LSBio
IHC-plus™ Monoclonal Mouse anti-Human TERT / Telomerase Antibody (clone 2D8, IHC)

Anti-Telomerase antibody IHC of human lung, bronchiole. Immunohistochemistry of formalin-fixed, paraffin-embedded tissue after heat-induced antigen retrieval. Antibody concentration 5 ug/ml.

IHC-plus™ Monoclonal Mouse anti-Human TERT / Telomerase Antibody (clone 2D8, IHC)

Primary AntibodyLSBio Guarantee
Antibody:Mouse Monoclonal
Applications:Immunohistochemistry (general), Immunohistochemistry, Paraffin
Reactivity:Human
Format:Liquid
See all TERT / Telomerase antibodies →
$383.00each
Catalog Number: LS-B95-0.1

For bulk orders or custom formulations:

Request a Quote

Overview

Description
Telomerase antibody LS-B95 is an unconjugated mouse monoclonal antibody to human Telomerase (TERT). Validated for IHC. Tested on 20 paraffin-embedded human tissues. Cited in 2 publications.
Application
IHC, IHC-P
Reactivity
Hu
Intended Use
Research Use Only
Guarantees
This product carries the LSBio 100% Guarantee.
Category
Antibodies > Primary Antibodies > Monoclonal Antibodies
Alternative Names
DKCB4 | EST2 | HEST2 | PFBMFT1 | Telomerase | TP2 | DKCA2 | HTRT | TCS1 | Telomerase catalytic subunit | TERT | TRT
Recommended Dilution: IHC-P
1:400
UniProt Number
O14746
SwissProt
O14746

Target

Target
TERT / Telomerase
Antigen Species
Human
Specificity
LS-B95 is specific for hTERT/TERT.
Epitope
hTERT/TERT.
Gene Name
TERT

Antibody

Host Species
Mouse
Clonality
Monoclonal
Clone
2D8
Origin Species
Human

Immunogen

Immunogen
Full-length recombinant hTERT from insect cells.
Immunogen Type
Full-Length Recombinant Protein

Format

Conjugate/Label
Unconjugated
Format
Liquid
Formulation
0.1% Sodium Azide
Volume
0.1 Milliliter
Animal Free
No
Carrier-Free
Yes
Preservative
Yes

Storage & Handling

Storage Conditions
Aliquot and store at -20°C or -80°C. Avoid freeze-thaw cycles.

Molecular mechanisms by which oxidative DNA damage promotes telomerase activity. Lee HT, Bose A, Lee CY, Opresko PL, Myong S. Nucleic acids research. 2017 November;45:11752-11765.

PubMed: 28981887 · PMC: PMC5714237


Position-Dependent Effect of Guanine Base Damage and Mutations on Telomeric G-Quadruplex and Telomerase Extension. Hui-Ting Lee, Samantha Sanford, Tapas Paul, Joshua Choe, Arindam Bose, Patricia L Opresko, Sua Myong. Biochemistry. 2020 July;59:2627-2639.

PubMed: 32578995 · PMC: PMC8674823

Request SDS/MSDS

To request an SDS/MSDS form for this product, please contact our Technical Support department at: technical@vectorlabs.com.