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Glut1 Antibody - BSA Free

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Biological Strategies: Western Blot: Glut1 Antibody [NB110-39113] - PrP-mediated increase in IC iron downregulates glucose transporters in the brain, neuroretina, and the liver: A similar evaluation of retinal ...read more
Western Blot: Glut1 Antibody [NB110-39113] - Western blot of GLUT1 on mouse kidney membrane protein (lane A) and rat kidney membrane protein (lane B).
Immunohistochemistry-Paraffin: Glut1 Antibody [NB110-39113] - Immunohistochemical analysis of FFPE tissue section of human placenta using 1:200 dilution of Glut1 antibody. The staining was developed using HRP-DAB ...read more
Flow Cytometry: Glut1 Antibody [NB110-39113] - An intracellular stain was performed on HepG2 with NB110-39113 and a matched isotype control. Cells were fixed with 4% PFA and then permeablized with 0.1% saponin. Cells ...read more
Immunocytochemistry/ Immunofluorescence: Glut1 Antibody [NB110-39113] - HepG2 cells were fixed for 10 minutes using 10% formalin and then permeabilized for 5 minutes using 1X TBS + 0.5% Triton X-100. The cells were ...read more
Western Blot: Glut1 Antibody [NB110-39113] - Analysis of HeLa lysates using NB110-39113. Image courtesy of Gregg Semenza (PMID: 21620138).
Western Blot: Glut1 Antibody [NB110-39113] - Glut1 in human brain lysate (55 kDa). Antibody at 1:500. Western blot image submitted by a verified customer review.
Biological Strategies: Flow Cytometry: Glut1 Antibody [NB110-39113] - Flow cytometry analysis using the PE conjugate of NB110-39113. Staining of Glut 1 expression on CD4+ T cells stimulated with anti-CD3/CD28 ...read more
Immunocytochemistry/ Immunofluorescence: Glut1 Antibody - BSA Free [NB110-39113] - LAIR-1 inhibits Glut1-related glucose uptake in OS cells. a Heatmap showing the levels of differentially expressed mRNAs. b Top 20 KEGG ...read more
Western Blot: Glut1 Antibody - BSA Free [NB110-39113] - LAIR-1 inhibits Glut1-related glucose uptake in OS cells. a Heatmap showing the levels of differentially expressed mRNAs. b Top 20 KEGG pathway annotation ...read more
Simple Western: Glut1 Antibody - BSA Free [NB110-39113] - Protein changes in ONHAs corroborate bioenergetics data. (A) Glucose transporter-1 protein levels in Stretched ONH astrocytes are significantly higher than ...read more

Product Details

Summary
Reactivity Hu, Mu, Rt, Rb, Bv, PmSpecies Glossary
Applications WB, Simple Western, ChIP, Flow, Func, ICC/IF, IHC, ChIP
Clonality
Polyclonal
Host
Rabbit
Conjugate
Unconjugated
Format
BSA Free
Concentration
1 mg/ml
Validated by:
   

Biological Strategies

     

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Glut1 Antibody - BSA Free Summary

Immunogen
This Glut1 antibody is made against a synthetic peptide made to an N-terminal region of the human GLUT1 protein (between residues 1-100). [Swiss-Prot# P11166]. The immunogen is cytosolic.
Localization
Cell membrane, cytoplasm (near membranes), melanosome
Marker
Plasma Membrane Marker
Predicted Species
Primate (100%), Bovine (93%). Backed by our 100% Guarantee.
Isotype
IgG
Clonality
Polyclonal
Host
Rabbit
Gene
SLC2A1
Purity
Immunogen affinity purified
Innovator's Reward
Test in a species/application not listed above to receive a full credit towards a future purchase.

Applications/Dilutions

Dilutions
  • Chromatin Immunoprecipitation (ChIP)
  • Chromatin Immunoprecipitation reported in scientific literature
  • Flow (Intracellular) 1 ug/ml
  • Flow Cytometry 1 ug/ml. Use reported by customer review
  • Immunocytochemistry/ Immunofluorescence 1:1000
  • Immunohistochemistry 1:200
  • Immunohistochemistry-Frozen 1:200. Use reported in scientific literature
  • Immunohistochemistry-Paraffin 1:200
  • In vitro assay reported in scientific literature (Trachsel V et al)
  • Simple Western
  • Western Blot 1:500
Application Notes
In WB a band is seen at ~55 kDa on kidney membrane preps representing GLUT1 protein. Depending on the tissue and any post-translational modifications, this protein can run anywhere between 40-60 kDa. See Simple Western Antibody Database for Simple Western validation: Tested in mouse eye tissue from D2 and D2G ON mouse model; separated by size; antibody dilution of 1:50.
Theoretical MW
54.1 kDa.
Disclaimer note: The observed molecular weight of the protein may vary from the listed predicted molecular weight due to post translational modifications, post translation cleavages, relative charges, and other experimental factors.
Reviewed Applications
Read 7 Reviews rated 4.9
using
NB110-39113 in the following applications:

Publications
Read Publications using
NB110-39113 in the following applications:

Reactivity Notes

Rabbit reactivity reported in scientific literature (PMID: 29456650). 100% sequence identity with primate, 93% sequence identity with bovine.

Packaging, Storage & Formulations

Storage
Aliquot and store at -20C or -80C. Avoid freeze-thaw cycles.
Buffer
PBS
Preservative
0.02% Sodium Azide
Concentration
1 mg/ml
Purity
Immunogen affinity purified

Alternate Names for Glut1 Antibody - BSA Free

  • Choreoathetosis/Spasticity, Episodic (Paroxysmal Choreoathetosis)
  • CSE
  • DYT17
  • DYT18
  • DYT9
  • EIG12
  • Glucose transporter type 1, erythrocyte/brain
  • Glut1
  • GLUT-1
  • GLUT1DS
  • HepG2 glucose transporter
  • HTLVR
  • Human T-Cell Leukemia Virus (I and II) Receptor
  • MGC141895
  • MGC141896
  • PED
  • SLC2A1
  • solute carrier family 2 (facilitated glucose transporter), member 1
  • Solute Carrier Family 2 Member 1
  • solute carrier family 2, facilitated glucose transporter member 1

Background

Glucose transporter 1 (GLUT1) or solute carrier family 2 (SLC2A1) is a member of the GLUT family of monosaccharides and polyols transporters. GLUT proteins transport glucose across cellular membranes through facilitative mechanisms and play a key role in glucose homeostasis (1). Fourteen GLUT proteins have been identified in the human, which are encoded by SLC2A genes 1-14 and are broadly expressed in many cell types and tissues. GLUT family members differ in sequence homology, substrate specificity and expression patterns. Based on sequence homology, GLUT family members are classified into Class I (GLUT1, 2, 3, 4, and GLUT14), Class II (GLUT5, 7, 9, and 11), and Class III (GLUT6, 8, 10, 12 and 13) (1). Structurally, GLUT transporters are integral membrane glycoproteins consisting of 12 membrane spanning helical domains, a single N-linked glycosylation site, and having cytoplasmic facing carboxy and amino terminal domains (2).

GLUT1 (Human glycosylated form theoretical molecular weight 55kDa) functions primarily as a glucose transporter but can transport other substrates including mannose, galactose and glucosamine across the membrane (3). Like other GLUT family members, GLUT1 is broadly expressed, nevertheless it is the predominant glucose transporter expressed in red blood cells and brain endothelial cells (1). SLC2A1 mutations underscore the autosomal dominant disorder GLUT1 deficiency syndrome (GLUTI-DS) which is characterized by low glucose levels in the brain or hypoglycorrhachia due to insufficient glucose transport across the blood brain barrier (2, 4, 5). Phenotypically, GLUT1-DS is characterized by early onset seizures, neurologic developmental delay, microcephaly, and ataxia (4). GLUT1 is highly expressed in the endothelium of cutaneous vascular lesions and serves as a marker for the diagnosis of juvenile or infantile hemangiomas (6).

References

1. Augustin, R. (2010). The protein family of glucose transport facilitators: It's not only about glucose after all. IUBMB Life. https://doi.org/10.1002/iub.315

2. Mueckler, M., & Thorens, B. (2013). The SLC2 (GLUT) family of membrane transporters. Molecular Aspects of Medicine. https://doi.org/10.1016/j.mam.2012.07.001

3. Stein, W. D., & Litman, T. (2015). Carrier-Mediated Transport. In Channels, Carriers, and Pumps. https://doi.org/10.1016/b978-0-12-416579-3.00004-6

4. Pearson, T. S., Akman, C., Hinton, V. J., Engelstad, K., & De Vivo, D. C. (2013). Phenotypic spectrum of glucose transporter type 1 deficiency syndrome (Glut1 DS). Current Neurology and Neuroscience Reports. https://doi.org/10.1007/s11910-013-0342-7

5. Messana, T., Russo, A., Vergaro, R., Boni, A., Santucci, M., & Pini, A. (2018). Glucose transporter type 1 deficiency syndrome: Developmental delay and early-onset ataxia in a novel mutation of the SLC2A1 gene. Journal of Pediatric Neurosciences. https://doi.org/10.4103/JPN.JPN_169_17

6. van Vugt, L. J., van der Vleuten, C. J. M., Flucke, U., & Blokx, W. A. M. (2017). The utility of GLUT1 as a diagnostic marker in cutaneous vascular anomalies: A review of literature and recommendations for daily practice. Pathology Research and Practice. https://doi.org/10.1016/j.prp.2017.04.023

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.

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NB110-39113
Species: Hu, Mu, Rt, Rb, Bv, Pm
Applications: WB, Simple Western, ChIP, Flow, Func, ICC/IF, IHC, ChIP

Publications for Glut1 Antibody (NB110-39113)(62)

We have publications tested in 4 confirmed species: Human, Mouse, Rat, Rabbit.

We have publications tested in 12 applications: Block/Neutralize, Chemotaxis, FLOW, ICC/IF, IF/IHC, IHC-Fr, IHC-P, Immunocytochemistry/ Immunofluorescence, In vitro, PCR, WB, Western Blot.


Filter By Application
Block/Neutralize
(1)
Chemotaxis
(2)
FLOW
(11)
ICC/IF
(3)
IF/IHC
(2)
IHC-Fr
(2)
IHC-P
(2)
Immunocytochemistry/ Immunofluorescence
(1)
In vitro
(1)
PCR
(1)
WB
(23)
Western Blot
(2)
All Applications
Filter By Species
Human
(17)
Mouse
(20)
Rat
(3)
Rabbit
(1)
All Species
Showing Publications 1 - 10 of 62. Show All 62 Publications.
Publications using NB110-39113 Applications Species
Galiger C, Zohora FT, Dorneburg C et al. The survivin-ran inhibitor LLP-3 decreases oxidative phosphorylation, glycolysis and growth of neuroblastoma cells BMC cancer 2023-11-25 [PMID: 38007466]
Nishioku T, Anzai R, Hiramatsu S et al. Lactate dehydrogenase A inhibition prevents RANKL-induced osteoclastogenesis by reducing enhanced glycolysis Journal of Pharmacological Sciences 2023-12-01 [PMID: 37973217] (WB, Mouse) WB Mouse
Artico LL, Ruas JS, Teixeira Júnior JR et al. IGFBP7 Fuels the Glycolytic Metabolism in B-Cell Precursor Acute Lymphoblastic Leukemia by Sustaining Activation of the IGF1R-Akt-GLUT1 Axis International journal of molecular sciences 2023-06-02 [PMID: 37298628] (FLOW) FLOW
Alexandria Béland-Millar, Alexia Kirby, Yen Truong, Julie Ouellette, Sozerko Yandiev, Khalil Bouyakdan, Chantal Pileggi, Shama Naz, Melissa Yin, Micaël Carrier, Pavel Kotchetkov, Marie-Kim St-Pierre, Marie-Ève Tremblay, Julien Courchet, Mary-Ellen Harper, Thierry Alquier, Claude Messier, Adam J Shuhendler, Baptiste Lacoste 16p11.2 haploinsufficiency reduces mitochondrial biogenesis in brain endothelial cells and alters brain metabolism in adult mice. Cell reports 2023-06-05 [PMID: 37149866]
Nsiah NY, Inman DM. Destabilizing COXIV in M�ller Glia Increases Retinal Glycolysis and Alters Scotopic Electroretinogram Cells 2022-11-24 [PMID: 36497016] (Immunocytochemistry/ Immunofluorescence) Immunocytochemistry/ Immunofluorescence
Yeudall S, Upchurch CM, Seegren PV et al. Macrophage acetyl-CoA carboxylase regulates acute inflammation through control of glucose and lipid metabolism Science advances 2022-11-25 [PMID: 36417534] (WB, Mouse)

Details:
Dilution of 1:1000 was used
WB Mouse
Bertelli PM, Pedrini E, Hughes D et al. Long term high glucose exposure induces premature senescence in retinal endothelial cells Frontiers in Physiology 2022-08-26 [PMID: 36091370]
Jassim AH, Nsiah NY, Inman DM. Ocular Hypertension Results in Hypoxia within Glia and Neurons throughout the Visual Projection Antioxidants (Basel) 2022-04-29 [PMID: 35624752]
He X, Zeng H, Cantrell AC et al. Knockout of TIGAR enhances myocardial phosphofructokinase activity and preserves diastolic function in heart failure Journal of Cellular Physiology 2022-08-01 [PMID: 35621078] (Western Blot, Block/Neutralize) Western Blot, Block/Neutralize
Pham K, Hanaford AR, Poore BA et al. Comprehensive Metabolic Profiling of MYC-Amplified Medulloblastoma Tumors Reveals Key Dependencies on Amino Acid, Tricarboxylic Acid and Hexosamine Pathways Cancers 2022-03-03 [PMID: 35267619] (WB, Human) WB Human
Show All 62 Publications.

Reviews for Glut1 Antibody (NB110-39113) (7) 4.97

Average Rating: 4.9
(Based on 7 reviews)
We have 7 reviews tested in 3 species: Human, Mouse, Human and Mouse.

Reviews using NB110-39113:
Filter by Applications
WB
(5)
ICC
(2)
All Applications
Filter by Species
Human
(4)
Mouse
(2)
Human and Mouse
(1)
All Species
Images Ratings Applications Species Date Details
Western Blot Glut1 NB110-39113
Enlarge
4
reviewed by:
Verified Customer
WB Mouse 04/23/2019
View

Summary

ApplicationWestern Blot
Sample TestedMouse skeletal muscle
SpeciesMouse
LotF-7
Immunocytochemistry Glut1 NB110-39113
Enlarge
5
reviewed by:
Verified Customer
ICC Human 10/24/2017
View

Summary

ApplicationImmunocytochemistry
Sample Testedbeta cells
SpeciesHuman
LotF-2

Comments

Commentsuse at 1:100
Western Blot Glut1 NB110-39113
Enlarge
5
reviewed by:
Ajay Ashok
WB Human 06/12/2017
View

Summary

ApplicationWestern Blot
Sample TestedBrain
SpeciesHuman

Comments

Commentsuse at 1:500
Immunocytochemistry Glut1 NB110-39113
Enlarge
5
reviewed by:
Ajay Ashok
ICC Mouse 06/12/2017
View

Summary

ApplicationImmunocytochemistry
Sample Testedmouse eye
SpeciesMouse

Comments

Commentsuse at 1:100 concentration
Western Blot Glut1 NB110-39113
Enlarge
5
reviewed by:
Ajay Ashok
WB Human and Mouse 06/12/2017
View

Summary

ApplicationWestern Blot
Sample TestedRetina (inner nuclear layer)
SpeciesHuman and Mouse

Comments

CommentsUse at a conc of 1:500 for 20ug sample protein loaded
Western Blot Glut1 NB110-39113
Enlarge
5
reviewed by:
Marie-estelle LOSFELD
WB Human 03/09/2014
View

Summary

ApplicationWestern Blot
Sample Testedmembrane fraction from lung cancer cells
SpeciesHuman
Western Blot Glut1 NB110-39113
Enlarge
5
reviewed by:
Verified Customer
WB Human 09/01/2010
View

Summary

ApplicationWestern Blot
Sample TestedHeLa cell lysates, Sample Amount: 20 ug
SpeciesHuman

Product General Protocols

Video Protocols

WB Video Protocol
ChIP Webinar
ChIP Video Protocol
ICC/IF Video Protocol

FAQs for Glut1 Antibody (NB110-39113). (Showing 1 - 1 of 1 FAQs).

  1. Can you tell me what, if any, antigen retrieval method was used for the staining of paraffin tissue sections with GLUT1 Antibody (NB110-39113)?
    • We recommend the use of HIER (heat-induced epitope retrieval) with 0.01 M sodium citrate buffer, pH 6.0 at 100C for 20 minutes in a steamer or pressure cooker.

Secondary Antibodies

 

Isotype Controls

Additional Glut1 Products

Research Areas for Glut1 Antibody (NB110-39113)

Find related products by research area.

Blogs on Glut1.

Deficiency of GluT1 leads to neurological problems while excess is involved in cancers
By Jamshed Arslan, Pharm. D., PhD. What Are GluTs?Mammalian cell metabolism is incomplete without glucose   . Glucose is a monosaccharide that is transported to the cells through facilitative diffusion, a ...  Read full blog post.

Detecting HIF alpha and beyond: Best controls for hypoxia Western blot analysis
By Rosa Moreno, PhD. Detecting HIF alpha and beyond: Best controls for hypoxia Western blot analysisPhysiological low levels of oxygen induce normal hypoxic events across biological systems. This hypoxic state activ...  Read full blog post.

Forecasting and Targeting a Rare Cancer with Hypoxia-Inducible Factor
By Jamshed Arslan Pharm.D. Cancers of nerve, adipose, and other soft tissues are called soft tissue sarcomas (STS). Malignant peripheral nerve sheath tumor (MPNST) is an example of a rare and hard-to-treat STS; eve...  Read full blog post.

HIF-2 alpha: HIF1A's Homologue with Similar and Divergent Functions
HIF-2 alpha is a member of the heterodimeric hypoxia-inducible factors/HIFs family (HIF-1, HIF-2, and HIF-3) which contains a common beta subunit but differ in their alpha subunits. Also called as EPAS1 or Mop2, HIF-2 alpha regulates cellular adapt...  Read full blog post.

Glucose Transporter 1 (GLUT1): a Key Metabolic Neuronal Player
Glucose is the principal fuel source for the brain and GLUT1 is the only vehicle by which glucose enters the brain. In case of GLUT1 deficiency, the risk of clinical manifestations is increased in infancy and childhood, when the brain glucose demand i...  Read full blog post.

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Recent Reviews

4.9
5
6
4
1
3
0
2
0
1
0

Verified Customer
04/23/2019
Application: WB
Species: Mouse

Verified Customer
10/24/2017
Application: ICC
Species: Human

Ajay Ashok
06/12/2017
Application: WB
Species: Human

Bioinformatics

Gene Symbol SLC2A1