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AB47454

Anti-Hsp70 antibody [N27F3-4]

4

(3 Reviews)

|

(8 Publications)

Mouse Monoclonal Hsp70 antibody. Suitable for IP, WB, IHC-P, ICC/IF and reacts with Rat, Human, Mouse samples. Cited in 8 publications. Immunogen corresponding to Recombinant Full Length Protein corresponding to Human HSPA1A.

View Alternative Names

HSP72, HSPA1, HSX70, HSPA1A, Heat shock 70 kDa protein 1A, Heat shock 70 kDa protein 1, Heat shock protein family A member 1A, HSP70-1, HSP70.1, HSP72, HSPA1B, Heat shock 70 kDa protein 1B, Heat shock 70 kDa protein 2, Heat shock protein family A member 1B, HSP70-2, HSP70.2

4 Images
Immunocytochemistry/ Immunofluorescence - Anti-Hsp70 antibody [N27F3-4] (AB47454)
  • ICC/IF

Unknown

Immunocytochemistry/ Immunofluorescence - Anti-Hsp70 antibody [N27F3-4] (AB47454)

ICC/IF image of ab47454 stained Hek293 cells. The cells were 100% methanol fixed (5 min) and then incubated in 1%BSA / 10% normal goat serum / 0.3M glycine in 0.1% PBS-Tween for 1h to permeabilise the cells and block non-specific protein-protein interactions. The cells were then incubated with the antibody (ab47454, 5µg/ml) overnight at +4°C. The secondary antibody (green) was ab96879, DyLight® 488 goat anti-mouse IgG (H+L) used at a 1/250 dilution for 1h. Alexa Fluor® 594 WGA was used to label plasma membranes (red) at a 1/200 dilution for 1h. DAPI was used to stain the cell nuclei (blue) at a concentration of 1.43µM.

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-Hsp70 antibody [N27F3-4] (AB47454)
  • IHC-P

Supplier Data

Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-Hsp70 antibody [N27F3-4] (AB47454)

Immunohistochemistry analysis using ab47454 (1 : 100) staining paraffin-embedded mouse backskin. Stained for 1 hour at RT. Secondary Antibody : FITC Goat Anti-Mouse (green) at 1 : 50 for 1 hour at RT.

Immunoprecipitation - Anti-Hsp70 antibody [N27F3-4] (AB47454)
  • IP

Lab

Immunoprecipitation - Anti-Hsp70 antibody [N27F3-4] (AB47454)

Hsp70 was immunoprecipitated using 0.5mg Rat Testis tissue lysate, 5μg of Mouse monoclonal to Hsp70 and 50μl of protein G magnetic beads (+). No antibody was added to the control (-).

The antibody was incubated under agitation with Protein G beads for 10min, Rat Testis tissue lysate lysate diluted in RIPA buffer was added to each sample and incubated for a further 10min under agitation.

Proteins were eluted by addition of 40μl SDS loading buffer and incubated for 10min at 70°C; 10μl of each sample was separated on a SDS PAGE gel, transferred to a nitrocellulose membrane, blocked with 5% BSA and probed with ab47454.

Secondary : Goat polyclonal to mouse IgG light chain specific (HRP) at 1/20,000 dilution.

Band : 70kDa, non specific bands - 50kDa : We are unsure as to the identity of this extra band; Hsp70

All lanes:

Immunoprecipitation - Anti-Hsp70 antibody [N27F3-4] (ab47454)

Predicted band size: 70 kDa

true

Exposure time: 20min

Western blot - Anti-Hsp70 antibody [N27F3-4] (AB47454)
  • WB

AbReview37825****

Western blot - Anti-Hsp70 antibody [N27F3-4] (AB47454)

All lanes:

Western blot - Anti-Hsp70 antibody [N27F3-4] (ab47454) at 1/500 dilution

All lanes:

Apteronotus leptorhynchus brain tissue lysate at 50 µg

Secondary

All lanes:

Alexa Fluor® 488-conjugated Goat anti-mouse IgG polyclonal at 1/1000 dilution

Predicted band size: 70 kDa

Observed band size: 70 kDa

false

Exposure time: 5min

This image is courtesy of an anonymous Abreview

Key facts

Host species

Mouse

Clonality

Monoclonal

Clone number

N27F3-4

Isotype

IgG1

Carrier free

No

Reacts with

Mouse, Rat, Human

Applications

IHC-P, WB, IP, ICC/IF

applications

Immunogen

Recombinant Full Length Protein corresponding to Human HSPA1A.

P0DMV8

Specificity

Detects 72 and 73kDa proteins corresponding to the molecular mass of inducible Hsp and Hsc70 of SDS PAGE immunoblots.

Reactivity data

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Properties and storage information

Form
Liquid
Purification technique
Affinity purification Protein G
Storage buffer
Preservative: 0.09% Sodium azide Constituents: PBS, 50% Glycerol (glycerin, glycerine)
Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
-20°C
Storage information
Stable for 12 months at -20°C

Supplementary information

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

Hsp70 also known as Heat Shock Protein 70 or HSPA1B is a molecular chaperone with a mass of approximately 70 kDa. It plays a mechanical role by assisting in the proper folding of nascent polypeptide chains and the refolding of misfolded proteins. Researchers often detect Hsp70 using Western blot and immunohistochemistry (IHC) techniques. Hsp70 is widely expressed in many tissues particularly during stress conditions like heat shock where its expression level increases significantly.
Biological function summary

Hsp70 operates by stabilizing intermediate states of folding proteins preventing aggregation and facilitating the correct folding process. It often forms a complex with co-chaperones such as Hsp40 and nucleotide exchange factors. This complex is essential for the protein's activity and function. Additionally Hsp70 participates in protein degradation pathways by guiding misfolded proteins to the proteasome for degradation maintaining cellular homeostasis.

Pathways

This molecular chaperone plays significant roles in the heat shock response and unfolded protein response pathways. Hsp70 interacts closely with proteins such as Hsp90 and co-chaperones which together help protect cells from stress-induced damage. The protein also participates in the JAK/STAT signaling pathway influencing cell proliferation and apoptosis. These interactions suggest an integral role in maintaining cellular integrity during stress conditions.

Overexpression of Hsp70 has been associated with various cancers and neurodegenerative diseases. In cancer Hsp70 helps tumor cells survive the hostile tumor microenvironment partly by interacting with anti-apoptotic proteins such as Bcl-2. In neurodegenerative disorders such as Alzheimer's disease Hsp70 associates with amyloid-beta peptides potentially mitigating their aggregation toxicity. These interactions highlight Hsp70's importance in both protective and pathological cellular processes.

Product protocols

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

Target data

Molecular chaperone implicated in a wide variety of cellular processes, including protection of the proteome from stress, folding and transport of newly synthesized polypeptides, activation of proteolysis of misfolded proteins and the formation and dissociation of protein complexes. Plays a pivotal role in the protein quality control system, ensuring the correct folding of proteins, the re-folding of misfolded proteins and controlling the targeting of proteins for subsequent degradation. This is achieved through cycles of ATP binding, ATP hydrolysis and ADP release, mediated by co-chaperones. The co-chaperones have been shown to not only regulate different steps of the ATPase cycle, but they also have an individual specificity such that one co-chaperone may promote folding of a substrate while another may promote degradation. The affinity for polypeptides is regulated by its nucleotide bound state. In the ATP-bound form, it has a low affinity for substrate proteins. However, upon hydrolysis of the ATP to ADP, it undergoes a conformational change that increases its affinity for substrate proteins. It goes through repeated cycles of ATP hydrolysis and nucleotide exchange, which permits cycles of substrate binding and release. The co-chaperones are of three types : J-domain co-chaperones such as HSP40s (stimulate ATPase hydrolysis by HSP70), the nucleotide exchange factors (NEF) such as BAG1/2/3 (facilitate conversion of HSP70 from the ADP-bound to the ATP-bound state thereby promoting substrate release), and the TPR domain chaperones such as HOPX and STUB1 (PubMed : 24012426, PubMed : 24318877, PubMed : 26865365). Maintains protein homeostasis during cellular stress through two opposing mechanisms : protein refolding and degradation. Its acetylation/deacetylation state determines whether it functions in protein refolding or protein degradation by controlling the competitive binding of co-chaperones HOPX and STUB1. During the early stress response, the acetylated form binds to HOPX which assists in chaperone-mediated protein refolding, thereafter, it is deacetylated and binds to ubiquitin ligase STUB1 that promotes ubiquitin-mediated protein degradation (PubMed : 27708256). Regulates centrosome integrity during mitosis, and is required for the maintenance of a functional mitotic centrosome that supports the assembly of a bipolar mitotic spindle (PubMed : 27137183). Enhances STUB1-mediated SMAD3 ubiquitination and degradation and facilitates STUB1-mediated inhibition of TGF-beta signaling (PubMed : 24613385). Essential for STUB1-mediated ubiquitination and degradation of FOXP3 in regulatory T-cells (Treg) during inflammation (PubMed : 23973223). Required as a co-chaperone for optimal STUB1/CHIP ubiquitination of NFATC3 (By similarity). Negatively regulates heat shock-induced HSF1 transcriptional activity during the attenuation and recovery phase period of the heat shock response (PubMed : 9499401). Involved in the clearance of misfolded PRDM1/Blimp-1 proteins. Sequesters them in the cytoplasm and promotes their association with SYNV1/HRD1, leading to proteasomal degradation (PubMed : 28842558).. (Microbial infection) In case of rotavirus A infection, serves as a post-attachment receptor for the virus to facilitate entry into the cell.
See full target information HSPA1A

Additional targets

HSPA1B

Publications (8)

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

Journal of nanobiotechnology 23:45 PubMed39865263

2025

Immunomodulation effects of collagen hydrogel encapsulating extracellular vesicles derived from calcium silicate stimulated-adipose mesenchymal stem cells for diabetic healing.

Applications

Unspecified application

Species

Unspecified reactive species

Yen-Hong Lin,Yeh Chen,En-Wei Liu,Mei-Chih Chen,Min-Hua Yu,Cheng-Yu Chen,Chia-Che Ho,Tai-Yi Hsu-Jiang,Jian-Jr Lee,Der-Yang Cho,Ming-You Shie

EMBO molecular medicine 16:2322-2348 PubMed39300235

2024

Liver protects neuron viability and electrocortical activity in post-cardiac arrest brain injury.

Applications

Unspecified application

Species

Unspecified reactive species

Zhiyong Guo,Meixian Yin,Chengjun Sun,Guixing Xu,Tielong Wang,Zehua Jia,Zhiheng Zhang,Caihui Zhu,Donghua Zheng,Linhe Wang,Shanzhou Huang,Di Liu,Yixi Zhang,Rongxing Xie,Ningxin Gao,Liqiang Zhan,Shujiao He,Yifan Zhu,Yuexin Li,Björn Nashan,Schlegel Andrea,Jin Xu,Qiang Zhao,Xiaoshun He

Materials today. Bio 22:100728 PubMed37538916

2023

The exosomal secretomes of mesenchymal stem cells extracted via 3D-printed lithium-doped calcium silicate scaffolds promote osteochondral regeneration.

Applications

Unspecified application

Species

Unspecified reactive species

Tsung-Li Lin,Yen-Hong Lin,Alvin Kai-Xing Lee,Ting-You Kuo,Cheng-Yu Chen,Kun-Hao Chen,Yun-Ting Chou,Yi-Wen Chen,Ming-You Shie

Nature communications 14:1995 PubMed37031229

2023

Segmentation strategy of de novo designed four-helical bundles expands protein oligomerization modalities for cell regulation.

Applications

Unspecified application

Species

Unspecified reactive species

Estera Merljak,Benjamin Malovrh,Roman Jerala

Cancer cell international 20:574 PubMed33317527

2020

Exosomal miR-126 blocks the development of non-small cell lung cancer through the inhibition of ITGA6.

Applications

Unspecified application

Species

Unspecified reactive species

Mingjun Li,Qianqian Wang,Xiaofei Zhang,Ningning Yan,Xingya Li

eLife 9: PubMed32463355

2020

Genomic innovation of ATD alleviates mistranslation associated with multicellularity in Animalia.

Applications

Unspecified application

Species

Unspecified reactive species

Santosh Kumar Kuncha,Vinitha Lakshmi Venkadasamy,Gurumoorthy Amudhan,Priyanka Dahate,Sankara Rao Kola,Sambhavi Pottabathini,Shobha P Kruparani,P Chandra Shekar,Rajan Sankaranarayanan

European journal of medicinal chemistry 148:63-72 PubMed29454917

2018

Marine derived xyloketal derivatives exhibit anti-stress and anti-ageing effects through HSF pathway in Caenorhabditis elegans.

Applications

WB

Species

Unspecified reactive species

Jie-Bin Zhou,Ying-Lin Zheng,Yi-Xuan Zeng,Jia-Wei Wang,Zhong Pei,Ji-Yan Pang

Cell stress & chaperones 16:251-5 PubMed21165727

2010

Distinguishing integral and receptor-bound heat shock protein 70 (Hsp70) on the cell surface by Hsp70-specific antibodies.

Applications

Unspecified application

Species

Unspecified reactive species

Gabriele Multhoff,Lawrence E Hightower
View all publications

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