anti-Lom-TK 2

anti-Locusta-Tachykinin 2

rabbit, polyclonal

Catálogo Nº Apresentação Preço (R$) Comprar / Observação
ABD-045 100 μl Sob demanda Adicionar ao Carrinho
The two isoforms LomTK 1 and 2 have identical acarboxy-terminus heptapeptides. The anti-LomTK 2 finds out the LomTK 1 antigen.
The two isoforms LomTK 1 and 2 have identical acarboxy-terminus heptapeptides. The anti-LomTK 2 finds out the LomTK 1 antigen.

For general laboratory use.

Envio: shipped on gel packs

Condições de armazenamento: store at -20 °C
avoid freeze/thaw cycles

Validade: 12 months

Forma: liquid (Supplied as serum, preserved in glycerol) This antiserum is obtained from rabbits after immunization with the conjugates: Loc-Tachykinin 2-glutardialdehyde-thyroglobulin.

Formulários:
Anti-Lom-TK 2 can be used for ELISA and Immunocytochemistry.

Descrição:
Polyclonal antibody to Locusta-Tachykinin 2.

Immunogen:
Synthetic peptide, APLSGFYGVR-NH2, corresponding
to the whole insect neuropeptide Locusta-Tachykinin 2 (LomTK 2).

Specificity:
Rabbit anti-LomTK 2 specificity is performed by an ELISA using different insect neuropeptide conjugates: Perisulfakinin-G-PL, Allatostatin A1-G-PL, Allatostatin A3-G-PL, Proctolin-G-PL, Locusta-tachykinin 2-G-PL
FMRF-amid-G-PL, CCAP-G-PL, M1-G-PL, Leucomyosuppressin-G-PL, Corazonin-G-PL
(G= glutardialdehyde, PL = polylysine).

Referências selecionadas:
Chung et al. (2010) The Drosophila homolog of methionine sulfoxide reductase A extends lifespan and increases nuclear localization of FOXO. FEBS Lett. 584: 3609.

Clynen et al. (2009) Peptidomic survey of the locust neuroendocrine system. Insect Biochem Mol Biol. 39):491.

Neupert et al. (2009) Neuropeptides in Heteroptera: identification of allatotropin-related peptide and tachykinin-related peptides using MALDI-TOF mass spectrometry. Peptides 30):483.

Veenstra et al. (1995) Immunohistological localization of regulatory peptides in the midgut of the female mosquito Aedes aegypti. Histochem Cell Biol. 104):337.

Agricola et al. (1995) Comparative aspects of petidergic signaling pathways in the nervous systems of arthropods. In the Nervous system of Invertebrates. Ed. Breidbach & Kutsch, BirkhäuserVerlag.