Click Here for 5% Off Your First Aladdin Purchase!

Recombinant MTA2/PID Antibody - Primary antibody, specific to MTA2, Rabbit IgG

  • ExactAb™
  • Recombinant
  • Validated
  • 0.8 mg/mL
Features and benefits
  • Short Overview:

    Recombinant; Rabbit anti Human MTA2/PID Antibody; WB; Unconjugated

  • Species reactivity(Reacts with): Human
  • Isotype: Rabbit IgG
    Application:
  • WB
Item Number
Ab116201
Grouped product items
SKUSizeAvailabilityPrice Qty
Ab116201-10μl
10μl
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$59.90
Ab116201-50μl
50μl
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$189.90
Ab116201-100μl
100μl
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$279.90
Ab116201-1ml
1ml
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$2,699.90

Recombinant; Rabbit anti Human MTA2/PID Antibody; WB; Unconjugated

View related series
Accession#:O94776 Gene ID:9219 MTA2 PID

Basic Description

Product NameRecombinant MTA2/PID Antibody - Primary antibody, specific to MTA2, Rabbit IgG
SynonymsMetastasis-associated 1-like 1 | MTA1-L1 protein | p53 target protein in deacetylase complex | MTA2 | MTA1L1 | PID | DKFZp686F2281 antibody | Mata1l1 antibody | Metastasis associated 1 family member 2 antibody | Metastasis associated 1 like 1 antibody | M
Specifications & PurityExactAb™, Validated, Recombinant, 0.8 mg/mL
Host speciesRabbit
SpecificityMTA2
ImmunogenA synthetic peptide derived from human MTA2 (AA 600-668)
Positive ControlWB: HeLa, MCF7, Jurkat and Hep G2 cell lysates.
ConjugationUnconjugated
GradeExactAb™, Recombinant, Validated
Product Description

Rabbit anti Human MTA2/PID Antibody, Recombinant, could be used for WB and so on.
Application:
WB: 1/500-1/1000
Protein Function:
May be involved in the regulation of gene expression as repressor and activator. The repression might be related to covalent modification of histone proteins.

Product Properties

IsotypeRabbit IgG
Light Chain Typekappa
SDS-PAGE150 kDa
Purification MethodProtein A purified
FormLiquid
Concentration0.8 mg/mL
Storage TempStore at -20°C,Avoid repeated freezing and thawing
Shipped InIce chest + Ice pads
Stability And StorageStore at 4°C short term (1-2 weeks). Store at -20°C long term (24 months). Upon delivery aliquot. Avoid freeze/thaw cycle.

Images

Recombinant MTA2/PID Antibody (Ab116201) - Western Blot
All lanes: Recombinant MTA2/PID Antibody (Ab116201) at 1/1000 dilution
Samples: Lysates at 20 µg per lane
Secondary: Goat Anti-Rabbit IgG H&L (HRP) (Ab170144) at 1/20000 dilution
Predicted band size: 75 kDa
Observed band size: 75 kDa
Exposure time: 45.0 s

Associated Targets

MTA2 Tbio Metastasis-associated protein MTA2 0 Activities

Activity TypeActivity Value -log(M)Mechanism of ActionActivity ReferencePublications (PubMed IDs)

Application

ApplicationDilution info
WB

1/500-1/1000

Certificates

Certificate of Analysis(COA)

Enter Lot Number to search for COA:

To view the certificate results,please click on a Lot number.For Lot numbers from past orders,please use our order status section

2 results found

Lot NumberCertificate TypeDateItem
ZJ24F0708768Certificate of AnalysisJul 25, 2024 Ab116201
ZJ24F0708769Certificate of AnalysisJul 25, 2024 Ab116201

Related Documents

References

1. Shi Y, Downes M, Xie W, Kao HY, Ordentlich P, Tsai CC, Hon M, Evans RM.  (2001)  Sharp, an inducible cofactor that integrates nuclear receptor repression and activation..  Genes Dev,  15  (9): (1140-51).  [PMID:11331609]
2. Choudhary C, Kumar C, Gnad F, Nielsen ML, Rehman M, Walther TC, Olsen JV, Mann M.  (2009)  Lysine acetylation targets protein complexes and co-regulates major cellular functions..  Science,  325  (5942): (834-40).  [PMID:19608861]
3. Luo J, Su F, Chen D, Shiloh A, Gu W.  (2000)  Deacetylation of p53 modulates its effect on cell growth and apoptosis..  Nature,  408  (6810): (377-81).  [PMID:11099047]
4. Todd D Taylor,Hideki Noguchi,Yasushi Totoki,Atsushi Toyoda,Yoko Kuroki,Ken Dewar,Christine Lloyd,Takehiko Itoh,Tadayuki Takeda,Dae-Won Kim,Xinwei She,Karen F Barlow,Toby Bloom,Elspeth Bruford,Jean L Chang,Christina A Cuomo,Evan Eichler,Michael G FitzGerald,David B Jaffe,Kurt LaButti,Robert Nicol,Hong-Seog Park,Christopher Seaman,Carrie Sougnez,Xiaoping Yang,Andrew R Zimmer,Michael C Zody,Bruce W Birren,Chad Nusbaum,Asao Fujiyama,Masahira Hattori,Jane Rogers,Eric S Lander,Yoshiyuki Sakaki.  (2006-03-24)  Human chromosome 11 DNA sequence and analysis including novel gene identification..  Nature,  440  ((7083)): (497-500).  [PMID:16554811]
5. Futamura, M M and 5 more authors..  (1999)  Molecular cloning, mapping, and characterization of a novel human gene, MTA1-L1, showing homology to a metastasis-associated gene, MTA1..  Journal of human genetics,      [PMID:9929979]
6. Le Guezennec, Xavier X and 6 more authors..  (2006)  MBD2/NuRD and MBD3/NuRD, two distinct complexes with different biochemical and functional properties..  Molecular and cellular biology,      [PMID:16428440]
7. Daub, Henrik H and 9 more authors..  (2008)  Kinase-selective enrichment enables quantitative phosphoproteomics of the kinome across the cell cycle..  Molecular cell,    (8):   [PMID:18691976]
8. Zhao, Wei-Meng WM and 5 more authors..  (2008)  RCS1, a substrate of APC/C, controls the metaphase to anaphase transition..  Proceedings of the National Academy of Sciences of the United States of America,    (9):   [PMID:18757745]
9. Mayya, Viveka V and 7 more authors..  (2009)  Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions..  Science signaling,    (18):   [PMID:19690332]
10. Rigbolt, Kristoffer T G KT and 9 more authors..  (2011)  System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation..  Science signaling,    (15):   [PMID:21406692]
11. Cong, Lin L, Pakala, Suresh B SB, Ohshiro, Kazufumi K, Li, Da-Qiang DQ and Kumar, Rakesh R..  (2011)  SUMOylation and SUMO-interacting motif (SIM) of metastasis tumor antigen 1 (MTA1) synergistically regulate its transcriptional repressor function..  The Journal of biological chemistry,    (23):   [PMID:21965678]
12. Xuan, C C and 9 more authors..  (2013)  RBB, a novel transcription repressor, represses the transcription of HDM2 oncogene..  Oncogene,    (8):   [PMID:22926524]
13. Zhou, Houjiang H and 6 more authors..  (2013)  Toward a comprehensive characterization of a human cancer cell phosphoproteome..  Journal of proteome research,    (4):   [PMID:23186163]
14. Nicolai, Serena S and 10 more authors..  (2015)  Identification of Novel Proteins Co-Purifying with Cockayne Syndrome Group B (CSB) Reveals Potential Roles for CSB in RNA Metabolism and Chromatin Dynamics..  PloS one,      [PMID:26030138]
15. Hoffmeister, Helen H and 12 more authors..  (2017)  CHD3 and CHD4 form distinct NuRD complexes with different yet overlapping functionality..  Nucleic acids research,    (13):   [PMID:28977666]

Solution Calculators