scholarly article | Q13442814 |
P2093 | author name string | Yi-Jiun Chen | |
Feng-Ming Wang | |||
Hong-Jiao Ouyang | |||
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Negative control of p53 by Sir2alpha promotes cell survival under stress | Q24291828 | ||
Sirt1 promotes fat mobilization in white adipocytes by repressing PPAR-gamma | Q24294948 | ||
Calorie restriction promotes mammalian cell survival by inducing the SIRT1 deacetylase | Q24297207 | ||
Physiology. Unfolding lipid metabolism | Q42548169 | ||
XBP1s levels are implicated in the biology and outcome of myeloma mediating different clinical outcomes to thalidomide-based treatments | Q43084908 | ||
Resveratrol-induced apoptosis is associated with Fas redistribution in the rafts and the formation of a death-inducing signaling complex in colon cancer cells | Q44539335 | ||
A role for SIR-2.1 regulation of ER stress response genes in determining C. elegans life span | Q46780211 | ||
SIR2 calls upon the ER. | Q46791843 | ||
Resveratrol inhibits proliferation, induces apoptosis, and overcomes chemoresistance through down-regulation of STAT3 and nuclear factor-kappaB-regulated antiapoptotic and cell survival gene products in human multiple myeloma cells. | Q50711998 | ||
SUMO modification regulates the transcriptional activity of XBP1 | Q24307512 | ||
Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase | Q24310456 | ||
The basic domain/leucine zipper protein hXBP-1 preferentially binds to and transactivates CRE-like sequences containing an ACGT core | Q24317656 | ||
Proapoptotic BAX and BAK modulate the unfolded protein response by a direct interaction with IRE1alpha | Q24322072 | ||
Signal integration in the endoplasmic reticulum unfolded protein response | Q27860577 | ||
Proteasome inhibitors disrupt the unfolded protein response in myeloma cells | Q28155919 | ||
Plasma cell differentiation and the unfolded protein response intersect at the transcription factor XBP-1 | Q28507338 | ||
PERK-dependent regulation of lipogenesis during mouse mammary gland development and adipocyte differentiation | Q28507769 | ||
Regulation of hepatic lipogenesis by the transcription factor XBP1 | Q28507784 | ||
XBP-1 is required for biogenesis of cellular secretory machinery of exocrine glands | Q28510479 | ||
The transcription factor XBP-1 is essential for the development and survival of dendritic cells | Q28512302 | ||
An essential role in liver development for transcription factor XBP-1 | Q28593777 | ||
Sirtuins in mammals: insights into their biological function | Q29615248 | ||
IRE1 signaling affects cell fate during the unfolded protein response | Q29615502 | ||
Developmental defects and p53 hyperacetylation in Sir2 homolog (SIRT1)-deficient mice | Q29619786 | ||
Conserved role of SIRT1 orthologs in fasting-dependent inhibition of the lipid/cholesterol regulator SREBP. | Q33953637 | ||
XBP-1 couples endoplasmic reticulum stress to augmented IFN-beta induction via a cis-acting enhancer in macrophages. | Q34047912 | ||
XBP1, downstream of Blimp-1, expands the secretory apparatus and other organelles, and increases protein synthesis in plasma cell differentiation | Q34345459 | ||
The differentiation and stress response factor XBP-1 drives multiple myeloma pathogenesis | Q35830099 | ||
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ER stress and diseases. | Q36731474 | ||
Activating transcription factor 4. | Q36805075 | ||
Endoplasmic reticulum stress in disease pathogenesis | Q36842308 | ||
Unconventional splicing of XBP-1 mRNA in the unfolded protein response | Q36989874 | ||
The ups and downs of SIRT1. | Q37274584 | ||
The endoplasmic reticulum stress response and aging | Q37519557 | ||
The role of X-box binding protein-1 in tumorigenicity. | Q37553966 | ||
Overexpression of human X-box binding protein 1 (XBP-1) in colorectal adenomas and adenocarcinomas. | Q38433525 | ||
Coactivator-dependent acetylation stabilizes members of the SREBP family of transcription factors. | Q39737054 | ||
The IRE1alpha-XBP1 pathway of the unfolded protein response is required for adipogenesis | Q39843795 | ||
Activation of the endoplasmic reticulum stress pathway is associated with survival of myeloma cells | Q40333400 | ||
Resveratrol inhibits myeloma cell growth, prevents osteoclast formation, and promotes osteoblast differentiation | Q40355275 | ||
p300 modulates ATF4 stability and transcriptional activity independently of its acetyltransferase domain | Q40362912 | ||
Delineation of a negative feedback regulatory loop that controls protein translation during endoplasmic reticulum stress | Q42163338 | ||
Multiple roles for acetylation in the interaction of p300 HAT with ATF-2. | Q42434119 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | cell biology | Q7141 |
negative regulation of DNA-binding transcription factor activity | Q14863100 | ||
sirtuin 1 | Q21113719 | ||
Sirtuin 1 | Q21498104 | ||
E1A binding protein p300 | Q21981065 | ||
P304 | page(s) | 245-52 | |
P577 | publication date | 2011-01-01 | |
P1433 | published in | Biochemical Journal | Q864221 |
P1476 | title | Regulation of unfolded protein response modulator XBP1s by acetylation and deacetylation | |
P478 | volume | 433 |
Q39035105 | 4-Phenylbutyrate inhibits tunicamycin-induced acute kidney injury via CHOP/GADD153 repression |
Q58591803 | 4-Phenylbutyric Acid Protects Ethanol-induced Damage in the Developing Mouse Brain |
Q27321032 | Ablation of C/EBP homologous protein does not protect T17M RHO mice from retinal degeneration |
Q26800025 | Age-Associated Weight Gain, Leptin, and SIRT1: A Possible Role for Hypothalamic SIRT1 in the Prevention of Weight Gain and Aging through Modulation of Leptin Sensitivity |
Q42164082 | An atypical unfolded protein response in heat shocked cells |
Q90196919 | Deacetylation of XBP1s by sirtuin 6 confers resistance to ER stress-induced hepatic steatosis |
Q40394811 | Endoplasmic Reticulum (ER) Stress Induces Sirtuin 1 (SIRT1) Expression via the PI3K-Akt-GSK3β Signaling Pathway and Promotes Hepatocellular Injury |
Q42350805 | Erratum: Proteostasis control by the unfolded protein response |
Q35986635 | Expression of XBP1s in bone marrow stromal cells is critical for myeloma cell growth and osteoclast formation |
Q92932318 | Foie gras and liver regeneration: a fat dilemma |
Q51324999 | Hepatic IRE1α regulates fasting-induced metabolic adaptive programs through the XBP1s-PPARα axis signalling. |
Q64929428 | Influence of Resveratrol on the Immune Response. |
Q38428350 | Intercellular interplay between Sirt1 signalling and cell metabolism in immune cell biology |
Q37512312 | Intricately Regulated: A Cellular Toolbox for Fine-Tuning XBP1 Expression and Activity |
Q38898700 | Mechanisms of alcohol-induced endoplasmic reticulum stress and organ injuries |
Q53632239 | Methyl-deficient diet promotes colitis and SIRT1-mediated endoplasmic reticulum stress. |
Q35841763 | MicroRNA-30c-2* limits expression of proadaptive factor XBP1 in the unfolded protein response |
Q33899037 | Microbial-Host Co-metabolites Are Prodromal Markers Predicting Phenotypic Heterogeneity in Behavior, Obesity, and Impaired Glucose Tolerance |
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Q47687461 | Oxidative stress promotes SIRT1 recruitment to the GADD34/PP1α complex to activate its deacetylase function |
Q27305957 | Pancreas-Specific Sirt1-Deficiency in Mice Compromises Beta-Cell Function without Development of Hyperglycemia |
Q43093620 | Protein targets of thioacetamide metabolites in rat hepatocytes |
Q38540196 | Proteostasis control by the unfolded protein response |
Q38206090 | Proteostasis in endoplasmic reticulum--new mechanisms in kidney disease |
Q36215658 | Regulation of dimethyl-fumarate toxicity by proteasome inhibitors |
Q37352508 | Regulation of the transcriptome by ER stress: non-canonical mechanisms and physiological consequences. |
Q34425883 | Renal protective effect of sirtuin 1 |
Q35681914 | Resveratrol triggers the pro-apoptotic endoplasmic reticulum stress response and represses pro-survival XBP1 signaling in human multiple myeloma cells. |
Q37150520 | SIRT1 is a Highly Networked Protein That Mediates the Adaptation to Chronic Physiological Stress. |
Q49868718 | SIRT1 protects the heart from ER stress-induced cell death through eIF2α deacetylation |
Q38170008 | SIRT1 regulation modulates stroke outcome |
Q42095065 | Sirt1-Sirt3 axis regulates human blood-brain barrier permeability in response to ischemia |
Q40755919 | Sirtuin 1 Regulates Dendritic Cell Activation and Autophagy during Respiratory Syncytial Virus-Induced Immune Responses |
Q37959305 | Sirtuin 1 in immune regulation and autoimmunity |
Q52589289 | Sirtuin-1(SIRT1) stimulates growth plate chondrogenesis by attenuating the PERK-eIF-2α-CHOP pathway in the unfolded protein response. |
Q47237639 | Sirtuins at the crossroads of stemness, aging, and cancer |
Q38050926 | Stress-induced self-cannibalism: on the regulation of autophagy by endoplasmic reticulum stress |
Q37894253 | Stressed out about obesity: IRE1α-XBP1 in metabolic disorders |
Q36604376 | Temporal Phosphoproteome Dynamics Induced by an ATP Synthase Inhibitor Citreoviridin |
Q35740553 | The acetylation of transcription factor HBP1 by p300/CBP enhances p16INK4A expression |
Q33554869 | The class III histone deacetylase sirtuin 1 in immune suppression and its therapeutic potential in rheumatoid arthritis |
Q37231067 | The emerging and diverse roles of sirtuins in cancer: a clinical perspective |
Q91807286 | The orphan nuclear receptor SHP regulates ER stress response by inhibiting XBP1s degradation |
Q29615499 | The unfolded protein response: controlling cell fate decisions under ER stress and beyond |
Q24293771 | The unfolded protein response: integrating stress signals through the stress sensor IRE1α |
Q39124353 | Transcriptional regulation of mouse mesencephalic astrocyte-derived neurotrophic factor in Neuro2a cells. |
Q24304996 | XBP1 mRNA splicing triggers an autophagic response in endothelial cells through BECLIN-1 transcriptional activation |
Q26998690 | Xenobiotic perturbation of ER stress and the unfolded protein response |
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