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Shank1 antibody - 162 002

Shanks are multidomain proteins of the postsynaptic density
Rabbit polyclonal antiserum
Cat. No.: 162 002
Amount: 200 µl
Price: $355.00
Cat. No. 162 002 200 µl antiserum, lyophilized. For reconstitution add 200 µl H2O, then aliquot and store at -20°C until use.
Antibodies should be stored at +4°C when still lyophilized. Do not freeze!
Applications
 
WB: 1 : 1000 (AP staining) gallery  
IP: not tested yet
ICC: not tested yet
IHC: not tested yet
IHC-P: not tested yet
Immunogen Synthetic peptide corresponding to AA 135 to 149 from rat Shank1 (UniProt Id: Q9WV48)
Reactivity Reacts with: human (Q9Y566), rat (Q9WV48), mouse (D3YZU1), dog, pig, cow, monkey.
Other species not tested yet.
Data sheet 162_002.pdf

References for Shank1 - 162 002

Syndapin I Loss-of-Function in Mice Leads to Schizophrenia-Like Symptoms.
Koch N, Koch D, Krueger S, Tröger J, Sabanov V, Ahmed T, McMillan LE, Wolf D, Montag D, Kessels MM, Balschun D, et al.
Cerebral cortex (New York, N.Y. : 1991) (2020) : . 162 002 WB; tested species: mouse
Adult restoration of Shank3 expression rescues selective autistic-like phenotypes.
Mei Y, Monteiro P, Zhou Y, Kim JA, Gao X, Fu Z, Feng G
Nature (2016) 5307591: 481-4. 162 002 WB; tested species: mouse
Hyperactivity of newborn Pten knock-out neurons results from increased excitatory synaptic drive.
Williams MR, DeSpenza T, Li M, Gulledge AT, Luikart BW
The Journal of neuroscience : the official journal of the Society for Neuroscience (2015) 353: 943-59. 162 002 IHC
Cat. No.: 162 002
Amount: 200 µl
Price: $355.00
Syndapin I Loss-of-Function in Mice Leads to Schizophrenia-Like Symptoms.
Koch N, Koch D, Krueger S, Tröger J, Sabanov V, Ahmed T, McMillan LE, Wolf D, Montag D, Kessels MM, Balschun D, et al.
Cerebral cortex (New York, N.Y. : 1991) (2020) : . 162 002 WB; tested species: mouse
Adult restoration of Shank3 expression rescues selective autistic-like phenotypes.
Mei Y, Monteiro P, Zhou Y, Kim JA, Gao X, Fu Z, Feng G
Nature (2016) 5307591: 481-4. 162 002 WB; tested species: mouse
Hyperactivity of newborn Pten knock-out neurons results from increased excitatory synaptic drive.
Williams MR, DeSpenza T, Li M, Gulledge AT, Luikart BW
The Journal of neuroscience : the official journal of the Society for Neuroscience (2015) 353: 943-59. 162 002 IHC