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alpha Tubulin Monoclonal Antibody

  • Cat.No.:E-AB-20036

  • Host: Mouse
  • Reactivity: H,M,R
  • Applications: WB,IHC-p,IF,IP

To Purchase E-AB-20036

Size:
  • 30μL
  • 60μL
  • 120μL
  • 200μL
Price: $73
Qty:

Test Application

  • Verified Samples

    Reactivity Application
    Human WB
    (Hela,)

    Western Blot analysis of Hela cells, Rat brain and Mouse brain using alpha Tubulin Monoclonal Antibody at dilution of 1:5000.

    Rat WB
    (brain,)

    Western Blot analysis of Hela cells, Rat brain and Mouse brain using alpha Tubulin Monoclonal Antibody at dilution of 1:5000.

    Mouse WB
    (brain,)

    Western Blot analysis of Hela cells, Rat brain and Mouse brain using alpha Tubulin Monoclonal Antibody at dilution of 1:5000.

    IHC
    (liver,)

    Immunohistochemistry of paraffin-embedded Mouse liver using alpha Tubulin Monoclonal Antibody at dilution of 1:200.

    IF
    (liver,)

    Immunofluorescence analysis of Mouse liver tissue using alpha Tubulin Monoclonal Antibody at dilution of 1:200.

  • Dilution

    WB 1:500-10000
    IHC 1:50-300
    IF 1:50-1:200
    IP 1:100-1:300

Preparation of protein samples

1.Protein extraction

1)For tissue sample
a. Take the samples, wash the tissue thoroughly with pre-cooled PBS (0.01 M, pH=7.4)(Cat# E-BC-R187) to remove the surface blood and internal debris.
b. Weigh and smash the tissue, add an appropriate ratio of RIPA Lysis Buffer (Cat# E-BC-R327)(add 10 μL PMSF and 10 μL Na3VO4 to each 1 mL RIPA Lysis) and homogenizely lyse the tissue.
It is recommended to homogenize according to the ratio of tissue weight: RIPA volume = 3:10. For example, add 1 mL RIPA Lysis Buffer to 0.3 g tissue sample, the specific volume can be adjusted according to experimental requirements.
c. Shake and lyse on the ice for 30 min after homogenization. And then sonicate the sample for 1 min (under ice water bath conditions) with 2 s’ sonication and 2 s’ intervals to make cells fully lysis and reduce the viscosity of sample.
d. Centrifuge at 12,000 rpm for 10 min at 4℃.
e. Take the supernatant and measure the protein concentration mentioned in step2.

2)For cell sample
a. Collect the cells, wash them thoroughly with pre-cooled PBS (0.01 M, pH=7.4) to remove the medium off (it is generally recommended to wash 3 times).
b. Add an appropriate ratio of RIPA Lysate Buffer (10 μL PMSF and 10 μL Na3VO4 in each 1 mL RIPA Lysis) and lyse on the ice for 30 min.
It is recommended to add 0.1 mL of RIPA Lysis Buffer to each well of a 6-well plates (the protein content in different cells may vary, and the volume of the lysate added can be appropriately adjusted).
c. Sonicate the sample for 1 min (under ice water bath conditions) with 2 s’ sonication and 2 s’ intervals to make cells fully lyse and reduce viscosity of sample.
d. Centrifuge at 12,000 rpm for 10 min at 4℃.
e. Take the supernatant and measure the protein concentration mentioned in step2.

2.Measurement of protein concentration
By the BCA method (see the Total Protein Colorimetric Assay Kit (Cat# E-BC-K318) instructions).

3.Boiling the samples
Adjust the protein concentration with PBS Buffer. Add 5 × SDS Loading Buffer (Cat# E-BC-R288) with the ratio of the protein sample: 5 × SDS Loading Buffer = 4:1 and boil the mixture for 10 min. Centrifuge at 12,000 rpm for 2 min and collect the supernatant. The denatured protein can be employed to Western Blot experiments or stored at -20℃ or -80℃.

Note: It is recommended that the total protein loading amount of test sample is about 50 μg in each well. Try to make the loading volume of each sample close to 10 μL.

Electrophoresis

1.According to the molecular weight of the target protein, prepare 0% separation gel. Add the test sample to each well, and add 5 μL of Pre-stained Protein Marker (Cat# E-BC-R273)to a reserved well in order to verify the target molecular weight and the extent of membrane transfer. Add Electrophoresis Buffer ( Cat# E-BC-R331) and start electrophoresis.

2.Electrophoresis at 80v when the samples are in stacking gel, then convert to 120v when the blue flow into the separating gel. Electrophoresis time is about 2-3 h till bromophenol blue reaches the bottom of the gel.

Transfer Membrane

1.Choose the PVDF Membrane (Cat# E-BC-R266) with a pore size of μm according to the molecular weight of the target protein. Soak the PVDF Membrane in methanol for 1 min to activate it, and then soak the PVDF Membrane in the Transmembrane Buffer (Cat# E-BC-R333), the filter paper and fiber mat must be soaked in the Transmembrane Buffer for use too.

2.Follow manufacture instructions of Transfer System for wet, semi-dry, or dry transfer.

Incubation of antibodies

1.Soak the PVDF Membrane with TBST Buffer (Cat# E-BC-R335) containing 5% Skim Milk Powder as blocking buffer and block the membrane at room temperature for .

2.According to the recommended primary antibody dilution ratio, use the TBST Buffer containing 5% Skim Milk Powder to dilute the α-tubulin Antibody at , soak the PVDF Membrane in the primary antibody working solution, incubate overnight at 4 ℃, and gently shake.

3.Wash the PVDF Membrane with TBST Buffer for .

4.According to the recommended secondary antibody dilution ratio, use a TBST Buffer solution containing 2% Skim Milk Powder to dilute Goat Anti-Rabbit IgG (H+L) (peroxidase/HRP conjugated) (Cat# E-AB-1003) at . Incubate at room temperature for 1 h on a shaker.

5.Wash the PVDF Membrane with TBST Buffer for .

Detection

1.Mix A and B in the Excellent Chemiluminescent Substrate Detection kit (Cat# E-BC-R347) at the ratio of 1:1 as working solution.

2.Take out the PVDF Membrane from TBST Buffer and absorb the liquid with the filter paper. Pave the PVDF Membrane on the detection machine, add ECL working solution continuously on the PVDF Membrane, discharge the bubble and detect the result.

3.Adjust the contrast and the exposure time to get the best image.

Appendix

Product Details

Clonality Monoclonal
Isotype IgG
Concentration 1 mg/mL
Storage Store at -20℃. Avoid freeze / thaw cycles.
Buffer PBS with 0.02% sodium azide and 50% glycerol pH 7.4.
Purification Method Protein A purification
Research Areas Cancer, Signal Transduction
Clone No. Clone:5M5
Conjugation Unconjugated

Immunogen Details

Immunogen Recombinant Protein
Abbre α-tubulin
Synonyms TUBA1A,TUBA3,Tubulin alpha-1A chain,Alpha-tubulin 3,Tubulin B-alpha-1,Tubulin alpha-3 chain,TUBA1B,Tubulin alpha-1B chain,Alpha-tubulin ubiquitous,Tubulin K-alpha-1,Tubulin alpha-ubiquitous chain
Swissprot Q71U36,P68363
Calculated MW 50kDa
Observed MW 52kDa

Western blotting is a method for detecting a certain protein in a complex sample based on the specific binding of antigen and antibody. Different proteins can be divided into bands based on different mobility rates. The mobility is affected by many factors, which may cause the observed band size to be inconsistent with the expected size. The common factors include:

1. Post-translational modifications: For example, modifications such as glycosylation, phosphorylation, methylation, and acetylation will increase the molecular weight of the protein.

2. Splicing variants: Different expression patterns of various mRNA splicing bodies may produce proteins of different sizes.

3. Post-translational cleavage: Many proteins are first synthesized into precursor proteins and then cleaved to form active forms, such as COL1A1.

4. Relative charge: the composition of amino acids (the proportion of charged amino acids and uncharged amino acids).

5. Formation of multimers: For example, in protein dimer, strong interactions between proteins can cause the bands to be larger. However, the use of reducing conditions can usually avoid the formation of multimers.

If a protein in a sample has different modified forms at the same time, multiple bands may be detected on the membrane.

Cellular Localization Cytoskeleton,cytoplasmic microtubule,microtubule,microtubule cytoskeleton,Cytosol,Endosome,recycling endosome,Extracellular region or secreted,extracellular exosome,Nucleus,Other locations:cytoplasmic ribonucleoprotein granule,membrane raft,myelin sheath

Background

There are five tubulins in human cells: alpha, beta, gamma, delta, and epsilon. Tubulins are conserved across species. They form heterodimers, which multimerize to form a microtubule filament. An alpha and beta tubulin heterodimer is the basic structural unit of microtubules. The heterodimer does not come apart, once formed. The alpha and beta tubulins, which are each about 55 kDa MW, are homologous but not identical. Alpha, beta, and gamma tubulins have all been used as loading controls. Tubulin expression may vary according to resistance to antimicrobial and antimitotic drugs.

Citations

  1. ENVIRONMENTAL POLLUTION (2022) IF: 8.071
    Autophagic event and metabolomic disorders unveil cellular toxicity of environmental microplastics on marine polychaete Hediste diversicolor

    DOI: 10.1016/j.envpol.2022.119106

    PMID: 35248622

    Sample: pidermis,epithelial,connective tissue
  2. Molecular Metabolism (2021) IF: 7.422
    Sodium-glucose co-transporter2 expression and inflammatory activity in diabetic atherosclerotic plaques: Effects of sodium-glucose co-transporter2 inhibitor treatment

    DOI: 10.1016/j.molmet.2021.101337

    PMID: 34500107

    Sample: human aorta endothelial cells (EC)
  3. Frontiers in Immunology (2021) IF: 7.561
    Integrative Transcriptomic, Proteomic and Functional Analysis Reveals ATP1B3 as a Diagnostic and Potential Therapeutic Target in Hepatocellular Carcinoma

    DOI: 10.3389/fimmu.2021.636614

    Sample: L02 cell,Huh7 cell,HCCLM3 cell
  4. Antioxidants (2022) IF: 7.675
    SIRT3 Modulates Endothelial Mitochondrial Redox State during Insulin Resistance

    DOI: 10.3390/antiox11081611

    PMID: 36009329

    Sample: Endothelial cells (EC)
  5. Marine Drugs (2022) IF: 6.085
    Cytotoxic Potential of the Marine Diatom Thalassiosira rotula: Insights into Bioactivity of 24-Methylene Cholesterol

    DOI: 10.3390/md20100595

    PMID: 36286419

    Sample: A549 cell,MCF7 cell
  6. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022) IF: 6.208
    Buffalo Milk Whey Activates Necroptosis and Apoptosis in a Xenograft Model of Colorectal Cancer

    DOI: 10.3390/ijms23158464

    PMID: 35955595

    Sample: HCT116 cell-xenograft
  7. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022) IF: 6.208
    Breed and Feeding System Impact the Bioactive Anti-Inflammatory Properties of Bovine Milk

    DOI: 10.3390/ijms231911088

    PMID: 36232386

    Sample: ECs
  8. Cancers (2021) IF: 6.639
    SIRT3 and Metabolic Reprogramming Mediate the Antiproliferative Effects of Whey in Human Colon Cancer Cells

    DOI: 10.3390/cancers13205196

    PMID: 34680344

    Sample: HCT 116 cell,HT-29 cell
  9. Nutrients (2022) IF: 6.706
    Milk Exosomal miR-27b Worsen Endoplasmic Reticulum Stress Mediated Colorectal Cancer Cell Death

    DOI: 10.3390/nu14235081

  10. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021) IF: 5.924
    Preliminary Investigation on the Involvement of Cytoskeleton-Related Proteins, DAAM1 and PREP, in Human Testicular Disorders

    DOI: 10.3390/ijms22158094

    PMID: 34360857

    Sample: testicular
  11. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2022) IF: 5.924
    New Insight on the In Vitro Effects of Melatonin in Preserving Human Sperm Quality

    DOI: 10.3390/ijms23095128

    PMID: 35563519

    Sample: Spermatozoa (SPZ)
  12. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021) IF: 5.924
    Kisspeptin Receptor on the Sperm Surface Reflects Epididymal Maturation in the Dog

    DOI: 10.3390/ijms221810120

    PMID: 34576283

    Sample: testis
  13. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES (2021) IF: 5.924
    Colorectal Cancer Apoptosis Induced by Dietary δ-Valerobetaine Involves PINK1/Parkin Dependent-Mitophagy and SIRT3

    DOI: 10.3390/ijms22158117

    PMID: 34360883

    Sample: CCD 841 CoN cells,SW480cells,SW620 cells
  14. Genes (2022) IF: 4.096
    Differential Expression of Kisspeptin System and Kisspeptin Receptor Trafficking during Spermatozoa Transit in the Epididymis

    DOI: 10.3390/genes13020295

    PMID: 35205340

    Sample: epididymis
  15. FEBS LETTERS (2022) IF: 4.124
    Diet-derived ergothioneine induces necroptosis in colorectal cancer cells by activating the SIRT3/MLKL pathway

    DOI: 10.1002/1873-3468.14310

    Sample: SW620 cell,HT-29 cell,LoVo cell
  16. TOXICON (2022) IF: 3.033
    Potential protective effect of lactic acid bacteria against zearalenone causing reprotoxicity in male mice

    DOI: 10.1016/j.toxicon.2022.02.011

    PMID: 35181403

    Sample: testis
  17. INTERNATIONAL JOURNAL OF ONCOLOGY (2020) IF: 3.899
    ANXA1‑derived peptides suppress gastric and colon cancer cell growth by targeting EphA2 degradation

    DOI: 10.3892/ijo.2020.5119

    PMID: 32901832

    Sample: Cell culture supernatant
  18. Animals (2021) IF: 2.752
    Preliminary Investigation on the Ameliorative Role Exerted by D-Aspartic Acid in Counteracting Ethane Dimethane Sulfonate (EDS) Toxicity in the Rat Testis

    DOI: 10.3390/ani11010133

    PMID: 33435542

    Sample: Tissue
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