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AB317677

Recombinant Human Hsc70 Protein Standard (His tag)

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Recombinant Human Hsc70 Protein Standard (His tag) is a Human Fragment protein, expressed in Escherichia coli, with >80%, suitable for SDS-PAGE, sELISA.

View Alternative Names

HSC70, HSP73, HSPA10, HSPA8, Heat shock cognate 71 kDa protein, Heat shock 70 kDa protein 8, Heat shock protein family A member 8, Lipopolysaccharide-associated protein 1, LAP-1, LPS-associated protein 1

2 Images
Sandwich ELISA - Recombinant Human Hsc70 Protein Standard (His tag) (AB317677)
  • sELISA

Supplier Data

Sandwich ELISA - Recombinant Human Hsc70 Protein Standard (His tag) (AB317677)

Sandwich ELISA with the capture antibody ab282229 dilution at 2 µg/mL and detector antibody ab284110 dilution at 0.5 µg/mL.

SDS-PAGE - Recombinant Human Hsc70 Protein Standard (His tag) (AB317677)
  • SDS-PAGE

Supplier Data

SDS-PAGE - Recombinant Human Hsc70 Protein Standard (His tag) (AB317677)

SDS-PAGE analysis of ab317677 under reducing conditions for 2ug protein.

Key facts

Purity

>80% SDS-PAGE

Expression system

Escherichia coli

Tags

His tag C-Terminus

Applications

sELISA, SDS-PAGE

applications

Biologically active

No

Accession

P11142

Animal free

Yes

Carrier free

No

Species

Human

Storage buffer

pH: 7.3 - 7.5 Constituents: 2.922% Sodium chloride, 0.64107% disodium;hydrogen phosphate;dodecahydrate, 0.02858% Potassium phosphate monobasic

storage-buffer

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "SDS-PAGE": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" }, "sELISA": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" } } }

Product details

While the standard is the same as the one provided in the corresponding SimpleStep ELISA Kit, it cannot be treated as the consumable provided with our SimpleStep ELISA Kit due to differences in its concentration calibration.

Abcam guarantee that this protein standard is suitable for use in a sandwich ELISA. Individual results may vary due to differences in technique, laboratory equipment, buffers, and other experimental factors. The detection range provided for this protein standard is based on initial sandwich ELISA validation data.

The protein concentration is the concentration after validation on our sandwich ELISA platform. This Standard protein is guaranteed to work with our Capture and Detector antibodies in sELISA. Please contact our Scientific Supportteam to know which antibody pair is suitable for this protein.

Sequence info

[{"sequence":null,"proteinLength":"Fragment","predictedMolecularWeight":"73.1 kDa","actualMolecularWeight":null,"aminoAcidEnd":0,"aminoAcidStart":0,"nature":"Recombinant","expressionSystem":"Escherichia coli","accessionNumber":"P11142","tags":[{"tag":"His","terminus":"C-Terminus"}]}]

Properties and storage information

Shipped at conditions
Dry Ice
Appropriate short-term storage conditions
-80°C
Appropriate long-term storage conditions
-80°C
Aliquoting information
Upon delivery aliquot
Storage information
Avoid freeze / thaw cycle
False

Supplementary information

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

HSPA8 also known as Heat Shock Cognate 71 kDa protein or Hsc70 is a molecular chaperone with a mass of approximately 71 kilodaltons. It plays a mechanical role in protein folding assembly and degradation within cells. HSPA8 assists in stabilizing newly synthesised proteins and assists in protein transport across cellular membranes. You can find high expression of HSPA8 in various tissues with notable abundance in brain heart and skeletal muscle reflecting its essential role in cellular homeostasis.
Biological function summary

The expressed HSPA8 protein is involved in various critical processes including protection against protein aggregation and assistance in protein refolding after cellular stress. It functions as a chaperone within a large chaperone complex assisting the heat shock proteins in responding to cellular stress. Due to its role in maintaining protein homeostasis cells can better manage environmental stresses contributing to the longevity of cellular proteins.

Pathways

HSPA8 has significant involvement in the ubiquitin-proteasome proteolytic pathway and the lysosomal degradation pathway. It assists in the recognition and delivery of misfolded proteins to proteasomes for degradation. HSPA8 interacts with other proteins such as CHIP a co-chaperone in the regulation of protein folding and degradation processes. Through these interactions HSPA8 maintains cellular protein quality control and prevents accumulation of damaged or misfolded proteins.

HSPA8 plays a role in neurodegenerative diseases like Alzheimer's disease and certain forms of cancer. In Alzheimer's the protein is linked to the misfolding and aggregation of tau protein which can lead to cellular damage and neurodegeneration. HSPA8 also interacts with other chaperones like HSP70 affecting the stability of key proteins involved in cellular growth and survival influencing certain cancer progressions. Its involvement in these disorders highlights the importance of HSPA8 in the maintenance of cellular function and integrity.

Specifications

Form

Liquid

General info

Function

Molecular chaperone implicated in a wide variety of cellular processes, including protection of the proteome from stress, folding and transport of newly synthesized polypeptides, chaperone-mediated autophagy, activation of proteolysis of misfolded proteins, formation and dissociation of protein complexes, and antigen presentation. 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 (PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661, PubMed : 2799391, PubMed : 36586411). This is achieved through cycles of ATP binding, ATP hydrolysis and ADP release, mediated by co-chaperones (PubMed : 12526792, PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661). The co-chaperones have been shown to not only regulate different steps of the ATPase cycle of HSP70, but they also have an individual specificity such that one co-chaperone may promote folding of a substrate while another may promote degradation (PubMed : 12526792, PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661). The affinity of HSP70 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. HSP70 goes through repeated cycles of ATP hydrolysis and nucleotide exchange, which permits cycles of substrate binding and release. The HSP70-associated co-chaperones are of three types : J-domain co-chaperones 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 : 24121476, PubMed : 24318877, PubMed : 26865365, PubMed : 27474739). Plays a critical role in mitochondrial import, delivers preproteins to the mitochondrial import receptor TOMM70 (PubMed : 12526792). Acts as a repressor of transcriptional activation. Inhibits the transcriptional coactivator activity of CITED1 on Smad-mediated transcription. Component of the PRP19-CDC5L complex that forms an integral part of the spliceosome and is required for activating pre-mRNA splicing. May have a scaffolding role in the spliceosome assembly as it contacts all other components of the core complex. Binds bacterial lipopolysaccharide (LPS) and mediates LPS-induced inflammatory response, including TNF secretion by monocytes (PubMed : 10722728, PubMed : 11276205). Substrate recognition component in chaperone-mediated autophagy (CMA), a selective protein degradation process that mediates degradation of proteins with a -KFERQ motif : HSPA8/HSC70 specifically recognizes and binds cytosolic proteins bearing a -KFERQ motif and promotes their recruitment to the surface of the lysosome where they bind to lysosomal protein LAMP2 (PubMed : 11559757, PubMed : 2799391, PubMed : 36586411). KFERQ motif-containing proteins are eventually transported into the lysosomal lumen where they are degraded (PubMed : 11559757, PubMed : 2799391, PubMed : 36586411). In conjunction with LAMP2, facilitates MHC class II presentation of cytoplasmic antigens by guiding antigens to the lysosomal membrane for interaction with LAMP2 which then elicits MHC class II presentation of peptides to the cell membrane (PubMed : 15894275). Participates in the ER-associated degradation (ERAD) quality control pathway in conjunction with J domain-containing co-chaperones and the E3 ligase STUB1 (PubMed : 23990462). It is recruited to clathrin-coated vesicles through its interaction with DNAJC6 leading to activation of HSPA8/HSC70 ATPase activity and therefore uncoating of clathrin-coated vesicles (By similarity).

Sequence similarities

Belongs to the heat shock protein 70 family.

Post-translational modifications

Acetylated.. ISGylated.. Trimethylation at Lys-561 reduces fibrillar SNCA binding.

Product protocols

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, chaperone-mediated autophagy, activation of proteolysis of misfolded proteins, formation and dissociation of protein complexes, and antigen presentation. 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 (PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661, PubMed : 2799391, PubMed : 36586411). This is achieved through cycles of ATP binding, ATP hydrolysis and ADP release, mediated by co-chaperones (PubMed : 12526792, PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661). The co-chaperones have been shown to not only regulate different steps of the ATPase cycle of HSP70, but they also have an individual specificity such that one co-chaperone may promote folding of a substrate while another may promote degradation (PubMed : 12526792, PubMed : 21148293, PubMed : 21150129, PubMed : 23018488, PubMed : 24732912, PubMed : 27916661). The affinity of HSP70 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. HSP70 goes through repeated cycles of ATP hydrolysis and nucleotide exchange, which permits cycles of substrate binding and release. The HSP70-associated co-chaperones are of three types : J-domain co-chaperones 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 : 24121476, PubMed : 24318877, PubMed : 26865365, PubMed : 27474739). Plays a critical role in mitochondrial import, delivers preproteins to the mitochondrial import receptor TOMM70 (PubMed : 12526792). Acts as a repressor of transcriptional activation. Inhibits the transcriptional coactivator activity of CITED1 on Smad-mediated transcription. Component of the PRP19-CDC5L complex that forms an integral part of the spliceosome and is required for activating pre-mRNA splicing. May have a scaffolding role in the spliceosome assembly as it contacts all other components of the core complex. Binds bacterial lipopolysaccharide (LPS) and mediates LPS-induced inflammatory response, including TNF secretion by monocytes (PubMed : 10722728, PubMed : 11276205). Substrate recognition component in chaperone-mediated autophagy (CMA), a selective protein degradation process that mediates degradation of proteins with a -KFERQ motif : HSPA8/HSC70 specifically recognizes and binds cytosolic proteins bearing a -KFERQ motif and promotes their recruitment to the surface of the lysosome where they bind to lysosomal protein LAMP2 (PubMed : 11559757, PubMed : 2799391, PubMed : 36586411). KFERQ motif-containing proteins are eventually transported into the lysosomal lumen where they are degraded (PubMed : 11559757, PubMed : 2799391, PubMed : 36586411). In conjunction with LAMP2, facilitates MHC class II presentation of cytoplasmic antigens by guiding antigens to the lysosomal membrane for interaction with LAMP2 which then elicits MHC class II presentation of peptides to the cell membrane (PubMed : 15894275). Participates in the ER-associated degradation (ERAD) quality control pathway in conjunction with J domain-containing co-chaperones and the E3 ligase STUB1 (PubMed : 23990462). It is recruited to clathrin-coated vesicles through its interaction with DNAJC6 leading to activation of HSPA8/HSC70 ATPase activity and therefore uncoating of clathrin-coated vesicles (By similarity).
See full target information HSPA8

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