scholarly article | Q13442814 |
review article | Q7318358 |
P50 | author | Toren Finkel | Q67226224 |
P2093 | author name string | Jeanho Yun | |
P2860 | cites work | Role of Nrf2 in oxidative stress and toxicity | Q23919669 |
Integrative genomics identifies MCU as an essential component of the mitochondrial calcium uniporter | Q24306825 | ||
A forty-kilodalton protein of the inner membrane is the mitochondrial calcium uniporter | Q24306850 | ||
Human mitochondrial peptide deformylase, a new anticancer target of actinonin-based antibiotics | Q24307590 | ||
MAVS forms functional prion-like aggregates to activate and propagate antiviral innate immune response | Q24316320 | ||
Evolutionary conservation of the clk-1-dependent mechanism of longevity: loss of mclk1 increases cellular fitness and lifespan in mice | Q24535960 | ||
A rescue factor abolishing neuronal cell death by a wide spectrum of familial Alzheimer's disease genes and Aβ | Q24627359 | ||
Antioxidants prevent health-promoting effects of physical exercise in humans | Q24646248 | ||
Reactive oxygen species are essential for autophagy and specifically regulate the activity of Atg4 | Q24670840 | ||
Metformin therapy and risk of cancer in patients with type 2 diabetes: systematic review | Q26850912 | ||
Transcriptional integration of mitochondrial biogenesis | Q26998468 | ||
A mitochondrial superoxide signal triggers increased longevity in Caenorhabditis elegans | Q27322678 | ||
Induction of cytoprotective pathways is central to the extension of lifespan conferred by multiple longevity pathways | Q27332940 | ||
Protective coupling of mitochondrial function and protein synthesis via the eIF2α kinase GCN-2 | Q27333486 | ||
Identification and characterization of MAVS, a mitochondrial antiviral signaling protein that activates NF-kappaB and IRF 3 | Q27861127 | ||
Rtg3p, a basic helix-loop-helix/leucine zipper protein that functions in mitochondrial-induced changes in gene expression, contains independent activation domains | Q27929957 | ||
Mitochondria-to-nuclear signaling is regulated by the subcellular localization of the transcription factors Rtg1p and Rtg3p | Q27930525 | ||
Role of the ABC transporter Mdl1 in peptide export from mitochondria | Q27932608 | ||
Transactivation by Rtg1p, a basic helix-loop-helix protein that functions in communication between mitochondria and the nucleus in yeast | Q27933146 | ||
Mechanism of metabolic control. Target of rapamycin signaling links nitrogen quality to the activity of the Rtg1 and Rtg3 transcription factors | Q27933856 | ||
Rtg2 protein links metabolism and genome stability in yeast longevity | Q27934581 | ||
RTG-dependent mitochondria to nucleus signaling is negatively regulated by the seven WD-repeat protein Lst8p | Q27934646 | ||
Genome-wide responses to mitochondrial dysfunction | Q27935978 | ||
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SIRT1 functionally interacts with the metabolic regulator and transcriptional coactivator PGC-1{alpha} | Q28235481 | ||
Nutrient control of glucose homeostasis through a complex of PGC-1alpha and SIRT1 | Q28237795 | ||
Reactive oxygen species promote TNFalpha-induced death and sustained JNK activation by inhibiting MAP kinase phosphatases | Q28239642 | ||
Glucose restriction extends Caenorhabditis elegans life span by inducing mitochondrial respiration and increasing oxidative stress | Q28251449 | ||
Mortality in randomized trials of antioxidant supplements for primary and secondary prevention: systematic review and meta-analysis | Q28290519 | ||
Metformin induces a dietary restriction-like state and the oxidative stress response to extend C. elegans Healthspan via AMPK, LKB1, and SKN-1 | Q28472548 | ||
Reversal of the mitochondrial phenotype and slow development of oxidative biomarkers of aging in long-lived Mclk1+/- mice | Q28512998 | ||
Mitochondrial reactive oxygen species trigger hypoxia-induced transcription | Q29614203 | ||
A systematic RNAi screen identifies a critical role for mitochondria in C. elegans longevity | Q29614550 | ||
Evidence that metformin exerts its anti-diabetic effects through inhibition of complex 1 of the mitochondrial respiratory chain | Q29615210 | ||
Muscle mitohormesis promotes longevity via systemic repression of insulin signaling | Q37377087 | ||
Regulation of organismal proteostasis by transcellular chaperone signaling | Q37638939 | ||
Resistance to type 2 diabetes mellitus: a matter of hormesis? | Q37949231 | ||
Inflammasomes and their roles in health and disease | Q38043048 | ||
NAD and ADP-ribose metabolism in mitochondria | Q38101602 | ||
Perinuclear mitochondrial clustering creates an oxidant-rich nuclear domain required for hypoxia-induced transcription | Q38323862 | ||
Retrograde Ca2+ signaling in C2C12 skeletal myocytes in response to mitochondrial genetic and metabolic stress: a novel mode of inter-organelle crosstalk | Q40976490 | ||
Xenohormesis: sensing the chemical cues of other species | Q41711457 | ||
Mitochondrial electron transport is a key determinant of life span in Caenorhabditis elegans | Q43799857 | ||
Why translation counts for mitochondria - retrograde signalling links mitochondrial protein synthesis to mitochondrial biogenesis and cell proliferation | Q43916395 | ||
Extension of Drosophila life span by RNAi of the mitochondrial respiratory chain | Q44249225 | ||
Increased levels of hydrogen peroxide induce a HIF-1-dependent modification of lipid metabolism in AMPK compromised C. elegans dauer larvae | Q44279903 | ||
ClpP mediates activation of a mitochondrial unfolded protein response in C. elegans | Q47069058 | ||
Compartment-specific perturbation of protein handling activates genes encoding mitochondrial chaperones | Q47069260 | ||
The mitochondrial genotype can influence nuclear gene expression in yeast | Q48350472 | ||
Defining hormesis. | Q52546581 | ||
A mitochondrial ribosomal and RNA decay pathway blocks cell proliferation. | Q54316181 | ||
A systems approach for decoding mitochondrial retrograde signaling pathways. | Q54447301 | ||
Coordinate induction of energy gene expression in tissues of mitochondrial disease patients | Q78101648 | ||
Signal transduction by reactive oxygen species | Q29615230 | ||
Mitochondrial membrane potential regulates PINK1 import and proteolytic destabilization by PARL | Q29615624 | ||
The cell-non-autonomous nature of electron transport chain-mediated longevity | Q29617238 | ||
Suppression of reactive oxygen species and neurodegeneration by the PGC-1 transcriptional coactivators | Q29617353 | ||
Reactive oxygen species have a causal role in multiple forms of insulin resistance | Q29619831 | ||
Effect of selenium and vitamin E on risk of prostate cancer and other cancers: the Selenium and Vitamin E Cancer Prevention Trial (SELECT) | Q29619860 | ||
Role of sirtuins in lifespan regulation is linked to methylation of nicotinamide | Q30582056 | ||
The matrix peptide exporter HAF-1 signals a mitochondrial UPR by activating the transcription factor ZC376.7 in C. elegans | Q33757350 | ||
A mitochondrial specific stress response in mammalian cells | Q34090940 | ||
TLR signalling augments macrophage bactericidal activity through mitochondrial ROS. | Q34180844 | ||
Signal transduction by mitochondrial oxidants | Q34207242 | ||
Humanin: a harbinger of mitochondrial-derived peptides? | Q34327412 | ||
The NAD(+)/Sirtuin Pathway Modulates Longevity through Activation of Mitochondrial UPR and FOXO Signaling | Q34358623 | ||
Metformin improves healthspan and lifespan in mice | Q34360789 | ||
Effects of long-term vitamin E supplementation on cardiovascular events and cancer: a randomized controlled trial | Q34403303 | ||
Interorganelle signaling is a determinant of longevity in Saccharomyces cerevisiae | Q34606789 | ||
Mitochondrial reactive oxygen species promote production of proinflammatory cytokines and are elevated in TNFR1-associated periodic syndrome (TRAPS) | Q34681297 | ||
Inhibition of respiration extends C. elegans life span via reactive oxygen species that increase HIF-1 activity | Q34683601 | ||
Oral administration of vitamin C decreases muscle mitochondrial biogenesis and hampers training-induced adaptations in endurance performance. | Q34733232 | ||
Regulation of yeast chronological life span by TORC1 via adaptive mitochondrial ROS signaling | Q35032890 | ||
Cutting edge: reactive oxygen species inhibitors block priming, but not activation, of the NLRP3 inflammasome | Q35091448 | ||
The human mitochondrial transcriptome | Q35178219 | ||
Inhibition of mitochondrial translation as a therapeutic strategy for human acute myeloid leukemia | Q35564841 | ||
Bacterial social engagements | Q35935803 | ||
The yeast retrograde response as a model of intracellular signaling of mitochondrial dysfunction | Q35966892 | ||
Exploring the therapeutic space around NAD+. | Q36317201 | ||
Mitochondria to nucleus stress signaling: a distinctive mechanism of NFkappaB/Rel activation through calcineurin-mediated inactivation of IkappaBbeta | Q36323494 | ||
Mitochondrial import efficiency of ATFS-1 regulates mitochondrial UPR activation. | Q36456043 | ||
Mitochondrial morphology transitions and functions: implications for retrograde signaling? | Q36700290 | ||
Impaired insulin/IGF1 signaling extends life span by promoting mitochondrial L-proline catabolism to induce a transient ROS signal | Q36835127 | ||
Mitonuclear protein imbalance as a conserved longevity mechanism | Q36873369 | ||
Epigenetic silencing mediates mitochondria stress-induced longevity | Q36960145 | ||
Mitochondrial hormesis links low-dose arsenite exposure to lifespan extension | Q37005002 | ||
Mitochondrial SKN-1/Nrf mediates a conserved starvation response | Q37174370 | ||
Lysosomal membrane permeabilization in cell death | Q37310191 | ||
Reversible acetylation of PGC-1: connecting energy sensors and effectors to guarantee metabolic flexibility | Q37349140 | ||
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | cell biology | Q7141 |
P304 | page(s) | 757-66 | |
P577 | publication date | 2014-05-06 | |
P1433 | published in | Cell Metabolism | Q1254684 |
P1476 | title | Mitohormesis | |
P478 | volume | 19 |