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AB317646

Anti-METTL3 antibody [EPR28558-37] - BSA and Azide free (Capture)

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Rabbit Recombinant Monoclonal METTL3 antibody. Carrier free. Suitable for sELISA and reacts with Human, Mouse, Rat samples.

View Alternative Names

MTA70, METTL3, N(6)-adenosine-methyltransferase catalytic subunit METTL3, Methyltransferase-like protein 3, N(6)-adenosine-methyltransferase 70 kDa subunit, hMETTL3, MT-A70

1 Images
Sandwich ELISA - Anti-METTL3 antibody [EPR28558-37] - BSA and Azide free (Capture) (AB317646)
  • sELISA

Supplier Data

Sandwich ELISA - Anti-METTL3 antibody [EPR28558-37] - BSA and Azide free (Capture) (AB317646)

Sandwich ELISA of ab317645 with the capture antibody ab317646 dilution at 2 ug/mL and detector antibody ab317647 dilution at 0.5 ug/mL.

Key facts

Host species

Rabbit

Clonality

Monoclonal

Clone number

EPR28558-37

Isotype

IgG

Carrier free

Yes

Reacts with

Human, Mouse, Rat

Applications

sELISA

applications

Immunogen

The exact immunogen used to generate this antibody is proprietary information.

Reactivity data

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Product details

ab317646 is a BSA and Azide free antibody supplied in an unconjugated format and it is suitable for sandwich ELISAs to quantify METTL3. The recommended pair for sandwich ELISA is:

Capture: ab317646, METTL3 Capture Antibody (unconjugated)

Detector: ab317647, METTL3 Detector Antibody (unconjugated)

The reference range value is 19.53-5000 pg/mL.

The recommended antibody orientation is based on internal optimization for ELISA based assays. Antibody orientation is assay dependent and needs to be optimized for each assay type. Please note that the range provided for this antibody is only an estimation based on the performance of the product using the recommended antibody pair. Performance of the antibody pair will depend on the specific characteristics of your assay. We guarantee the product works in sandwich ELISA, but we do not guarantee the sensitivity or dynamic range of the antibody in your assay.

Our carrier-free formats are supplied in a buffer free of BSA, sodium azide and glycerol for higher conjugation efficiency. The antibodies are provided at an approximate concentration of 1 mg/ml as measured by the protein A280 method. Use our conjugation kits for antibody conjugates that are ready-to-use in as little as 20 minutes with <1 minute hands-on-time and 100% antibody recovery: available for fluorescent dyes, HRP, biotin and gold.

Sandwich ELISA
The recommended antibody orientation is based on internal optimization for ELISA-based assays. Antibody orientation is assay dependent and needs to be optimized for each assay type. Please note that the range provided for this antibody is only an estimation based on the performance of the product using the recommended antibody pair. Performance of the antibody pair will depend on the specific characteristics of your assay. We guarantee the product works in sandwich ELISA, but we do not guarantee the sensitivity or dynamic range of the antibody in your assay.

Patented technology
Our RabMAb® technology is a patented hybridoma-based technology for making rabbit monoclonal antibodies. For details on our patents, please refer to RabMAb® patents.

What are the advantages of a recombinant monoclonal antibody?
This product is a recombinant monoclonal antibody, which offers several advantages including:

  • - High batch-to-batch consistency and reproducibility
  • - Improved sensitivity and specificity
  • - Long-term security of supply
  • - Animal-free batch production

For more information, read more on recombinant antibodies.

Conjugation ready
Our carrier-free antibodies are typically supplied in a PBS-only formulation, purified and free of BSA, sodium azide and glycerol. This conjugation-ready format is designed for use with fluorochromes, metal isotopes, oligonucleotides, and enzymes, which makes them ideal for antibody labelling, functional and cell-based assays, flow-based assays (e.g. mass cytometry) and Multiplex Imaging applications.

Use our conjugation kits for antibody conjugates that are ready-to-use in as little as 20 minutes with 1 minute hands-on-time and 100% antibody recovery: available for fluorescent dyes, HRP, biotin and gold.

Properties and storage information

Form
Liquid
Purification technique
Affinity purification Protein A
Storage buffer
pH: 7.2 - 7.4 Constituents: PBS
Shipped at conditions
Blue Ice
Appropriate short-term storage conditions
+4°C
Appropriate long-term storage conditions
+4°C

Supplementary information

This supplementary information is collated from multiple sources and compiled automatically.

The METTL3 protein also known as methyltransferase like 3 plays an important role in the modification of RNA. It is a component of the N6-adenosine-methyltransferase complex and is responsible for introducing the m6A mark on RNA. The molecular weight of METTL3 is approximately 70 kDa. This protein shows high expression in the human central nervous system and various cancer tissues indicating its broad significance.
Biological function summary

METTL3 contributes to the post-transcriptional regulation of gene expression by modulating m6A methylation. It functions as part of a complex with METTL14 and Wilms' tumor 1-associating protein (WTAP) to execute this modification. The m6A mark influences RNA stability splicing export and translation affecting cellular processes significantly.

Pathways

METTL3 operates within critical pathways such as the mRNA stability and processing pathway. In these pathways METTL3 interacts with proteins like METTL14 and YTH domain-containing proteins which are important for m6A reader function. Together they regulate RNA processing events that influence cellular function and adaptation.

METTL3 associates strongly with cancer development and neurological disorders. In cancers alterations in METTL3 expression affect tumor progression and metastasis impacting oncogenes like MYC. In the realm of neurological disorders METTL3's role in m6A modification affects RNA regulation aligning it with proteins like FTO which also participate in m6A demethylation processes. Understanding these connections highlights METTL3 as a potential target for therapeutic interventions.

Product protocols

For this product, it's our understanding that no specific protocols are required. You can visit:

Target data

The METTL3-METTL14 heterodimer forms a N6-methyltransferase complex that methylates adenosine residues at the N(6) position of some RNAs and regulates various processes such as the circadian clock, differentiation of embryonic and hematopoietic stem cells, cortical neurogenesis, response to DNA damage, differentiation of T-cells and primary miRNA processing (PubMed : 22575960, PubMed : 24284625, PubMed : 25719671, PubMed : 25799998, PubMed : 26321680, PubMed : 26593424, PubMed : 27281194, PubMed : 27373337, PubMed : 27627798, PubMed : 28297716, PubMed : 29348140, PubMed : 29506078, PubMed : 30428350, PubMed : 9409616). In the heterodimer formed with METTL14, METTL3 constitutes the catalytic core (PubMed : 27281194, PubMed : 27373337, PubMed : 27627798). N6-methyladenosine (m6A), which takes place at the 5'-[AG]GAC-3' consensus sites of some mRNAs, plays a role in mRNA stability, processing, translation efficiency and editing (PubMed : 22575960, PubMed : 24284625, PubMed : 25719671, PubMed : 25799998, PubMed : 26321680, PubMed : 26593424, PubMed : 28297716, PubMed : 9409616). M6A acts as a key regulator of mRNA stability : methylation is completed upon the release of mRNA into the nucleoplasm and promotes mRNA destabilization and degradation (PubMed : 28637692). In embryonic stem cells (ESCs), m6A methylation of mRNAs encoding key naive pluripotency-promoting transcripts results in transcript destabilization, promoting differentiation of ESCs (By similarity). M6A regulates the length of the circadian clock : acts as an early pace-setter in the circadian loop by putting mRNA production on a fast-track for facilitating nuclear processing, thereby providing an early point of control in setting the dynamics of the feedback loop (By similarity). M6A also regulates circadian regulation of hepatic lipid metabolism (PubMed : 30428350). M6A regulates spermatogonial differentiation and meiosis and is essential for male fertility and spermatogenesis (By similarity). Also required for oogenesis (By similarity). Involved in the response to DNA damage : in response to ultraviolet irradiation, METTL3 rapidly catalyzes the formation of m6A on poly(A) transcripts at DNA damage sites, leading to the recruitment of POLK to DNA damage sites (PubMed : 28297716). M6A is also required for T-cell homeostasis and differentiation : m6A methylation of transcripts of SOCS family members (SOCS1, SOCS3 and CISH) in naive T-cells promotes mRNA destabilization and degradation, promoting T-cell differentiation (By similarity). Inhibits the type I interferon response by mediating m6A methylation of IFNB (PubMed : 30559377). M6A also takes place in other RNA molecules, such as primary miRNA (pri-miRNAs) (PubMed : 25799998). Mediates m6A methylation of Xist RNA, thereby participating in random X inactivation : m6A methylation of Xist leads to target YTHDC1 reader on Xist and promote transcription repression activity of Xist (PubMed : 27602518). M6A also regulates cortical neurogenesis : m6A methylation of transcripts related to transcription factors, neural stem cells, the cell cycle and neuronal differentiation during brain development promotes their destabilization and decay, promoting differentiation of radial glial cells (By similarity). METTL3 mediates methylation of pri-miRNAs, marking them for recognition and processing by DGCR8 (PubMed : 25799998). Acts as a positive regulator of mRNA translation independently of the methyltransferase activity : promotes translation by interacting with the translation initiation machinery in the cytoplasm (PubMed : 27117702). Its overexpression in a number of cancer cells suggests that it may participate in cancer cell proliferation by promoting mRNA translation (PubMed : 27117702). During human coronavirus SARS-CoV-2 infection, adds m6A modifications in SARS-CoV-2 RNA leading to decreased RIGI binding and subsequently dampening the sensing and activation of innate immune responses (PubMed : 33961823).
See full target information METTL3

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