Phospho-LYN (Y397)/LCK (Y394)/HCK (Y411)/BLK (Y389) Antibody [G2C4]

Catalog No.: F5584

    Application: Reactivity:
    • Lane 1: K562, Lane 2: K562 (CIP treated)
    1/

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    代表番号: 045-509-1970|電子メール:sales@selleck.co.jp

    使用情報

    Dilution
    1:1000
    1:100
    1:200-1:800
    Application
    WB, IP, FCM
    Source
    Rabbit Monoclonal Antibody
    Reactivity
    Human, Mouse
    Storage Buffer
    PBS, pH 7.2+50% Glycerol+0.05% BSA+0.01% NaN3
    Storage (from the date of receipt)
    -20°C (avoid freeze-thaw cycles), 2 years
    Predicted MW
    60 kDa
    ポジティブコントロール COLO 201 cells; GDM-1 cells
    ネガティブコントロール COLO 201 cells (Dasatinib, 200 nM, 24 h); TT cells

    プロトコール

    WB
    Experimental Protocol:
     
    Sample preparation
    1. Tissue: Lyse the tissue sample by adding an appropriate volume of ice-cold RIPA/NP-40 Lysis Buffer (containing Protease Inhibitor Cocktail, Phosphatase Inhibitor Cocktail),and homogenize the tissue at a low temperature.
    2. Adherent cell: Aspirate the culture medium and wash the cells with ice-cold PBS twice. Lyse the cells by adding an appropriate volume of RIPA/NP-40 Lysis Buffer (containing Protease Inhibitor Cocktail, Phosphatase Inhibitor Cocktail) and put the sample on ice for 5 min.
    3. Suspension cell: Transfer the culture medium to a pre-cooled centrifuge tube. Centrifuge and aspirate the supernatant. Wash the cells with ice-cold PBS twice. Lyse the cells by adding an appropriate volume of RIPA/NP-40 Lysis Buffer (containing Protease Inhibitor Cocktail, Phosphatase Inhibitor Cocktail) and put the sample on ice for 5 min.
    4. Place the lysate into a pre-cooled microcentrifuge tube. Centrifuge at 4°C for 15 min. Collect the supernatant;
    5. Remove a small volume of lysate to determine the protein concentration;
    6. Combine the lysate with protein loading buffer. Boil 20 µL sample under 95-100°C for 5 min. Centrifuge for 5 min after cool down on ice.
     
    Electrophoretic separation
    1. According to the concentration of extracted protein, load appropriate amount of protein sample and marker onto SDS-PAGE gels for electrophoresis. Recommended separating gel (lower gel) concentration: 10%. Reference Table for Selecting SDS-PAGE Separation Gel Concentrations
    2. Power up 80V for 30 minutes. Then the power supply is adjusted (110 V~150 V), the Marker is observed, and the electrophoresis can be stopped when the indicator band of the predyed protein Marker where the protein is located is properly separated. (Note that the current should not be too large when electrophoresis, too large current (more than 150 mA) will cause the temperature to rise, affecting the result of running glue. If high currents cannot be avoided, an ice bath can be used to cool the bath.)
     
    Transfer membrane
    1. Take out the converter, soak the clip and consumables in the pre-cooled converter;
    2. Activate PVDF membrane with methanol for 1 min and rinse with transfer buffer;
    3. Install it in the order of "black edge of clip - sponge - filter paper - filter paper - glue -PVDF membrane - filter paper - filter paper - sponge - white edge of clip";
    4. The protein was electrotransferred to PVDF membrane. ( 0.45 µm PVDF membrane is recommended ) Reference Table for Selecting PVDF Membrane Pore Size Specifications
    Recommended conditions for wet transfer: 200 mA, 120 min.
    ( Note that the transfer conditions can be adjusted according to the protein size. For high-molecular-weight proteins, a higher current and longer transfer time are recommended. However, ensure that the transfer tank remains at a low temperature to prevent gel melting.)
     
    Block
    1. After electrotransfer, wash the film with TBST at room temperature for 5 minutes;
    2. Incubate the film in the blocking solution ( recommending 5% BSA solution) for 1 hour at room temperature;
    3. Wash the film with TBST for 3 times, 5 minutes each time.
     
    Antibody incubation
    1. Use 5% skim milk powder to prepare the primary antibody working liquid (recommended dilution ratio for primary antibody 1:1000), gently shake and incubate with the film at 4°C overnight;
    2. Wash the film with TBST 3 times, 5 minutes each time;
    3. Add the secondary antibody to the blocking solution and incubate with the film gently at room temperature for 1 hour;
    4. After incubation, wash the film with TBST 3 times for 5 minutes each time.
     
    Antibody staining
    1. Add the prepared ECL luminescent substrate (or select other color developing substrate according to the second antibody) and mix evenly;
    2. Incubate with the film for 1 minute, remove excess substrate (keep the film moist), wrap with plastic film, and expose in the imaging system.

    Datasheet & SDS

    生物学的記述

    Specificity
    Phospho-LYN (Y397)/LCK (Y394)/HCK (Y411)/BLK (Y389) Antibody [G2C4] detects endogenous levels of total LYN, LCK, HCK, and BLK protein only when it is phosphorylated at Y397, Y394, Y411, and Y389 respectively.
    タンパク質の局在
    細胞膜、ゴルジ装置、細胞核、細胞接着、細胞突起、細胞質小胞、細胞骨格、リソソーム
    Uniprot ID
    P07948, P06239, P08631, P51451
    Clone
    G2C4
    Synonym(s)
    Tyrosine-protein kinase Lyn/Lck/Hck/Blk; LYN; LCK; HCK; BLK
    Background
    Phospho-LYN (Y397)/LCK (Y394)/HCK (Y411)/BLK (Y389) represent the activated forms of Src family kinases (SFKs) that transmit signals from immune receptors through autophosphorylation in their kinase activation loops. These kinases share a conserved SH3-SH2-kinase domain architecture where phosphorylation at homologous tyrosine residues, corresponding to Y416 in c-Src, displaces the activation loop from the catalytic cleft, enabling ATP binding and substrate access while relieving autoinhibitory SH2 clamping by C-terminal tyrosine phosphorylation. Receptor ligation triggers trans-autophosphorylation: LCK Y394 activation upon TCR/CD3 clustering recruits ZAP-70 via tandem ITAM motifs, propagating PLCγ-IP3-Ca2+ flux and NFAT nuclear translocation for T cell effector differentiation; LYN Y397 engages BCR/CD79a/b in B cells to phosphorylate SYK and activate PI3K-AKT-mTOR for survival while balancing ITIM-mediated inhibition through CD22/SHP-1 recruitment; HCK Y411 drives FcγR and integrin signaling in myeloid phagocytes via SYK-Vav-Rac cascades that reorganize actin for podosome formation, NADPH oxidase assembly, and cytokine release; BLK Y389 supports pre-BCR checkpoints through BLNK-SYK coupling that enforces light chain selection during B lymphopoiesis. Dual phosphorylation dynamics, activation loop versus C-terminal tail, integrate positive (CD28, CD40L) and negative (CD45, Csk) regulation to calibrate immune synapse maturation and prevent autoimmunity. These phospho-SFKs govern thymic selection, marginal zone B cell positioning, and macrophage polarization with tissue-specific expression patterns reflecting lineage commitment.
    References

    技術サポート

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