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AB216839

Anti-ATF-4 antibody

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(24 Publications)

Anti-ATF-4 antibody (ab216839) is a rabbit polyclonal antibody detecting ATF-4 in Western Blot, Flow Cytometry (Intra), IHC-P, ICC/IF. Suitable for Human, Mouse, Rat.

- Over 10 publications

View Alternative Names

CREB2, TXREB, ATF4, Cyclic AMP-dependent transcription factor ATF-4, cAMP-dependent transcription factor ATF-4, Activating transcription factor 4, Cyclic AMP-responsive element-binding protein 2, Tax-responsive enhancer element-binding protein 67, CREB-2, cAMP-responsive element-binding protein 2, TaxREB67

8 Images
Western blot - Anti-ATF-4 antibody (AB216839)
  • WB

Supplier Data

Western blot - Anti-ATF-4 antibody (AB216839)

All lanes:

Western blot - Anti-ATF-4 antibody (ab216839) at 1/1000 dilution

Lane 1:

Mouse Cerebrum tissue lysates

Lane 2:

Rat Cerebrum tissue lysates

Lane 3:

Human HeLa cell lysates

Lane 4:

Human Jurkat cell lysates

Lane 5:

Human HL-60 cell lysates

Predicted band size: 38 kDa

false

Immunocytochemistry/ Immunofluorescence - Anti-ATF-4 antibody (AB216839)
  • ICC/IF

Supplier Data

Immunocytochemistry/ Immunofluorescence - Anti-ATF-4 antibody (AB216839)

Immunofluorescent analysis of 4% Paraformaldehyde-fixed, TritonX-100 permeabilized Human U2OS cells labelling ATF-4 with ab216839 at 1/100 dilution for 90 minutes at 37°C; followed by a conjugated Goat Anti-Rabbit IgG antibody at 37°C for 90 minutes. DAPI was used to stain the cell nuclei. The Nuclear counterstain was DAPI (Blue)

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)
  • IHC-P

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Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)

Immunohistochemical analysis of Formalin-fixed paraffin-embedded Human rectal carcinoma tissue tissue labeling ATF-4 with ab216839 at 1/200 dilution.

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)
  • IHC-P

Supplier Data

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)

Immunohistochemical analysis of Paraformaldehyde-fixed, paraffin embedded Human breast cancer labeling ATF-4 with ab216839 at 1/200 dilution.

Immunocytochemistry/ Immunofluorescence - Anti-ATF-4 antibody (AB216839)
  • ICC/IF

Supplier Data

Immunocytochemistry/ Immunofluorescence - Anti-ATF-4 antibody (AB216839)

Immunofluorescent analysis of 4% Paraformaldehyde-fixed, TritonX-100 permeabilized Human Hela cells labelling ATF-4 with ab216839 at 1/100 dilution for 90 minutes at 37°C; followed by a conjugated Goat Anti-Rabbit IgG antibody at 37°C for 90 minutes. DAPI was used to stain the cell nuclei.

The Nuclear counterstain was DAPI (Blue).

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)
  • IHC-P

Supplier Data

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)

Immunohistochemical analysis of Formalin-fixed paraffin-embedded Mouse brain tissue labeling ATF-4 with ab216839 at 1/200 dilution.

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)
  • IHC-P

Supplier Data

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-ATF-4 antibody (AB216839)

Immunohistochemical analysis of Paraformaldehyde-fixed, paraffin embedded Rat lung labeling ATF-4 with ab216839 at 1/200 dilution.

Flow Cytometry (Intracellular) - Anti-ATF-4 antibody (AB216839)
  • Flow Cyt (Intra)

Supplier Data

Flow Cytometry (Intracellular) - Anti-ATF-4 antibody (AB216839)

Flow cytometric analysis of 4% paraformaldehyde fixed 90% methanol permeabilized mouse spleen cells labelling ATF-4 with ab216839 at 1/50 dilution (green) compared with an isotype control (orange) and an unlabelled control (cells without incubation with primary antibody and secondary antibody) (Blue).

Key facts

Host species

Rabbit

Clonality

Polyclonal

Isotype

IgG

Carrier free

No

Reacts with

Mouse, Rat, Human

Applications

ICC/IF, Flow Cyt (Intra), IHC-P, WB

applications

Immunogen

Synthetic Peptide within Human ATF4 aa 200-300 conjugated to Keyhole Limpet Haemocyanin. The exact immunogen used to generate this antibody is proprietary information.

P18848

Reactivity data

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Product details

What is this antibody validated in?
Anti-ATF-4 antibody (ab216839) is a rabbit polyclonal antibody and is validated for use in Western Blot (WB), Flow Cytometry (Intra), Flow Cytometry (Flow Cyt), Immunohistochemistry (IHC-P), Immunocytochemistry/immunofluorescence (ICC/IF) in Human, Mouse, Rat samples.

What is the molecular weight of ATF-4?
Anti-ATF-4 (ab216839) specifically detects a band for ATF-4 (UniProt: P18848) at a molecular weight of 38kDa.

Trusted by the scientific community
Anti-ATF-4 (ab216839) was first used in a scientific publication in 2016 and has been cited over 10 times in peer-reviewed journals.

Properties and storage information

Form
Liquid
Purification technique
Affinity purification Protein A
Storage buffer
pH: 7.4 Preservative: 0.02% Proclin 300 Constituents: 50% Glycerol (glycerin, glycerine), 48.98% TBS, 1X, 1% BSA
Shipped at conditions
Blue Ice
Appropriate short-term storage duration
1-2 weeks
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

Activating Transcription Factor 4 (ATF-4) also known as CREB-2 is a fundamental protein involved in cellular stress responses. It functions mechanically as a transcription factor that regulates gene expression in reaction to stress signals. The molecular weight of ATF-4 is approximately 38 kDa. ATF-4 gets expressed in various tissues including the brain liver and pancreas reflecting its involvement in diverse cellular processes. Scientists widely use techniques like Western blot to detect and study ATF-4 expression patterns due to its reliable measurement of the ATF-4 molecular weight.
Biological function summary

ATF-4 participates in controlling genes linked to amino acid metabolism redox homeostasis and apoptosis. It does not work alone; ATF-4 often forms part of larger complexes interacting with other transcription factors like C/EBP and ATF-3 to exert its effects. These interactions enable it to respond accurately to different types of cellular stress by adjusting the expression of specific genes ensuring that cells can adapt to changing conditions.

Pathways

ATF-4 plays a significant role in the integrated stress response (ISR) and the unfolded protein response (UPR). Through these pathways it collaborates with proteins such as PERK (protein kinase R-like endoplasmic reticulum kinase) and eIF2α. The ISR and UPR help cells cope with stress by modulating protein synthesis and promoting the expression of protective genes. By interacting with these pathways ATF-4 contributes to maintaining cellular homeostasis and protecting cells from damage.

ATF-4 has been linked to conditions such as neurodegenerative diseases and cancer. In neurodegenerative disorders like Alzheimer's disease ATF-4 can regulate genes involved in neuronal survival and apoptosis interacting with proteins like CHOP. In cancer ATF-4 influences tumor cell survival and growth through its role in stress responses. Understanding ATF-4's relationship with diseases highlights its potential as a therapeutic target in the treatment of these complex disorders.

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

Transcription factor that binds the cAMP response element (CRE) (consensus : 5'-GTGACGT[AC][AG]-3') and displays two biological functions, as regulator of metabolic and redox processes under normal cellular conditions, and as master transcription factor during integrated stress response (ISR) (PubMed : 16682973, PubMed : 17684156, PubMed : 31023583, PubMed : 31444471, PubMed : 32132707). Binds to asymmetric CRE's as a heterodimer and to palindromic CRE's as a homodimer (By similarity). Core effector of the ISR, which is required for adaptation to various stress such as endoplasmic reticulum (ER) stress, amino acid starvation, mitochondrial stress or oxidative stress (PubMed : 31023583, PubMed : 32132707). During ISR, ATF4 translation is induced via an alternative ribosome translation re-initiation mechanism in response to EIF2S1/eIF-2-alpha phosphorylation, and stress-induced ATF4 acts as a master transcription factor of stress-responsive genes in order to promote cell recovery (PubMed : 31023583, PubMed : 32132706, PubMed : 32132707). Promotes the transcription of genes linked to amino acid sufficiency and resistance to oxidative stress to protect cells against metabolic consequences of ER oxidation (By similarity). Activates the transcription of NLRP1, possibly in concert with other factors in response to ER stress (PubMed : 26086088). Activates the transcription of asparagine synthetase (ASNS) in response to amino acid deprivation or ER stress (PubMed : 11960987). However, when associated with DDIT3/CHOP, the transcriptional activation of the ASNS gene is inhibited in response to amino acid deprivation (PubMed : 18940792). Together with DDIT3/CHOP, mediates programmed cell death by promoting the expression of genes involved in cellular amino acid metabolic processes, mRNA translation and the terminal unfolded protein response (terminal UPR), a cellular response that elicits programmed cell death when ER stress is prolonged and unresolved (By similarity). Activates the expression of COX7A2L/SCAF1 downstream of the EIF2AK3/PERK-mediated unfolded protein response, thereby promoting formation of respiratory chain supercomplexes and increasing mitochondrial oxidative phosphorylation (PubMed : 31023583). Together with DDIT3/CHOP, activates the transcription of the IRS-regulator TRIB3 and promotes ER stress-induced neuronal cell death by regulating the expression of BBC3/PUMA in response to ER stress (PubMed : 15775988). May cooperate with the UPR transcriptional regulator QRICH1 to regulate ER protein homeostasis which is critical for cell viability in response to ER stress (PubMed : 33384352). In the absence of stress, ATF4 translation is at low levels and it is required for normal metabolic processes such as embryonic lens formation, fetal liver hematopoiesis, bone development and synaptic plasticity (By similarity). Acts as a regulator of osteoblast differentiation in response to phosphorylation by RPS6KA3/RSK2 : phosphorylation in osteoblasts enhances transactivation activity and promotes expression of osteoblast-specific genes and post-transcriptionally regulates the synthesis of Type I collagen, the main constituent of the bone matrix (PubMed : 15109498). Cooperates with FOXO1 in osteoblasts to regulate glucose homeostasis through suppression of beta-cell production and decrease in insulin production (By similarity). Activates transcription of SIRT4 (By similarity). Regulates the circadian expression of the core clock component PER2 and the serotonin transporter SLC6A4 (By similarity). Binds in a circadian time-dependent manner to the cAMP response elements (CRE) in the SLC6A4 and PER2 promoters and periodically activates the transcription of these genes (By similarity). Mainly acts as a transcriptional activator in cellular stress adaptation, but it can also act as a transcriptional repressor : acts as a regulator of synaptic plasticity by repressing transcription, thereby inhibiting induction and maintenance of long-term memory (By similarity). Regulates synaptic functions via interaction with DISC1 in neurons, which inhibits ATF4 transcription factor activity by disrupting ATF4 dimerization and DNA-binding (PubMed : 31444471).. (Microbial infection) Binds to a Tax-responsive enhancer element in the long terminal repeat of HTLV-I.
See full target information ATF4

Publications (24)

Recent publications for all applications. Explore the full list and refine your search

The journal of physiological sciences : JPS 75:100039 PubMed40782567

2025

ATF4 transcriptionally activates NUPR1 to promote ferroptosis in chondrocytes and osteoarthritis development.

Applications

Unspecified application

Species

Unspecified reactive species

Chen Kuang,Taiyang Liao,Lishi Jie,Yibao Wei,Deren Liu,Enrui Hu,Liang Ding,Peimin Wang

Stem cell research & therapy 16:382 PubMed40671164

2025

Endothelial cell-secreted bone targeting exosomes promote angiogenesis coupling with osteogenesis via the PERK-ATF4-CRELD2 pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Zhilong Pi,You Wu,Jingyi Wu,Tao Zhang,Pingyue Li,Renkai Wang

Medical gas research 15:459-470 PubMed40300881

2025

Magnesium-assisted hydrogen improves isoproterenol-induced heart failure.

Applications

Unspecified application

Species

Unspecified reactive species

Fengbao Chen,Ruimin Chen,Lili Yang,Bowen Shen,Yunting Wang,Yongfeng Gao,Rui Tan,Xiaomin Zhao

Science advances 11:eadq1575 PubMed40184463

2025

Atf3 controls transitioning in female mitochondrial cardiomyopathy as identified by spatial and single-cell transcriptomics.

Applications

Unspecified application

Species

Unspecified reactive species

Tasneem Qaqorh,Yusuke Takahashi,Kohei Sameshima,Kentaro Otani,Issei Yazawa,Yuya Nishida,Kohei Tonai,Yoshitaka Fujihara,Mizuki Honda,Shinya Oki,Yasuyuki Ohkawa,David R Thorburn,Ann E Frazier,Atsuhito Takeda,Yoshihiko Ikeda,Heima Sakaguchi,Takuya Watanabe,Norihide Fukushima,Yasumasa Tsukamoto,Naomasa Makita,Osamu Yamaguchi,Kei Murayama,Akira Ohtake,Yasushi Okazaki,Takanari Kimura,Hisakazu Kato,Hijiri Inoue,Ken Matsuoka,Seiji Takashima,Yasunori Shintani

Cell death discovery 11:27 PubMed39870616

2025

METTL1 coordinates cutaneous squamous cell carcinoma progression via the m7G modification of the ATF4 mRNA.

Applications

Unspecified application

Species

Unspecified reactive species

Xinru Zhang,Tong Chen,Fanrong Zhang,Huanhuan Shi,Xiang Li,Zhijuan Wang,Dong Wang,Chao Hou

PloS one 19:e0309892 PubMed39531447

2024

MiR-204-5p regulates SIRT1 to promote the endoplasmic reticulum stress-induced apoptosis of inner ear cells in C57BL/6 mice with hearing loss.

Applications

Unspecified application

Species

Unspecified reactive species

Yaqin Hu,Xiaoqin Luo,Hongjiang Chen,Jing Ke,Menglong Feng,Wei Yuan

Neuropsychiatric disease and treatment 20:1969-1983 PubMed39430656

2024

Overexpression of ATF4 Inhibits Ferroptosis to Alleviate Anxiety Disorders by Activating the TGF-β Signaling Pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Wentao Wu,Fei Wen,Jiaxin Hu,Leijun Li

Experimental and therapeutic medicine 27:55 PubMed38234627

2024

PDCD4 silencing alleviates KA‑induced neurotoxicity of HT22 cells by inhibiting endoplasmic reticulum stress via blocking the MAPK/NF‑κB signaling pathway.

Applications

Unspecified application

Species

Unspecified reactive species

Peng Li,Guiling Cao

Nature communications 15:546 PubMed38228611

2024

NAD dependent UPR activation underlies intestinal aging caused by mitochondrial DNA mutations.

Applications

Unspecified application

Species

Unspecified reactive species

Liang Yang,Zifeng Ruan,Xiaobing Lin,Hao Wang,Yanmin Xin,Haite Tang,Zhijuan Hu,Yunhao Zhou,Yi Wu,Junwei Wang,Dajiang Qin,Gang Lu,Kerry M Loomes,Wai-Yee Chan,Xingguo Liu

Cells 12: PubMed38067151

2023

Antifibrotic Effect of Selenium-Containing Nanoparticles on a Model of TAA-Induced Liver Fibrosis.

Applications

Unspecified application

Species

Unspecified reactive species

Elena G Varlamova,Michail Victorovich Goltyaev,Vladimir Vladimirovich Rogachev,Sergey V Gudkov,Elena V Karaduleva,Egor A Turovsky
View all publications

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