ARG56406

anti-METTL3 antibody

anti-METTL3 antibody for ICC/IF,IHC-Formalin-fixed paraffin-embedded sections,Western blot and Human,Mouse,Rat

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Overview

Product Description

Rabbit Polyclonal antibody recognizes METTL3

Tested Reactivity Hu, Ms, Rat
Tested Application ICC/IF, IHC-P, WB
Host Rabbit
Clonality Polyclonal
Isotype IgG
Target Name METTL3
Antigen Species Human
Immunogen Recombinant protein of Human METTL3
Conjugation Un-conjugated
Alternate Names Spo8; IME4; Methyltransferase-like protein 3; EC 2.1.1.62; N6-adenosine-methyltransferase 70 kDa subunit; M6A; MT-A70

Application Instructions

Application Suggestion
Tested Application Dilution
ICC/IF1:50 - 1:100
IHC-P1:50 - 1:100
WB1:500 - 1:1000
Application Note * The dilutions indicate recommended starting dilutions and the optimal dilutions or concentrations should be determined by the scientist.

Properties

Form Liquid
Purification Affinity purification with immunogen.
Buffer PBS (pH 7.3), 0.02% Sodium azide and 50% Glycerol.
Preservative 0.02% sodium azide
Stabilizer 50% Glycerol
Storage Instruction For continuous use, store undiluted antibody at 2-8°C for up to a week. For long-term storage, aliquot and store at -20°C. Storage in frost free freezers is not recommended. Avoid repeated freeze/thaw cycles. Suggest spin the vial prior to opening. The antibody solution should be gently mixed before use.
Note For laboratory research only, not for drug, diagnostic or other use.

Bioinformation

Database Links

GeneID: 56335 Mouse METTL3

GeneID: 56339 Human METTL3

Swiss-port # Q86U44 Human N6-adenosine-methyltransferase 70 kDa subunit

Swiss-port # Q8C3P7 Mouse N6-adenosine-methyltransferase subunit METTL3

Gene Symbol METTL3
Gene Full Name methyltransferase like 3
Background This gene encodes the 70 kDa subunit of MT-A which is part of N6-adenosine-methyltransferase. This enzyme is involved in the posttranscriptional methylation of internal adenosine residues in eukaryotic mRNAs, forming N6-methyladenosine. [provided by RefSeq, Jul 2008]
Function N6-methyltransferase that methylates adenosine residues of some RNAs and acts as a regulator of the circadian clock, differentiation of embryonic stem cells and primary miRNA processing. N6-methyladenosine (m6A), which takes place at the 5'-[AG]GAC-3' consensus sites of some mRNAs, plays a role in the efficiency of mRNA splicing, processing, editing and mRNA stability. M6A regulates the length of the circadian clock: acts as a 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 acts as a regulator of mRNA stability: 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 also takes place in other RNA molecules, such as primary miRNA (pri-miRNAs). Mediates methylation of pri-miRNAs, marking them for recognition and processing by DGCR8. [UniProt]
Calculated MW 64 kDa

Images (3) Click the Picture to Zoom In

  • ARG56406 anti-METTL3 antibody WB image

    Western blot: 30 µg of 293T, COS-7 and Mouse testis lysates stained with ARG56406 anti-METTL3 antibody at 1:500 dilution.

  • ARG56406 anti-METTL3 antibody ICC/IF image

    Immunofluorescence: C6 cells stained with ARG56406 anti-METTL3 antibody.

  • ARG56406 anti-METTL3 antibody IHC-P image

    Immunohistochemistry: Paraffin-embedded Human stomach stained with ARG56406 anti-METTL3 antibody at 1:100 dilution.

Customer's Feedback

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Review for anti-METTL3 antibody

Application:WB

Sample:HepG2

Sample Loading Amount:30 µg

Primary Antibody Dilution Factor:1:500

Primary Antibody Incubation Time:overnight

Primary Antibody Incubation Temperature:4 ºC

Specific References

Transcriptomic analysis and laboratory experiments reveal potential critical genes and regulatory mechanisms in sepsis-associated acute kidney injury

WB / Mouse

Boyang Liu et al.
Ann Transl Med.,  (2022)

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