Q37698326) (← links)
- Mitochondrial dynamics in yeast cell death and aging (Q37936567) (← links)
- Achievements and perspectives in yeast acetic acid-induced programmed cell death pathways (Q37936572) (← links)
- Roles of mitochondrial dynamics under stressful and normal conditions in yeast cells. (Q38129875) (← links)