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RalBP1 polyclonal Antibody | CAS7517

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Description

RalBP1 polyclonal Antibody | CAS7517 | Gentaur UK, US & Europe Distribution

Host: Rabbit

Reactivity: Human,Rat,Mouse

Application: WB IP

Application Range: WB: 1:5000~1:10000 IP:1:2000~1:8000

Background: The RalA binding protein 1 (RalBP1 or RLIP76) was originally identified as a GTP-RalA associated protein that acted as a downstream RalA effector in regulating Ral-Ras signaling. RalBP1 interacts with RalA and the endocytosis protein REPS2 (POB1) through its carboxy-terminal Ral binding domain. RalBP1 has an intrinsic GTPase activating function and interacts with Cdc42 through its centrally located Rho-GAP domain. A protein complex containing RalBP1/POB1/RalA regulates endocytosis of membrane receptors. RalBP1 also functions as a non-ABC transporter that catalyzes the ATP-dependent transport of numerous xenobiotics, including glutathione conjugates and some chemotherapeutic agents. RalBP1 transporter activity may play an important role in detoxification, drug resistance and the stress response. Increased expression of RalBP1 protein is associated with some forms of cancer and regression of cancer xenografts results from RalBP1 inhibition. Evidence to date suggests that RalBP1 may be a promising therapeutic target for cancer therapy.

Storage & Stability: Store at 4°C short term. Aliquot and store at -20°C long term. Avoid freeze-thaw cycles.

Specificity: RalBP1 polyclonal Antibody detects endogenous levels of RalBP1 protein.

Molecular Weight: ~ 100 kDa

Note: For research use only, not for use in diagnostic procedure.

Alternative Names: RalA-binding protein 1; RalBP1; 76 kDa Ral-interacting protein; Dinitrophenyl S-glutathione ATPase; DNP-SG ATPase; Ral-interacting protein 1; RALBP1; RLIP1; RLIP76

Immunogen: Recombinant protein of human RalBP1.

Conjugate: Unconjugated

Modification: Unmodification

Purification & Purity: The Antibody was affinity-purified from rabbit antiserum by affinity-chromatography using epitope-specific immunogen and the purity is > 96% (by SDS-PAGE) .

Pathway: Regulation of Microtubule Dynamics,

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