dsbD Antibody

Code CSB-PA327569XA01ENV
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Product Details

Full Product Name
Rabbit anti-Escherichia coli (strain K12) dsbD Polyclonal antibody
Uniprot No.
Target Names
dsbD
Alternative Names
dsbD antibody; cutA2 antibody; cycZ antibody; dipZ antibody; b4136 antibody; JW5734Thiol:disulfide interchange protein DsbD antibody; EC 1.8.1.8 antibody; C-type cytochrome biogenesis protein CycZ antibody; Inner membrane copper tolerance protein antibody; Protein-disulfide reductase antibody; Disulfide reductase antibody
Raised in
Rabbit
Species Reactivity
Escherichia coli (strain K12)
Immunogen
A synthesized peptide derived from Escherichia coli (strain K12) dsbD protein
Immunogen Species
Escherichia coli (strain K12)
Conjugate
Non-conjugated
Clonality
Polyclonal
Isotype
IgG
Purification Method
Antigen Affinity Purified
Concentration
It differs from different batches. Please contact us to confirm it.
Buffer
Preservative: 0.03% Proclin 300
Constituents: 50% Glycerol, 0.01M PBS, pH 7.4
Form
Liquid
Tested Applications
ELISA, Dot blot (guaranteed specific to the immunizing peptide)
Protocols
Troubleshooting and FAQs
Storage
Upon receipt, store at -20°C or -80°C. Avoid repeated freeze.
Value-added Deliverables
①. 100ug * KLH-conjugated peptide paired with 100ug * BSA-conjugated peptide (positive control);
②. 1ml*pre-immune serum (used as negative control) for free;
③. Rabbit polyclonal antibodies purified by Antigen Affinity;
Quality Guarantee
1. CUSABIO guarantees the antibody purity > 95% confirmed by SDS-PAGE.
2. CUSABIO guarantees the antibody titer > 1: 64,000 confirmed by ELISA.
3. CUSABIO guarantees to offer Peptide-specific Dot blot.
4. CUSABIO guarantees 100% risk-free: No qualified antibody, no charge.
Lead Time
Made-to-order (14-16 weeks)
Usage
For Research Use Only. Not for use in diagnostic or therapeutic procedures.

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Target Background

Function
Required to facilitate the formation of correct disulfide bonds in some periplasmic proteins and for the assembly of the periplasmic c-type cytochromes. Acts by transferring electrons from cytoplasmic thioredoxin to the periplasm, thereby maintaining the active site of DsbC, DsbE and DsbG in a reduced state. This transfer involves a cascade of disulfide bond formation and reduction steps.
Gene References into Functions
  1. The authors show that the F plasmid-encoded TrbB relies on DsbD from Escherichia coli for maintenance of its C-X-X-C redox active site motif. PMID: 21742866
  2. Cys109 and Cys461 form a transient interdomain disulfide bond between nDsbD and cDsbD in the reaction cycle of DsbD PMID: 15057279
  3. kinetic analysis of DsbD-dependent cytochrome c maturation PMID: 16004871
  4. N-terminal (nDsbD) and a C-terminal (cDsbD) are likely to be correlated to the role of cDsbD as a covalently linked electron shuttle between the membrane domain and the N-terminal periplasmic domain of DsbD PMID: 16545842
  5. The structural features enabling nDsbD, a 'redox hub' with an immunoglobulin-like fold, to interact efficiently with its different thioredoxin-like partners are reviewed [review] PMID: 16786221
  6. Properties of the mutants to the positions of the amino acids in the structure of DsbD and discuss mechanisms that would interfere with the electron transfer process. PMID: 16816179
  7. Here we provide evidence that DsbD's conformation depends on its oxidation state. PMID: 17015672
  8. pK(a) value of the second cysteine in wild-type cDsbD, Cys464, is significantly higher than the maximum pH value that was studied PMID: 17544440
  9. analysis of the structure and function of DsbD PMID: 19258316

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Subcellular Location
Cell inner membrane; Multi-pass membrane protein.
Protein Families
Thioredoxin family, DsbD subfamily
Database Links
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301-363-4651 (Available 9 a.m. to 5 p.m. CST from Monday to Friday)
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7505 Fannin St., Ste 610, Room 7 (CUBIO Innovation Center), Houston, TX 77054, USA
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