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Protein Gene Product 9.5 antibody | 31A3

Mouse anti Human Protein Gene Product 9.5

Product Type
Monoclonal Antibody
Clone
31A3
Isotype
IgG1
Format
Purified
Specificity
Protein Gene Product 9.5

Product Code Applications Pack Size List Price Your Price Qty
7863-1004
Datasheet Datasheet Datasheet
SDS Safety Datasheet SDS
E P * WB 0.2 mg loader
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loader

Mouse anti Human Protein Gene Product 9.5 antibody, clone 31A3 recognizes protein gene product 9.5 (PGP9.5), a ubiquitin hydrolase which is widely expressed in neuronal tissues and represents 1-2% of total soluble brain proteins. PGP9.5, also known as ubiquitin C-terminal hydrolase 1 (UCHL-1), is involved in the regulation of the ubuiquitin pathway.

Mouse anti Human Protein Gene Product 9.5 antibody, clone 31A3 stains neuronal cell bodies and axons in the CNS and periphery, small nerve fibres in peripheral tissues, neuroendocrine cells in the pituitary, thyroid, pancreas and tumours of the DNES.

Clones 31A3 and 13C4 each recognize a different epitope towards the N-terminus of the protein. Mouse anti Human Protein Gene Product 9.5 antibody, clone 31A3 also recognizes PGP9.5 in other species, including rat and rabbit but evidence suggests it does not bind to PGP9.5 in guinea pigs (Wilson et al. 1988). Mouse anti Human Protein Gene Product 9.5 antibody, clone 31A3 has been used successfully as a capture reagent with clone 13C4 as a detection reagent in a sandwich ELISA to evaluate contamination of processed meat samples with neuronal tissue (Gaunitz et al. 2009).
PrecisionAb Antibodies

Target Species
Human
Species Cross-Reactivity
Target SpeciesCross Reactivity
Rat
Rabbit
Guinea Pig
Pig
Water Buffalo
N.B. Antibody reactivity and working conditions may vary between species.
Product Form
Purified IgG - liquid
Preparation
Purified IgG prepared by affinity chromatography on Protein A from tissue culture supernatant
Buffer Solution
Phosphate buffered saline
Preservative Stabilisers
0.09%Sodium Azide (NaN3)
Carrier Free
Yes
Immunogen
Native, from brain
Approx. Protein Concentrations
1mg/ml
Regulatory
For research purposes only
Guarantee
12 months from date of despatch
Acknowledgements
PrecisionAb is a trademark of Bio-Rad Laboratories

This product is shipped at ambient temperature. It is recommended to aliquot and store at -20°C on receipt. When thawed, aliquot the sample as needed. Keep aliquots at 2-8°C for short term use (up to 4 weeks) and store the remaining aliquots at -20°C.

Avoid repeated freezing and thawing as this may denature the antibody. Storage in frost-free freezers is not recommended.

This product has been reported to work in the following applications. This information is derived from testing within our laboratories, peer-reviewed publications or personal communications from the originators. Please refer to references indicated for further information. For general protocol recommendations, please visit the antibody protocols page.
Application Name Verified Min Dilution Max Dilution
ELISA 1/500 1/2000
Immunohistology - Paraffin 1 1/100 1/400
Western Blotting
  1. 1 This antibody is suitable for use on paraffin embedded tissue sections. We do however recommend fixation in 95% ethanol/5% acetic acid for 2-3 hours prior to paraffin embedding. Specimens which have not been fixed in acetic acid/alcohol will require pretreatment using the microwave-citrate buffer method.

The PrecisionAb label is reserved for antibodies that meet the defined performance criteria within Bio-Rad's ongoing antibody validation programme. Click here to learn how we validate our PrecisionAb range. Where this product has not been tested for use in a particular technique this does not necessarily exclude its use in such procedures. Suggested working dilutions are given as a guide only. It is recommended that the user titrates the product for use in their own system using the appropriate negative/positive controls.

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Source Reference

  1. Day, I.N.M and Thompson, R.J. (1986) Monoclonal antibodies to the neuroendocrine protein PGP 9.5
    Biochemical Society Transactions 14: 350–1.

References for Protein Gene Product 9.5 antibody

  1. Wilson, P.O. et al. (1988) The immunolocalization of protein gene product 9.5 using rabbit polyclonal and mouse monoclonal antibodies.
    Br J Exp Pathol. 69 (1): 91-104.
  2. Forsgren, K. et al. (1999) Regeneration of nerve fibres in the maxillary sinus mucosa after experimental surgery. An immunocytochemical double-labelling study in the rabbit.
    Acta Otolaryngol. 119: 486-91.
  3. García-Añoveros, J. et al. (2001) Transport and localization of the DEG/ENaC ion channel BNaC1alpha to peripheral mechanosensory terminals of dorsal root ganglia neurons.
    J Neurosci. 21 (8): 2678-86.
  4. Yee, C.L. et al. (2001) "Type III" cells of rat taste buds: immunohistochemical and ultrastructural studies of neuron-specific enolase, protein gene product 9.5, and serotonin.
    J Comp Neurol. 440: 97-108.
  5. Nonclercq, D. et al. (2002) Phenotypic variations and dynamic topography of transformed cells in an experimental model of diethylstilbestrol-induced renal tumour in male Syrian hamster.
    Histochem J. 34 (10): 487-97.
  6. Caballero, O.L. et al. (2002) Interaction and colocalization of PGP9.5 withJAB1 and p27(Kip1).
    Oncogene. 21:3003-10.
  7. Kaleczyc, J. et al. (2007) The distribution and chemical coding of intramural neurons supplying the porcine stomach - the study on normal pigs and on animals suffering from swine dysentery.
    Anat Histol Embryol. 36 (3): 186-93.
  8. Gaunitz C et al. (2009) Suitability of antigens PGP 9.5 and neurofilament light as marker proteins for detection of neuronal tissue in processed meat products.
    J Food Prot. 72 (5): 1070-7.
  9. View The Latest Product References
  10. Day, I.N. & Thompson, R.J. (2010) UCHL1 (PGP 9.5): neuronal biomarker and ubiquitin system protein.
    Prog Neurobiol. 90 (3): 327-62.
  11. Mihara, H. et al. (2010) Involvement of TRPV2 activation in intestinal movement through nitric oxide production in mice.
    J Neurosci. 30: 16536-44.
  12. Verhein, K.C. et al. (2011) Three days after a single exposure to ozone, the mechanism of airway hyperreactivity is dependent on substance P and nerve growth factor.
    Am J Physiol Lung Cell Mol Physiol. 300: L176-84.
  13. Sugimoto, K. et al. (2011) Olmesartan ameliorates peripheral nerve dysfunction in Zucker diabetic fatty rats.
    J Hypertens. 29: 1337-46.
  14. Moldovan, M. et al. (2013) Peptide mimetic of the S100A4 protein modulates peripheral nerve regeneration and attenuates the progression of neuropathy in myelin protein P0 null mice.
    Mol Med. 19: 43-53.
  15. Kondo, T. et al. (2013) Prostaglandin E2 mediates acid-induced heartburn in healthy volunteers.
    Am J Physiol Gastrointest Liver Physiol. 304(6):G568-73
  16. Bishop, P. et al. (2014) The ubiquitin C-terminal hydrolase L1 (UCH-L1) C terminus plays a key role in protein stability, but its farnesylation is not required for membrane association in primary neurons.
    J Biol Chem. 289 (52): 36140-9.
  17. Pauza, D.H. et al. (2014) A combined acetylcholinesterase and immunohistochemical method for precise anatomical analysis of intrinsic cardiac neural structures.
    Ann Anat. pii: S0940-9602(14)00159-9.
  18. Silva, I. et al. (2015) Activation of P2Y6 Receptors Facilitates Nonneuronal Adenosine Triphosphate and Acetylcholine Release from Urothelium with the Lamina Propria of Men with Bladder Outlet Obstruction.
    J Urol. 194 (4): 1146-54.
  19. Lee, W-Y. et al. (2016) Establishment of a surgically induced cryptorchidism canine recipient model for spermatogonial stem cell transplantation.
    Laboratory Animal Research. 32 (4): 257.
  20. Inokaitis, H. et al. (2016) Innervation of sinoatrial nodal cells in the rabbit.
    Ann Anat. 205: 113-21.
  21. Rashwan, A. et al. (2016) Ontogeny and innervation of taste buds in mouse palatal gustatory epithelium.
    J Chem Neuroanat. 71: 26-40.
  22. Pauziene, N. et al. (2016) Innervation of the rabbit cardiac ventricles.
    J Anat. 228 (1): 26-46.
  23. Lee, K.H. et al. (2016) Vitrified canine testicular cells allow the formation of spermatogonial stem cells and seminiferous tubules following their xenotransplantation into nude mice.
    Sci Rep. 6: 21919.
  24. Lakritz, J.R. et al. (2017) An oral form of methylglyoxal-bis-guanylhydrazone reduces monocyte activation and traffic to the dorsal root ganglia in a primate model of HIV-peripheral neuropathy.
    J Neurovirol. 23 (4): 568-76.
  25. Park, H.J. et al. (2017) Stage-specific expression of Sal-like protein 4 in boar testicular germ cells.
    Theriogenology. 101: 44-52.
  26. Hur, T.Y. et al. (2017) Dose-dependent effects of busulfan on dog testes in preparation for spermatogonial stem cell transplantation.
    Lab Anim Res. 33 (3): 264-9.
  27. Park, H.J. et al. (2018) Species-specific expression of phosphoglycerate kinase 2 (PGK2) in the developing porcine testis.
    Theriogenology. 110: 158-167.
  28. Ceredig, R.A. et al. (2018) Peripheral delta opioid receptors mediate duloxetine antiallodynic effect in a mouse model of neuropathic pain.
    Eur J Neurosci. 48 (5): 2231-46.
  29. Zalecki, M. (2019) Gastric ulcer induced changes in substance P and Nk1, Nk2, Nk3 receptors expression in different stomach localizations with regard to intrinsic neuronal system.
    Histochem Cell Biol. 151 (1): 29-42.
  30. Zhang, P.F. et al. (2020) Integrated analysis of phosphoproteome and ubiquitylome in epididymal sperm of buffalo (Bubalus bubalis).
    Mol Reprod Dev. Nov 02 [Epub ahead of print].
  31. Xu, H. et al. (2020) Derivation and propagation of spermatogonial stem cells from human pluripotent cells.
    Stem Cell Res Ther. 11 (1): 408.
  32. Park, H.J. et al. (2020) Expression of paired box protein PAX7 in prepubertal boar testicular gonocytes.
    Acta Histochem. 122 (6): 151595.
  33. Zalecki, M. et al. (2020) Inferior vagal ganglion galaninergic response to gastric ulcers.
    PLoS One. 15 (11): e0242746.
  34. Yang, H. et al. (2021) Isolation, Cultivation and Identification of Spermatogonial Stem Cells from Juvenile Buffalo Testes
    Pakistan Journal of Zoology. 53 (3) [Epub ahead of print].
  35. Park, J.K. et al. (2021) Helix-loop-helix protein ID4 expressed in bovine Sertoli cells.
    Acta Histochem. 123 (8): 151800.
  36. Narasimhaiah, D. & Mahadevan, A. (2022) Role of skin punch biopsy in diagnosis of small fiber neuropathy-A review for the neuropathologist.
    Indian J Pathol Microbiol. 65 (Supplement): S329-S336.
  37. Symons, F.J. et al. (2022) Modifying quantitative sensory testing to investigate behavioral reactivity in a pediatric global developmental delay sample: Relation to peripheral innervation and chronic pain outcomes.
    Dev Psychobiol. 64 (8): e22329.
  38. Chen, Q. et al. (2023) Unveiling adcyap1 as a protective factor linking pain and nerve regeneration through single-cell RNA sequencing of rat dorsal root ganglion neurons.
    BMC Biol. 21 (1): 235.
  39. Inokaitis, H. et al. (2023) The distribution of sinoatrial nodal cells and their innervation in the pig.
    Anat Rec (Hoboken). 306 (9): 2333-44.
  40. Reifarth, L. et al. (2023) Detection of spermatogonial stem cells in testicular tissue of dogs with chronic asymptomatic orchitis.
    Front Vet Sci. 10: 1205064.

Immunofluorescence

Immunohistology - Paraffin

Western Blotting

Synonyms
PGP 9.5
UCHL1
RRID
AB_620256
UniProt
P09936
Entrez Gene
UCHL1
GO Terms
GO:0005886 plasma membrane
GO:0004197 cysteine-type endopeptidase activity
GO:0004221 ubiquitin thiolesterase activity
GO:0005634 nucleus
GO:0005737 cytoplasm
GO:0006511 ubiquitin-dependent protein catabolic process
GO:0008242 omega peptidase activity
GO:0016579 protein deubiquitination
GO:0016874 ligase activity
GO:0031694 alpha-2A adrenergic receptor binding
GO:0043130 ubiquitin binding
GO:0043407 negative regulation of MAP kinase activity

7863-1004

147549 158905 167389

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