PDIA6 Protein, Human (HEK293, His)
Based on 1 Customer Validation
PDIA6 protein has molecular chaperone activity, which can inhibit the aggregation of misfolded proteins and contribute to quality control. It negatively regulates the unfolded protein response (UPR) by binding to ERN1 and inhibiting its signaling. PDIA6 Protein, Human (HEK293, His) is the recombinant human-derived PDIA6 protein, expressed by HEK293 , with C-6*His labeled tag.
- Species: Human
- Source: HEK293
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Storage:Stored at -80°C for 1 year from date of receipt. It is stable at -20°C for 3 months after opening. It is recommended to freeze aliquots at -80°C for extended storage. Avoid repeated freeze-thaw cycles.
Biological Activity
Description
PDIA6 protein has molecular chaperone activity, which can inhibit the aggregation of misfolded proteins and contribute to quality control. It negatively regulates the unfolded protein response (UPR) by binding to ERN1 and inhibiting its signaling. PDIA6 Protein, Human (HEK293, His) is the recombinant human-derived PDIA6 protein, expressed by HEK293 , with C-6*His labeled tag.
Background
The PDIA6 protein exhibits diverse functions, acting as a chaperone that inhibits the aggregation of misfolded proteins, thereby contributing to protein quality control. Moreover, it negatively regulates the unfolded protein response (UPR) by binding to UPR sensors like ERN1, leading to the inactivation of ERN1 signaling. Additionally, PDIA6 may modulate the UPR through the EIF2AK3 UPR sensor. Beyond its role in protein homeostasis, PDIA6 plays a significant role in platelet aggregation and activation induced by various agonists, such as convulxin, collagen, and thrombin. These multifaceted functions underscore the importance of PDIA6 in cellular processes related to protein folding, quality control, and platelet activation. Further research is needed to unravel the specific molecular mechanisms underlying these diverse functions, providing insights into the broader regulatory roles of PDIA6 in cellular physiology.
Verified Bioactivity
The enzyme activity of this recombinant protein is testing in progress, we cannot offer a guarantee yet.
Technical Parameters
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Species Human
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Source HEK293
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Tag C-6*His
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Accession
Q15084 (L20-L440)
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Molecular Construction
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N-term
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PDIA6 (L20-L440)
Accession # Q15084 -
6*His
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C-term
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Protein Length
Full Length of Mature Protein
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Synonyms
PDIA6; Protein Disulfide Isomerase-Associated 6; Prev. TXNDC7; Endoplasmic Reticulum Protein 5; ERp5; Protein Disulfide Isomerase P5; P5; ER Protein 5; Protein Disulfide-Isomerase A6; Protein Disulfide Isomerase Family A, Member 6; Thioredoxin Domain Cont
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AA Sequence
LYSSSDDVIELTPSNFNREVIQSDSLWLVEFYAPWCGHCQRLTPEWKKAATALKDVVKVGAVDADKHHSLGGQYGVQGFPTIKIFGSNKNRPEDYQGGRTGEAIVDAALSALRQLVKDRLGGRSGGYSSGKQGRSDSSSKKDVIELTDDSFDKNVLDSEDVWMVEFYAPWCGHCKNLEPEWAAAASEVKEQTKGKVKLAAVDATVNQVLASRYGIRGFPTIKIFQKGESPVDYDGGRTRSDIVSRALDLFSDNAPPPELLEIINEDIAKRTCEEHQLCVVAVLPHILDTGAAGRNSYLEVLLKLADKYKKKMWGWLWTEAGAQSELETALGIGGFGYPAMAAINARKMKFALLKGSFSEQGINEFLRELSFGRGSTAPVGGGAFPTIVEREPWDGRDGELPVEDDIDLSDVELDDLGKDEL
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Predicted Molecular Mass
47.2 kDa
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Molecular Weight
Approximately 52 kDa, based on SDS-PAGE under reducing conditions.
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Purity
≥ 95%, as determined by reducing SDS-PAGE.
Product Properties
Solution
Supplied as a 0.22 μm filtered solution of 20 mM Tris-HCl, 150 mM NaCl, 10% glycerol, pH 8.0.
Note: For SPR assay, please replace the buffer. Primary amine components (e.g., Tris, imidazole) can affect protein-coupled chips.
<1 EU/μg, determined by LAL method.
Stored at -80°C for 1 year from date of receipt. It is stable at -20°C for 3 months after opening. It is recommended to freeze aliquots at -80°C for extended storage. Avoid repeated freeze-thaw cycles.
Shipping with dry ice.
Documentation
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Data Sheet (238 KB)
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SDS (252 KB)
- English - EN (252 KB)
- Français - FR (252 KB)
- Deutsch - DE (252 KB)
- Norwegian - NO (252 KB)
- Español - ES (252 KB)
- Swedish - SV (252 KB)
- Italian - IT (252 KB)
- Korean - KR (252 KB)
- Portuguese - PT (252 KB)
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Handling Instructions (2659 KB)
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)