ATG16L1 Mouse Monoclonal Antibody(C2529)

Key features and details

Mouse monoclonal to ATG16L1
  • Target: ATG16L1
  • Source/Host: Mouse
  • Reactivity: Human,Mouse,Rat
  • Clonality: Monoclonal
  • Applications: WB, FC
  • Conjugation: Unconjugated
  • Storage: at-20°C
  • Brand:
CAT.NO. : AMA02141
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Product Details
Background
Plays an essential role in both canonical and non-canonical autophagy: interacts with ATG12-ATG5 to mediate the lipidation to ATG8 family proteins (MAP1LC3A, MAP1LC3B, MAP1LC3C, GABARAPL1, GABARAPL2 and GABARAP) . Acts as a molecular hub, coordinating autophagy pathways via distinct domains that support either canonical or non-canonical signaling . During canonical autophagy, interacts with ATG12-ATG5 to mediate the conjugation of phosphatidylethanolamine (PE) to ATG8 proteins, to produce a membrane-bound activated form of ATG8 . Thereby, controls the elongation of the nascent autophagosomal membrane . As part of the ATG8 conjugation system with ATG5 and ATG12, required for recruitment of LRRK2 to stressed lysosomes and induction of LRRK2 kinase activity in response to lysosomal stress .
Application
To ensure optimal assay performance, AREX recommends conducting reagent titration tailored to each testing system for optimal detection results.

WB

1:500 - 1:1000

FC

1:100 - 1:200

*Results are sample-specific. Please refer to your local assay conditions and test parameters for reference.
Overview

Description

Mouse monoclonal to ATG16L1

Specificity

Recognizes endogenous levels of ATG16L1 protein

Antibody Type

Primary antibody

Imnunogen

Recombinant fusion protein of human ATG16L1 expressed in E. Coli

Purification

This antibody is purified through a protein G column.

Molecular Weight

Predicted: 68 kD; Observed: 72 kD kD

Form/Buffer

Mouse IgG1. Liquid in PBS, pH 7.3, 30% glycerol, and 0.01% sodium azide.

Alternative Names

APG16L; Autophagy-related protein 16-1; APG16-like 1

Gene Symbol

ATG16L1

Entrez Gene

55054(Human); 77040(Mouse)

SwissProt

Q676U5(Human); Q8C0J2(Mouse)

*AREX continuously optimizes our products. Webpage content may not reflect the latest updates. For inquiries, please contact info@arexbio.com or your local distributor.
*Clone Number, Reactivity, Source/Host and Clonality can be found in the product name and Key Features section above.
Data

Western blot analysis of ATG16L1 expression in Hela (A), Raji (B), PANC1 (C), Jurkat (D), PC12 (E), HepG2 (F), HEK293 (G), NIH3T3 (H) whole cell lysates. (Predicted band size: 68 kD; Observed band size: 72 kD kD)

Flow cytometric analysis of HeLa cells using Anti-ATG16L1 Antibody (green) and negative control (red).

Storage
Store at 4°C short term. For long term storage, store at -20°C, avoiding freeze/thaw cycles.
Note
For Research Use Only. Not for diagnostic, therapeutics, prophylactic or in vivo use.
FAQs
What are the main types of research antibodies and how do they differ?
Research antibodies are mainly divided into monoclonal antibodies and polyclonal antibodies. Monoclonal antibodies typically offer higher specificity and better batch-to-batch consistency, while polyclonal antibodies often provide stronger affinity but may show more variation between batches. The choice depends on your specific experimental needs.
How can I tell if a research antibody is suitable for my experiment?
It is recommended to carefully review the product datasheet for validated applications, species reactivity, recommended dilutions, and published references. For new antibodies, performing a small-scale validation with positive control samples is usually helpful.
Can improper storage of research antibodies affect experimental results?
Yes. Antibodies are sensitive to temperature, repeated freeze-thaw cycles, and contamination. Improper storage may lead to reduced activity, increased background, or weaker signals. It is best to follow the storage instructions provided in the product datasheet.
Why doesn’t the recommended dilution in the datasheet work well in my experiment?
The recommended dilution is based on the supplier’s test conditions. Factors such as sample type, fixation method, and detection system in your lab can influence the optimal working concentration. Performing a dilution series optimization in your own system is often necessary.
What precautions should I take when using a newly purchased research antibody for the first time?
It is advisable to briefly centrifuge the antibody (especially concentrated or lyophilized ones), then perform a small-scale pilot experiment using the recommended conditions. Recording the batch number and usage date is also helpful for future tracking.
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