Hsp60 is a member of the chaperonin family of heat shock proteins, with homologs functioning in the cytosol and mitochondria to fold nascent and aggregated proteins. Hsp60 is the eukaryotic homolog of the E. coli GroEL protein, and forms a multimeric complex in the mitochondria with Hsp10 (Cpn10) to form a large central cavity in which ATP-dependent protein folding takes place. TRiC/CCT, a eukaryotic relative of Hsp60, is expressed in the cytosol and participates in the folding of actin and tubulin substrates, but lacks any association with an Hsp10-like co-factor.
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Western Blot Analysis of Hsp60 mAb (LK-1) (Prod. No. ADI-SPA-806): Lane 1: MW Marker, Lane 2: Hsp60 (human) (recombinant) Protein (Prod. No. ADI-NSP-540), Lane 3: HeLa Cell Lysate Heat Shocked (Prod. No. ADI-LYC-HL101), Lane 4: PC-12 Cell Lysate Heat Shocked (Prod. No. ADI-LYC-PC101), Lane 5: 3T3 Cell Lysate Heat Shocked (Prod. No. ADI-LYC-3T101)

Flow cytometry analysis of human hepatoma QGY cells analyzed by flow cytometry using isotype control antibody (left) or HSP60 antibody (LK-1) (right).

Screening and targeting an anion channelrhodopsin GtACR1 to mitochondria. (A) Representative images of HeLa cells expressing fused channelrhodopsins, which were N‐terminal fused with 4cox8 and C‐terminal fused with EGFP. Scale bars, 10 µm. (B) Quantitative analysis of the colocalization between fused channelrhodopsins and mitochondria indicated by the Pearson Correlation Coefficient (4cox8‐GtCCR4, n = 12; 4cox8‐PoXeR, n = 27; 4cox8‐VchR1, n = 18; 4cox8‐NsXeR, n = 32; 4cox8‐GtACR1, n = 50; ****p < 0.0001). (C) Mitochondrial location and the capability of fused channelrhodopsins maintaining MMP without photo‐stimulation. (D) The submitochondrial fraction location of mtACR. Mitofilin was used as a marker of mitochondrial inner membrane; EGFP as a marker of fused channelrhodopsin mtACR; HSP60 as the marker of mitochondrial matrix; TOM20 as a marker of mitochondrial outer membrane; GAPDH as the marker of cytosol. (E and F) Representative images of astrocyte and neuron expressing EGFP‐fused mtACR. TMRM was used as the marker of mitochondria. Scale bars, 10 µm.
Image collected and cropped by CiteAb under a CC-BY license from the following publication: Neurotransmitter accumulation and Parkinson’s disease-like phenotype caused by anion channelrhodopsin opto-controlled astrocytic mitochondrial depolarization in substantia nigra pars compacta. MedComm (2020) (2024)

HSPs (heat shock proteins), HOP (hsp70-hsp90 organizing protein), and HIP (hsp70 interacting protein) protein expressions of liver tissue. (a) Bands, each line represents a repetition of each birds; (b) protein expressions level calculated by GAPDH. C, control; CH, chronic heat-stressed broiler; HH, early and chronic heat-stressed broiler. a,b Different superscript letters are significantly different (p < 0.05).
Image collected and cropped by CiteAb under a CC-BY license from the following publication: Heat Treatment at an Early Age Has Effects on the Resistance to Chronic Heat Stress on Broilers. Animals (Basel) (2019)





Product Details
Alternative Name |
Chaperonin 60, CPN60, HspD1, heat shock protein 60 |
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Application |
ELISA, Flow Cytometry, IF, IHC (PS), IP, WB |
Application Notes |
Detects a band of ~60kDa by Western blot. |
Clone |
LK-1 |
Formulation |
Liquid. In PBS, pH 7.2, containing 50% glycerol and 0.09% sodium azide. |
GenBank ID |
M34664 |
Host |
Mouse |
Immunogen |
Recombinant human Hsp60. |
Isotype |
IgG1 |
Purity Detail |
Protein G affinity purified. |
Recommendation Dilutions/Conditions |
Flow Cytometry (1:100)Immunoprecipitation (1:80)Western Blot (1:1,000, colorimetric)Suggested dilutions/conditions may not be available for all applications.Optimal conditions must be determined individually for each application. |
Source |
Purified from ascites. |
Species Reactivity |
Bovine, Chicken, Dog, Drosophila, Guinea pig, Hamster, Human, Monkey, Mouse, Porcine, Rabbit, Rat, Sheep, Xenopus |
UniProt ID |
P10809 |
Worry-free Guarantee |
This antibody is covered by our Worry-Free Guarantee. |
Handling & Storage
Handling |
Avoid freeze/thaw cycles. |
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Long Term Storage |
-20°C |
Shipping |
Blue Ice |
Regulatory Status |
RUO – Research Use Only |
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- Synaptic mitochondria glycation contributes to mitochondrial stress and cognitive dysfunction: Samanta, S., Akhter, F., et al.; Brain 148, 262 (2025), Abstract
- Amniotic epithelial Cell microvesicles uptake inhibits PBMCs and Jurkat cells activation by inducing mitochondria-dependent apoptosis: Cerveró-Varona, A., Prencipe, G., et al.; iScience 28, 111830 (2025), Application(s): Western blot, Abstract
- Neurotransmitter accumulation and Parkinson’s disease-like phenotype caused by anion channelrhodopsin opto-controlled astrocytic mitochondrial depolarization in substantia nigra pars compacta: Li, S. M., Wang, D. D., et al.; MedComm (2020) 5, e568 (2024), Application(s): WB, Abstract
- Systems-level analyses of protein-protein interaction network dysfunctions via epichaperomics identify cancer-specific mechanisms of stress adaptation.: Rodina, A., Xu, C., et al.; Nat. Commun. 14, 3742 (2023), Application(s): WB, Abstract
- Mural cell-derived chemokines provide a protective niche to safeguard vascular macrophages and limit chronic inflammation.: Pekayvaz, K., Gold, C., et al.; Immunity 56, 2325 (2023), Application(s): IHC / Reactant(s): Human, Abstract
- Dietary apple polyphenols enhance mitochondrial turnover and respiratory chain enzymes.: Yoshida, Y., Tamura, Y., et al.; Exp. Physiol. 108, 1295 (2023), Reactant(s): Rat, Abstract
- Proteomic changes in broiler liver by body weight differences under chronic heat stress.: Park, J. S., Shim, K. S., et al.; Poult. Sci. 101, 101794 (2022), Application(s): WB / Reactant(s): Chicken, Abstract
- Competition between two phosphatases fine-tunes Hedgehog signaling: Liu, M., Liu, A., et al.; J. Cell Biol. 220, (2021), Abstract
- MITOL promotes cell survival by degrading Parkin during mitophagy: I. Shiiba, et al.; EMBO Rep. 22, e49097 (2021), Abstract
- Neurogenic Hypertension Mediated Mitochondrial Abnormality Leads to Cardiomyopathy: Contribution of UPRmt and Norepinephrine-miR- 18a-5p-HIF-1α Axis.: Mahata, S. K., Patel, K. P., et al.; Front. Physiol. 12, 718982 (2021), Application(s): WB / Reactant(s): Rat, Abstract
- Gain of PITRM1 peptidase in cortical neurons affords protection of mitochondrial and synaptic function in an advanced age mouse model of Alzheimer’s disease.: Du, F., Yu, Q., et al.; Aging Cell 20, e13368 (2021), Application(s): WB / Reactant(s): Mouse, Abstract
- Early heat exposure effect on the heat shock proteins in broilers under acute heat stress.: Shim, K., Kang, D., et al.; Poult. Sci. 100, 100964 (2021), Application(s): WB / Reactant(s): Chicken, Abstract
- Saturated Fatty Acids Promote GDF15 Expression in Human Macrophages through the PERK/eIF2/CHOP Signaling Pathway: L. L’homme, et al.; Nutrients 12, 3771 (2020), Application(s): WB / Reactant(s) Human, Abstract — Full Text
- Chronic heat stress regulates the relation between heat shock protein and immunity in broiler small intestine: F. Prosperi, et al.; Sci. Rep. 10, 18872 (2020), Abstract — Full Text
- Impairment of mitochondrial unfolded protein response contribute to resistance declination of H2 O2 -induced injury in senescent MRC-5 cell model: T.Y. Lee, et al.; Kaohsiung J. Med. Sci. 36, 89 (2020), Abstract — Full Text
- Loss of the mitochondrial i-AAA protease YME1L leads to ocular dysfunction and spinal axonopathy.: Sprenger, H. G., Wani, G., et al.; EMBO Mol. Med. 11, (2019), Application(s): WB / Reactant(s): Mouse, Abstract
- Heat Treatment at an Early Age Has Effects on the Resistance to Chronic Heat Stress on Broilers.: Kang, D., Park, J., et al.; Animals (Basel) 9, (2019), Application(s): WB / Reactant(s): Chicken, Abstract
- The Step of Incorporation of Bacillus coagulans GBI-30 6086 Into “requeijão cremoso” Processed Cheese Does Not Affect Metabolic Homeostasis of Rats: M.B. Soares, et al.; Front. Microbiol. 10, 2332 (2019), Application(s): WB / Reactant(s) Rat, Abstract — Full Text
- Effect of Tim23 knockdown in vivo on mitochondrial protein import and retrograde signaling to the UPRmt in muscle: Oliveira, A. N., Hood, D. A., et al.; Am. J. Physiol. Cell Physiol. 315, C516 (2018), Abstract
- m-AAA and i-AAA complexes coordinate to regulate OMA1, the stress-activated supervisor of mitochondrial dynamics.: Consolato, F., Maltecca, F., et al.; J. Cell Sci. 131, (2018), Application(s): WB, Abstract
- Listeria Adhesion Protein Induces Intestinal Epithelial Barrier Dysfunction for Bacterial Translocation.: Drolia, R., Tenguria, S., et al.; Cell Host Microbe 23, 470 (2018), Application(s): WB / Reactant(s): Human, Abstract
- Transglutaminase Type 2 Regulates ER-Mitochondria Contact Sites by Interacting with GRP75: D’Eletto, M., Rossin, F., et al.; Cell Rep. 25, 3573 (2018), Abstract
- Deletion of the neural tube defect-associated gene Mthfd1l disrupts one-carbon and central energy metabolism in mouse embryos: J.D. Bryant, et al.; J. Biol. Chem. 293, 5821 (2018), Abstract — Full Text
- CHCHD2 accumulates in distressed mitochondria and facilitates oligomerization of CHCHD10: Huang, X., Wu, B. P., et al.; Hum. Mol. Genet. 27, 3881 (2018), Abstract
- Impact of Trans-Fats on Heat-Shock Protein Expression and the Gut Microbiota Profile of Mice: G.C.B.C. Carvalho, et al.; J. Food Sci. 83, 489 (2018), Abstract
- Control of tissue size and development by a regulatory element in the yorkie 3’UTR.: T. Umegawachi, et al.; Am. J. Cancer Res. 7, 673 (2017), Application(s): Western Blot, Abstract — Full Text
- The unfolded protein response in relation to mitochondrial biogenesis in skeletal muscle cells: Mesbah Moosavi, Z. S., Hood, D. A., et al.; Am. J. Physiol. Cell Physiol. 312, C583 (2017), Abstract
- Rab35 GTPase recruits NDP52 to autophagy targets: Minowa-Nozawa, A., Nozawa, T., et al.; EMBO J. 36, 2790 (2017), Abstract
- Multi-omics analysis identifies ATF4 as a key regulator of the mitochondrial stress response in mammals.: Gygi, S. P., Quirós, P. M., et al.; J. Cell Biol. 216, 2027 (2017), Application(s): WB, Abstract
- Bioactivity of food peptides: biological response of rats to bovine milk whey peptides following acute exercise.: Morato, P. N., Lollo, P. C., et al.; Food Nutr. Res. 61, 1290740 (2017), Application(s): WB / Reactant(s): Rat, Abstract
- Effects of Heat Stress Treatment on Age-dependent Unfolded Protein Response in Different Types of Skeletal Muscle.: Hatta, H., Tamura, Y., et al.; J. Gerontol. A Biol. Sci. Med. Sci. 72, 299 (2017), Application(s): WB / Reactant(s): Mouse, Abstract
- Modulatory effects of arginine, glutamine and branched-chain amino acids on heat shock proteins, immunity and antioxidant response in exercised rats: C.S. Moura, et al.; Food Funct. 8, 3228 (2017), Abstract
- Neuroprotective effect of heat shock protein 60 on matrine-suppressed microglial activation: R. Zhang, et al.; Exp. Ther. Med. 14, 1832 (2017), Abstract — Full Text
- Proteomic identification of proteins differentially expressed following overexpression of hTERT (human telomerase reverse transcriptase) in cancer cells: R.K. Jaiswal, et al.; Plos One 12, e0181027 (2017), Application(s): WB in U2OS and HeLa cells, Abstract — Full Text
- HSP60 mediates the neuroprotective effects of curcumin by suppressing microglial activation.: Li, F., Wang, H., et al.; Exp. Ther. Med. 12, 823 (2016), Reactant(s): Mouse, Abstract
- Antisense Oligonucleotide Mediated Splice Correction of a Deep Intronic Mutation in OPA1: T. Bonifert, et al.; Mol. Ther. Nucleic Acids 5, e390 (2016), Application(s): WB / Reactant(s) Human, Abstract
- Dihydropyridine Derivatives Modulate Heat Shock Responses and have a Neuroprotective Effect in a Transgenic Mouse Model of Alzheimer’s Disease: A. Kasza, et al.; J. Alzheimers Dis. 53, 557 (2016), Application(s): WB / Reactant(s) Human, Abstract — Full Text
- Isolation of Intact and Functional Melanosomes from the Retinal Pigment Epithelium: L. Pelkonen, et al.; PLoS One 11, e0160352 (2016), Application(s): Western blot, Abstract — Full Text
- Oxymatrine inhibits microglia activation via HSP60-TLR4 signaling: F. Ding, et al.; Biomed. Rep. 5, 623 (2016), Application(s): Western Blot, BV2 cells, Abstract — Full Text
- Proteomic Profiling of Neuroblastoma Cells Adhesion on Hyaluronic Acid-Based Surface for Neural Tissue Engineering: M.H. Yang, et al.; BioMed. Res. Int. 2016, 1917394 (2016), Abstract — Full Text
- Chronology of UPR activation in skeletal muscle adaptations to chronic contractile activity.: Memme, J. M., Oliveira, A. N., et al.; Am. J. Physiol. Cell Physiol. 310, C1024 (2016), Application(s): WB / Reactant(s): Rat, Abstract
- Ablation of the mitochondrial complex IV assembly protein Surf1 leads to increased expression of the UPR(MT) and increased resistance to oxidative stress in primary cultures of fibroblasts.: Sataranatarajan, K., Van Remmen, H., et al.; Redox Biol. 8, 430 (2016), Application(s): WB, Abstract
- F1F0 ATP Synthase-Cyclophilin D Interaction Contributes to Diabetes-Induced Synaptic Dysfunction and Cognitive Decline.: Wu, L., Walker, D. G., et al.; Diabetes 65, 3482 (2016), Application(s): WB, Abstract
- Molecular Characterization and expression analysis of hsp60 gene homologue of Sheep Blowfly, Lucilia cuprina: M.K. Singh, et al.; J. Therm. Biol. 52, 24 (2015), Application(s): Immunofluorescence, Western Blot, Abstract
- Daily heat stress treatment rescues denervation-activated mitochondrial clearance and atrophy in skeletal muscle: Tamura, Y., Kitaoka, Y., et al.; J. Physiol. 593, 2707 (2015), Abstract
- Cytotoxic Effects of Tropodithietic Acid on Mammalian Clonal Cell Lines of Neuronal and Glial Origin: H. Wichmann, et al.; Mar. Drugs. 13, 7113 (2015), Application(s): Indirect Immunofluorescence, Abstract — Full Text
- Cross-Omics Comparison of Stress Responses in Mesothelial Cells Exposed to Heat- versus Filter-Sterilized Peritoneal Dialysis Fluids: K. Katochwill, et al.; Biomed Res. Int. 2015, Article ID 628158 (2015), Application(s): Western Blot, Abstract — Full Text
- Postexercise whole body heat stress additively enhances endurance training-induced mitochondrial adaptations in mouse skeletal muscle: Y. Tamura, et al.; Am. J. Physiol. Regul. Integr. Comp. Physiol. 307, R931 (2014), Abstract
- CDK5-dependent inhibitory phosphorylation of Drp1 during neuronal maturation.: Hwang, E. M., Park, J. Y., et al.; Exp. Mol. Med. 46, e105 (2014), Application(s): WB, Abstract
- Identification and characterization of the ER/lipid droplet-targeting sequence in 17β-hydroxysteroid dehydrogenase type 11: K. Motojima, et al.; Arch. Biochem. Biophys. 479, 121 (2008), Application(s): WB, IF using mouse cell lysates & tissue culture, Abstract
- Elevated heat shock protein 60 levels are associated with higher risk of coronary heart disease in Chinese: X. Zhang, et al.; Circulation 118, 2687 (2008), Application(s): EIA using human plasma, Abstract — Full Text
- Developmental changes of heat-shock proteins in porcine testis by a proteomic analysis: S.Y. Huang, et al.; Theriogenology 64, 1940 (2005), Application(s): Immunohistochemistry on testis tissue, Abstract
- Human MUC1 carcinoma-associated protein confers resistance to genotoxic anticancer agents: J. Ren, et al.; Cancer Cell. 5, 163 (2004), Application(s): Immunoblot analysis, Abstract — Full Text
Related Products

Alternative Name | Chaperonin 60, CPN60, HspD1, Heat shock protein 60 |
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Purity | ≥90% (SDS-PAGE; Western blot) |
Source | Produced in E. coli. |

Application | ELISA, WB |
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Host | Goat |
Species Reactivity | Mouse |
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