Mouse Polyclonal DIAPH3 antibody. Suitable for WB and reacts with Human samples. Immunogen corresponding to Recombinant Full Length Protein corresponding to Human DIAPH3.
pH: 7.4
Constituents: 100% PBS
WB | |
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Human | Tested |
Species | Dilution info | Notes |
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Species Human | Dilution info 1 µg/mL | Notes - |
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Actin nucleation and elongation factor required for the assembly of F-actin structures, such as actin cables and stress fibers. Required for cytokinesis, stress fiber formation and transcriptional activation of the serum response factor. Binds to GTP-bound form of Rho and to profilin: acts in a Rho-dependent manner to recruit profilin to the membrane, where it promotes actin polymerization. DFR proteins couple Rho and Src tyrosine kinase during signaling and the regulation of actin dynamics. Also acts as an actin nucleation and elongation factor in the nucleus by promoting nuclear actin polymerization inside the nucleus to drive serum-dependent SRF-MRTFA activity.
DIAP3, DIAPH3, Protein diaphanous homolog 3, Diaphanous-related formin-3, MDia2, DRF3
Mouse Polyclonal DIAPH3 antibody. Suitable for WB and reacts with Human samples. Immunogen corresponding to Recombinant Full Length Protein corresponding to Human DIAPH3.
pH: 7.4
Constituents: 100% PBS
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DIAPH3 also known as diaphanous-related formin 3 is a protein with an approximate mass of 130 kDa. It plays an important role in the regulation of the actin cytoskeleton essential for the dynamic reorganization of actin filaments. DIAPH3 primarily functions by mediating actin nucleation and elongation facilitating cellular processes such as shape changes adhesion and division. The protein is expressed in various tissues with notable expression in the brain testis and pancreas.
DIAPH3 is a part of the formin family and acts by promoting the polymerization of actin filaments. It forms a complex with profilin and other actin-binding proteins maintaining the balance of cellular architecture. DIAPH3 contributes to the maintenance of normal cellular structure and dynamics participating in cell migration and morphogenesis. Its interaction with GTPases like RhoA regulates the initiation and stabilization of actin filaments directly impacting cell mechanics.
DIAPH3 engages in the Rho GTPase signaling pathway impacting actin dynamics and playing roles in cytoskeletal remodelling. It also participates in the mTOR signaling pathway influencing cell growth and metabolism. Within these pathways DIAPH3 works closely with proteins such as mTOR contributing to cellular responses like growth proliferation and survival. These pathways highlight DIAPH3’s involvement in coordinating cellular structural integrity and function.
Research has implicated DIAPH3 in sensory hearing loss and cancer progression. In hearing loss mutations in DIAPH3 disrupt the organization of actin filaments critical for auditory function. In the context of cancer abnormal DIAPH3 expression relates to increased cellular motility and invasion facilitating metastasis. In these conditions DIAPH3 interacts with proteins such as E-cadherin affecting cellular adhesion and communication and emphasizing its significance in disease mechanisms.
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All lanes: Western blot - Anti-DIAPH3 antibody (ab172701) at 1 µg/mL
Lane 1: DIAPH3 transfected 293T cell lysate at 15 µL
Lane 2: Non-transfected 293T cell lysate at 15 µL
All lanes: Goat Anti-mouse HRP Conjugate at 1/2500 dilution
Predicted band size: 137 kDa
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