LSBio
tdTomato Antibody

Anti-tdTomato Ab at 1:1000 dilution. 293HEK cells transfected with cDNA. Lysates at 50ug per lane.

tdTomato Antibody

Primary AntibodyLSBio Guarantee
Antibody:Goat Polyclonal
Applications:Immunofluorescence, Immunohistochemistry (general), Immunohistochemistry, Frozen, Immunohistochemistry, Paraffin, Western Blot
Format:Liquid
See all Discosoma tdTomato antibodies →
$360.00each
Catalog Number: LS-C340696-600

For bulk orders or custom formulations:

Request a Quote

Overview

Description
TdTomato antibody LS-C340696 is an unconjugated goat polyclonal antibody to tdTomato from discosoma. Validated for IF, IHC and WB. Cited in 14 publications.
Application
IF, IHC, IHC-F, IHC-P, WB
Intended Use
Research Use Only
Guarantees
This antibody carries the LSBio 100% Guarantee.
Category
Antibodies > Primary Antibodies > Polyclonal Antibodies
Recommended Dilution: IF/ICC
1:50 - 1:500
Recommended Dilution: IHC-F
1:50 - 1:500
Recommended Dilution: IHC-P
1:50 - 1:500
Recommended Dilution: WB
1:500 - 1:2000

Target

Target
Discosoma tdTomato
Antigen Species
Other
Epitope
In 293HEK cells transfected with cds plasmid detects a band of 55 kDa by Western blot. It also detects tdTomato in brain sections by IHC. This antibody is specific for tdTomato and mCherry proteins. It does not cross-react to GFP (green fluorescent protein).

Antibody

Host Species
Goat
Clonality
Polyclonal

Immunogen

Immunogen
Purified recombinant protein produced in E. coli.
Immunogen Type
Recombinant Immunogen

Format

Conjugate/Label
Unconjugated
Format
Liquid
Formulation
PBS, 0.05% Sodium Azide, 20% Glycerol
Concentration
3 mg/mL
Preservative
Yes
Purification Method
Affinity Purified

Storage & Handling

Storage Conditions
Short term: store at 4°C. Long term: store at -20°C. Avoid freeze-thaw cycles.
Recommended Storage Buffer
PBS

Streamlined scanning for enhancer elements in Drosophila melanogaster. Voutev R, Mann RS. BioTechniques. 2016 March;60:141-4.

PubMed: 26956092 · PMC: PMC5464965


RhoBTB1 protects against hypertension and arterial stiffness by restraining phosphodiesterase 5 activity. Mukohda M, Fang S, Wu J, Agbor LN, Nair AR, Ibeawuchi SC, Hu C, Liu X, Lu KT, Guo DF, Davis DR, Keen HL, Quelle FW, Sigmund CD. The Journal of clinical investigation. 2019 March;129:2318-2332.

PubMed: 30896450 · PMC: PMC6546477


Hedgehog Pathway Drives Fusion-Negative Rhabdomyosarcoma Initiated From Non-myogenic Endothelial Progenitors. Drummond CJ, Hanna JA, Garcia MR, Devine DJ, Heyrana AJ, Finkelstein D, Rehg JE, Hatley ME. Cancer cell. 2018 January;33:108-124.

PubMed: 29316425 · PMC: PMC5790179


Midkine is a dual regulator of wound epidermis development and inflammation during the initiation of limb regeneration. Tsai SL, Baselga-Garriga C, Melton DA. eLife. 2020 January;9:e50765.

PubMed: 31934849 · PMC: PMC6959999


EZH2-Mediated Primary Cilium Deconstruction Drives Metastatic Melanoma Formation. Daniel Zingg, Julien Debbache, Rodrigo Peña-Hernández, Ana T Antunes, Simon M Schaefer, Phil F Cheng, Dario Zimmerli, Jessica Haeusel, Raquel R Calçada, Eylul Tuncer, Yudong Zhang, Raphaël Bossart, Kwok-Kin Wong, Konrad Basler, Reinhard Dummer, Raffaella Santoro, Mitchell P Levesque, Lukas Sommer. Cancer cell. 2018 July;34:69-84.e14.

PubMed: 30008323


Cortical Foxp2 Supports Behavioral Flexibility and Developmental Dopamine D1 Receptor Expression. Marissa Co, Stephanie L Hickey, Ashwinikumar Kulkarni, Matthew Harper, Genevieve Konopka. Cerebral cortex (New York, N.Y. : 1991). 2020 March;30:1855-1870.

PubMed: 31711176 · PMC: PMC7132914


Injectable, Hyaluronic Acid-Based Scaffolds with Macroporous Architecture for Gene Delivery. Arshia Ehsanipour, Tommy Nguyen, Tasha Aboufadel, Mayilone Sathialingam, Phillip Cox, Weikun Xiao, Christopher M Walthers, Stephanie K Seidlits. Cellular and molecular bioengineering. 2019 October;12:399-413.

PubMed: 31719923 · PMC: PMC6816628


Yin Yang 1 Orchestrates a Metabolic Program Required for Both Neural Crest Development and Melanoma Formation. Sandra Varum, Arianna Baggiolini, Luis Zurkirchen, Zeynep Kalender Atak, Claudio Cantù, Elisa Marzorati, Raphaël Bossart, Jasper Wouters, Jessica Häusel, Eylül Tuncer, Daniel Zingg, Dominiek Veen, Nessy John, Marcel Balz, Mitchell P Levesque, Konrad Basler, Stein Aerts, Nicola Zamboni, Reinhard Dummer, Lukas Sommer. Cell stem cell. 2019 Apr;24:637-653e9.

PubMed: 30951662


Yin Yang 1 Orchestrates a Metabolic Program Required for Both Neural Crest Development and Melanoma Formation. Ashley G Anderson, Ashwinikumar Kulkarni, Matthew Harper, Genevieve Konopka. Cell reports. 2019 Mar;30:3051-3066e7.

PubMed: 32130906 · PMC: PMC7137930


Injectable, macroporous scaffolds for delivery of therapeutic genes to the injured spinal cord. Arshia Ehsanipour, Mayilone Sathialingam, Laila M Rad, Joseph de Rutte, Rebecca D Bierman, Jesse Liang, Weikun Xiao, Dino Di Carlo, Stephanie K Seidlits. APL bioengineering. 2021 Mar;5:16104.

PubMed: 33728392 · PMC: PMC7946441


The retinal ipRGC-preoptic circuit mediates the acute effect of light on sleep. Ze Zhang #, Corinne Beier #, Tenley Weil, Samer Hattar. Nature communications. 2021 Aug;12:5115.

PubMed: 34433830 · PMC: PMC8387462


Wnt4 is crucial for cardiac repair by regulating mesenchymal-endothelial transition via the phospho-JNK/JNK. Wenyan Dong, Yue Zhao, Daqiang Wen, Yingjiong Lin, Chui Zeng, Jingkai Gu, Fan Liao, Ruiqi Li, Xu Zhang, Dianliang Wang, Wenqian Cai, Jinzhu Duan. Theranostics. 2022 June;12:4110-4126.

PubMed: 35673578 · PMC: PMC9169355


Redundancy and multifunctionality among spinal locomotor networks. Bau N Pham, Jiangyuan Luo, Harnadar Anand, Olivia Kola, Pia Salcedo, Connie Nguyen, Sarah Gaunt, Hui Zhong, Alan Garfinkel, Niranjala Tillakaratne, V Reggie Edgerton. Journal of neurophysiology. 2020 November;124:1469-1479.

PubMed: 32966757 · PMC: PMC8356786


Projections of ipRGCs and conventional RGCs to retinorecipient brain nuclei. Corinne Beier, Ze Zhang, Maria Yurgel, Samer Hattar. The Journal of comparative neurology. 2021 June;529:1863-1875.

PubMed: 33104235

Request SDS/MSDS

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