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DARPP32 Produkte

(Protein Phosphatase 1, Regulatory (Inhibitor) Subunit 1B, PPP1R1B)

Kategorien

This gene encodes a bifunctional signal transduction molecule.

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Ausgewählte DARPP32 Kategorien

DARPP32 Antikörper

High quality antibodies with extensive validation data.

DARPP32 ELISA Kits

Reliable ELISA kits for a wide range of species.

DARPP32 Proteine

Proteins for various applications incl. WB, ELISA, IF etc.

Empfohlene DARPP32 Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
ReaktivitätHuman
ApplikationFACS, ELISA, WB
Validierungen
  • (2)
  • collections(4)
Kat. Nr.ABIN1724929
Menge0.1 mg
ReaktivitätHuman, Mouse, Rat
ApplikationELISA, ICC, IF, IHC, WB
Validierungen
  • collections(5)
Kat. Nr.ABIN6255670
Menge100 μL
ReaktivitätHuman, Mouse, Rat
ApplikationIHC (p), WB
Validierungen
  • collections(4)
Kat. Nr.ABIN3044534
Menge100 μg

Empfohlene DARPP32 ELISA Kits

Produkt
Reaktivität
Analytical Method
Validierungen
Kat. Nr.
Menge
Datenblatt
ReaktivitätHuman
Analytical MethodQuantitative Sandwich ELISA
Validierungen
  • collections(1)
Kat. Nr.ABIN6958944
Menge96 tests
ReaktivitätHuman
Analytical MethodQuantitative Sandwich ELISA
Validierungen
  • collections(1)
Kat. Nr.ABIN1571989
Menge96 tests
ReaktivitätHuman, Mouse, Rat
Analytical MethodQualitative Cell ELISA
Validierungen
Kat. Nr.ABIN1380554
Menge2 x 96 tests

Empfohlene DARPP32 Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
ReaktivitätHuman
SourceInsect Cells
Validierungen
  • collections(1)
Kat. Nr.ABIN3086498
Menge1 mg
ReaktivitätMouse
SourceInsect Cells
Validierungen
  • collections(1)
Kat. Nr.ABIN3122756
Menge1 mg
ReaktivitätHuman
SourceWheat germ
Validierungen
  • collections(1)
Kat. Nr.ABIN1315972
Menge10 μg

Neueste Publikationen zu unseren DARPP32 Produkten

Cunha, Matheus, Moretti, Sampaio, Poli, Santos, Colle, Cunha, Blum-Silva, Sandjo, Reginatto, Rodrigues, Farina, Prediger: "Agmatine attenuates reserpine-induced oral dyskinesia in mice: Role of oxidative stress, nitric oxide and glutamate NMDA receptors." in: Behavioural brain research, Vol. 312, pp. 64-76, 2016 (PubMed). (Probematerial (Species): Mouse (Murine)). Weitere Details: Western Blotting

Bonito-Oliva, DuPont, Madjid, Ögren, Fisone: "Involvement of the Striatal Medium Spiny Neurons of the Direct Pathway in the Motor Stimulant Effects of Phencyclidine." in: The international journal of neuropsychopharmacology, 2016 (PubMed).

DelGuidice, Latapy, Rampino, Khlghatyan, Lemasson, Gelao, Quarto, Rizzo, Barbeau, Lamarre, Bertolino, Blasi, Beaulieu: "FXR1P is a GSK3β substrate regulating mood and emotion processing." in: Proceedings of the National Academy of Sciences of the United States of America, 2015 (PubMed).

Yabuki, Ohizumi, Yokosuka, Mimaki, Fukunaga: "Nobiletin treatment improves motor and cognitive deficits seen in MPTP-induced Parkinson model mice." in: Neuroscience, Vol. 259, pp. 126-41, 2014 (PubMed). (Probematerial (Species): Mouse (Murine)). Weitere Details: Western Blotting

Gomez, Midde, Mactutus, Booze, Zhu: "Environmental enrichment alters nicotine-mediated locomotor sensitization and phosphorylation of DARPP-32 and CREB in rat prefrontal cortex." in: PLoS ONE, Vol. 7, Issue 8, pp. e44149, 2013 (PubMed).

Gulati, Cheung, Antrobus, Church, Harding, Tung, Rimmington, Ma, Ron, Lehner, Ashcroft, Cox, Coll, ORahilly, Yeo: "Role for the obesity-related FTO gene in the cellular sensing of amino acids." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 110, Issue 7, pp. 2557-62, 2013 (PubMed).

Cantrup, Sathanantham, Rushlow, Rajakumar: "Chronic hyperdopaminergic activity of schizophrenia is associated with increased ΔFosB levels and cdk-5 signaling in the nucleus accumbens." in: Neuroscience, Vol. 222, pp. 124-35, 2012 (PubMed). Von den Autoren verwendete Methode: Western Blotting (WB) (1:1000).

Marazziti, Di Pietro, Mandillo, Golini, Matteoni, Tocchini-Valentini: "Absence of the GPR37/PAEL receptor impairs striatal Akt and ERK2 phosphorylation, DeltaFosB expression, and conditioned place preference to amphetamine and cocaine." in: FASEB journal : official publication of the Federation of American Societies for Experimental Biology, Vol. 25, Issue 6, pp. 2071-81, 2011 (PubMed).

Daigle, Wetsel, Caron: "Opposite function of dopamine D1 and N-methyl-D-aspartate receptors in striatal cannabinoid-mediated signaling." in: The European journal of neuroscience, Vol. 34, Issue 9, pp. 1378-89, 2011 (PubMed).

Kunii, Ikemoto, Wada, Yang, Kusakabe, Suzuki, Niwa: "Detailed DARPP-32 expression profiles in postmortem brains from patients with schizophrenia: an immunohistochemical study." in: Medical molecular morphology, Vol. 44, Issue 4, pp. 190-9, 2011 (PubMed).

Synonyme und alternative Namen zu DARPP32

protein phosphatase 1 regulatory inhibitor subunit 1B (ppp1r1b), protein phosphatase 1 regulatory inhibitor subunit 1B (PPP1R1B), protein phosphatase 1, regulatory (inhibitor) subunit 1B (Ppp1r1b), protein phosphatase 1 regulatory inhibitor subunit 1B S homeolog (ppp1r1b.S), AU040756, darpp-32, Darpp-32, DARPP-32, darpp32, Darpp32, DARPP32

Gen-IDs für verschiedene Spezies

GENE ID SPEZIES
100124928 Xenopus (Silurana) tropicalis
574203 Macaca mulatta
608394 Canis lupus familiaris
744755 Pan troglodytes
100355399 Oryctolagus cuniculus
100736966 Sus scrofa
360616 Rattus norvegicus
84152 Homo sapiens
19049 Mus musculus
733416 Xenopus laevis
282459 Bos taurus

Bezeichner auf Proteinebene für DARPP32

  • protein phosphatase 1, regulatory (inhibitor) subunit 1B (dopamine and cAMP regulated phosphoprotein, DARPP-32)
  • neuronal phosphoprotein DARPP-32
  • protein phosphatase 1 regulatory subunit 1B
  • protein phosphatase 1, regulatory (inhibitor) subunit 1B
  • dopamine- and cAMP-regulated neuronal phosphoprotein
  • dopamine- and cAMP-regulated phosphoprotein DARPP-32
  • dopamine and cAMP-regulated neuronal phosphoprotein 32
  • DARPP-32
  • dopamine and cAMP regulated
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