L'Anticorps Dynein IC1/2, cytosolic (E-9) est un monoclonal de souris IgG3 κ, cité dans 2 publications, fourni en 200 µg/ml
raised against amino acids 339-638 mapping at the C-terminus of Dynein IC1, cytosolic of human origin
recommandé pour la détection de Dynein IC1, cytosolic of human origin, and Dynein IC2, cytosolic of mouse, rat and human origin par WB, IP, IF et ELISA
Voir Dynein IC1/2, cytosolic (74-1): sc-13524 pour d'autres anticorps conjugués Dynein IC1/2, cytosolic, dont AC, HRP, FITC, PE, Alexa Fluor® 488, 594, 647, 680 et 790.
m-IgG3 BP-HRP est le réactif secondaire recommandé pour la détection de l'anticorps Dynein IC1/2, cytosolic (E-9) pour des applications de WB. Ce réactif est maintenant proposé en kit avec l'anticorps Dynein IC1/2, cytosolic (E-9) (voir Informations pour la commande ci-dessous).
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possible, and a separate shipping charge will be included for each shipping method required. Shipping charges listed below are from our US warehouses to the Contiguous US,
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Ships via FedEx Ground to Contiguous US, Alaska, Canada, Monday through Friday. This method is used for less temperature sensitive items such as lab ware and animal
health products, bulky and/or heavy items
Labware ships FedEx Ground free of charge to the contiguous US
Dyneins are multisubunit, high molecular weight ATPases that interact with microtubules to generate force by converting the chemical energy of ATP into the mechanical energy of movement. Cytoplasmic or axonemal Dynein heavy, intermediate, light and light-intermediate chains are all components of minus end-directed motors; the complex transports cellular cargos towards the central region of the cell. Axonemal Dynein motors contain one to three non-identical heavy chains and cause a sliding of microtubules in the axonemes of cilia and flagella in a mechanism necessary for cilia to beat and propel the cell. Cytoplasmic Dynein is an approximately 12 subunit complex of two heavy chains, two intermediate chains to anchor Dynein to its cargo, four smaller intermediate chains and several light chains. It performs functions necessary for cell survival such as organelle transport and centrosome assembly. The carboxy terminus of Dynein is important for microtubule-dependent motility and is highly conserved, while the amino terminal regions are more variable. Several proteins regulate Dynein activity, including dynactin, LIS1 and NudEL(NudE-like).
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.