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AB110412

Total OXPHOS Blue Native WB 抗体 Cocktail

Total OXPHOS Blue Native WB Antibody Cocktail

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(55 Publications)

Total OXPHOS Blue Native WB Antibody Cocktail (ab110412) is part of the reagents, controls & accessories range. Abcam offers high-quality biological reagents and tools including antibodies, proteins, assays, cell lines and lysates.
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Western blot - Total OXPHOS Blue Native WB Antibody Cocktail (AB110412)
  • WB

Supplier Data

Western blot - Total OXPHOS Blue Native WB Antibody Cocktail (AB110412)

Two dimension Blue Native PAGE analysis of fibroblasts that are (A) normal and (B) complex I deficient. It is clear that the complex I deficient cell line shown in B shows no detectable level of complex I. However, all other OXPHOS complexes appear normal including a minor amount of heterocomplex formed between complexes III and IV which is a well documented species. Only a minor mitochondrial enrichment was performed upon these samples cell lines. Each sample represents only 8% of confluent cells taken from a 10 cm diameter tissue culture dish.

MWs :

(C-I) NDUFA9 - 36kDa

(C-II-70) SDHA - 70kDA

(C-III-Core 2) UQRC2) - 45kDa

(C-IV subunit IV) COX IV - 15kDa

(C-V alpha) ATP5A - 55kDa

false

Key facts

アプリケーション

WB

applications

交差種

Mouse, Rat, Cow, Human

Reactivity data

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "WB": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p>The antibody cocktail (1.5 mg/mL) should be diluted 250x to a final working concentration of 6.0 µg/mL for Western blotting</p>" } } }

製品の詳細

Blue Native polyacrylamide gel electrophoresis (BN-PAGE) is a simple and effective way to subfractionate mitochondrial proteins as intact complexes on a single gel (in one dimension). It can be used to detect altered assembly of these complexes arising from mutations in subunits, mutations in assembly factors, or mtDNA depletion. This type of analysis has been performed with biopsy samples, platelets and fibroblast cells from patients with suspected mitochondrial diseases.

In this method, multisubunit enzymes bind a charged dye Coomassie brilliant blue which allows their electrophoretic separation in the first dimension by the size of the complex. Complexes I-V with masses ranging from 950K to 200K are well resolved in the first dimension. The separated proteins can then be transferred to nitrocellulose membrane/PVDF by electrophoresis and Complexes I, II, III, IV and ATP synthase can be detected by mAbs against CI-NDUFA9 ab14713(MS111), CII-70 kDa subunit ab14715(MS204), CIII-Core protein 2 ab14745(MS304), CIV-subunit IV ab14744(MS407) and CV-alpha subunit ab14748(MS507) respectively. Such one dimensional gels, are best analyzed by using single mAbs against each complex. Other Complex I mAbs are available for BNPAGE, specifically anti-GRIM-19 ab110240(MS103) and anti-20 kDa ab110242(MS105). A sample of purified bovine heart mitochondria ab110338(MS802) is available as a BNPAGE control sample.

Sometimes a greater separation of enzymes is necessary - it is possible to separate the proteins within each individual complex. To do this, blotting is NOT performed after the first (NATIVE) dimension, instead gels are turned 90 degrees and run in a perpendicular second dimension which is denaturing (NON-NATIVE). In this way the protein subunits within each complex are separated. Abcam provides an optimized pre-mixed cocktail of the mAbs to SIMULTANEOUSLY detect Complexes I-V after 2nd dimension blotting (specifically the cocktail contains ab14713 (MS111), ab14715 (MS204), ab14745 (MS304), ab14744(MS407) and ab14748 (MS507).

Cocktail Antibodies:

Mouse monoclonal [20C11B11B11] to (C-I) NDUFA9 (ab14713):
Amount: 120 μg
Working Concentration: 2 μg/ml

Mouse monoclonal [2E3GC12FB2AE2] to (C-II-70) SDHA (ab14715):
Amount: 6 μg
Working Concentration: 0.1 μg/ml

Mouse monoclonal [13G12AF12BB11] to (C-III-Core 2) UQCRC2 (ab14745):
Amount: 60 μg
Working Concentration: 1 μg/ml

Mouse monoclonal [20E8C12] to (C-IV-subunit IV) COX IV(ab14744):
Amount: 60 μg
Working Concentration: 1 μg/ml

Mouse monoclonal [15H4C4 ] to (C-V-alpha) ATP5A (ab14748):
Amount: 60 μg
Working Concentration: 1 μg/ml

**Related products**Review the , or the full to learn about more assays for metabolites, metabolic enzymes, mitochondrial function, and oxidative stress, and also how to assay metabolic function in live cells using your plate reader.

出荷温度及び保存条件

出荷温度
Dry Ice
短期保存温度
-80°C
長期保存温度
-80°C

製品プロトコール

ターゲットの情報

文献 (55)

Recent publications for all applications. Explore the full list and refine your search

Science advances 9:eadh0558 PubMed37585521

2023

Cross-species analysis identifies mitochondrial dysregulation as a functional consequence of the schizophrenia-associated 3q29 deletion.

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Unspecified reactive species

Ryan H Purcell,Esra Sefik,Erica Werner,Alexia T King,Trenell J Mosley,Megan E Merritt-Garza,Pankaj Chopra,Zachary T McEachin,Sridhar Karne,Nisha Raj,Brandon J Vaglio,Dylan Sullivan,Bonnie L Firestein,Kedamawit Tilahun,Maxine I Robinette,Stephen T Warren,Zhexing Wen,Victor Faundez,Steven A Sloan,Gary J Bassell,Jennifer G Mulle

International journal of molecular sciences 23: PubMed36233322

2022

Desmin Knock-Out Cardiomyopathy: A Heart on the Verge of Metabolic Crisis.

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Barbara Elsnicova,Daniela Hornikova,Veronika Tibenska,David Kolar,Tereza Tlapakova,Benjamin Schmid,Markus Mallek,Britta Eggers,Ursula Schlötzer-Schrehardt,Viktoriya Peeva,Carolin Berwanger,Bettina Eberhard,Hacer Durmuş,Dorothea Schultheis,Christian Holtzhausen,Karin Schork,Katrin Marcus,Jens Jordan,Thomas Lücke,Peter F M van der Ven,Rolf Schröder,Christoph S Clemen,Jitka M Zurmanova

American journal of physiology. Lung cellular and molecular physiology 323:L355-L371 PubMed35763400

2022

Contribution of fatty acid oxidation to the pathogenesis of pulmonary hypertension.

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Michael H Lee,Linda Sanders,Rahul Kumar,Daniel Hernandez-Saavedra,Xin Yun,Joshay A Ford,Mario J Perez,Claudia Mickael,Aneta Gandjeva,Daniel E Koyanagi,Julie W Harral,David C Irwin,Biruk Kassa,Robert H Eckel,Larissa A Shimoda,Brian B Graham,Rubin M Tuder

Molecular metabolism 61:101499 PubMed35470094

2022

Loss of UCP1 function augments recruitment of futile lipid cycling for thermogenesis in murine brown fat.

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Josef Oeckl,Petra Janovska,Katerina Adamcova,Kristina Bardova,Sarah Brunner,Sebastian Dieckmann,Josef Ecker,Tobias Fromme,Jiri Funda,Thomas Gantert,Piero Giansanti,Maria Soledad Hidrobo,Ondrej Kuda,Bernhard Kuster,Yongguo Li,Radek Pohl,Sabine Schmitt,Sabine Schweizer,Hans Zischka,Petr Zouhar,Jan Kopecky,Martin Klingenspor

Human molecular genetics 31:3597-3612 PubMed35147173

2022

Deleterious variants in CRLS1 lead to cardiolipin deficiency and cause an autosomal recessive multi-system mitochondrial disease.

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Richard G Lee,Shanti Balasubramaniam,Maike Stentenbach,Tom Kralj,Tim McCubbin,Benjamin Padman,Janine Smith,Lisa G Riley,Archana Priyadarshi,Liuyu Peng,Madison R Nuske,Richard Webster,Ken Peacock,Philip Roberts,Zornitza Stark,Gabrielle Lemire,Yoko A Ito,Kym M Boycott,Michael T Geraghty,Jan Bert van Klinken,Sacha Ferdinandusse,Ying Zhou,Rebecca Walsh,Esteban Marcellin,David R Thorburn,Tony Rosciolli,Janice Fletcher,Oliver Rackham,Frédéric M Vaz,Gavin E Reid,Aleksandra Filipovska

Journal of neurochemistry 160:540-555 PubMed35038358

2022

Drosophila ZIP13 over-expression or transferrin1 RNAi influences the muscle degeneration of Pink1 RNAi by elevating iron levels in mitochondria.

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Jinsong Xue,Guangying Li,Xiaowen Ji,Zhi-Hua Liu,Hui-Li Wang,Guiran Xiao

Molecular biology of the cell 33:ar29 PubMed35080992

2022

Ovarian carcinoma immunoreactive antigen-like protein 2 (OCIAD2) is a novel complex III-specific assembly factor in mitochondria.

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Katarzyna Justyna Chojnacka,Praveenraj Elancheliyan,Ben Hur Marins Mussulini,Karthik Mohanraj,Sylvie Callegari,Aleksandra Gosk,Tomasz Banach,Tomasz Góral,Karolina Szczepanowska,Peter Rehling,Remigiusz Adam Serwa,Agnieszka Chacinska

Nature communications 13:134 PubMed35013307

2022

Mutations in Hcfc1 and Ronin result in an inborn error of cobalamin metabolism and ribosomopathy.

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Tiffany Chern,Annita Achilleos,Xuefei Tong,Matthew C Hill,Alexander B Saltzman,Lucas C Reineke,Arindam Chaudhury,Swapan K Dasgupta,Yushi Redhead,David Watkins,Joel R Neilson,Perumal Thiagarajan,Jeremy B A Green,Anna Malovannaya,James F Martin,David S Rosenblatt,Ross A Poché

Particle and fibre toxicology 18:44 PubMed34911549

2021

Transcriptomics of single dose and repeated carbon black and ozone inhalation co-exposure highlight progressive pulmonary mitochondrial dysfunction.

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Quincy A Hathaway,Nairrita Majumder,William T Goldsmith,Amina Kunovac,Mark V Pinti,Jack R Harkema,Vince Castranova,John M Hollander,Salik Hussain

BMC biology 19:265 PubMed34911556

2021

Enhanced hepatic respiratory capacity and altered lipid metabolism support metabolic homeostasis during short-term hypoxic stress.

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Katie A O'Brien,Ben D McNally,Alice P Sowton,Antonio Murgia,James Armitage,Luke W Thomas,Fynn N Krause,Lucas A Maddalena,Ian Francis,Stefan Kavanagh,Dominic P Williams,Margaret Ashcroft,Julian L Griffin,Jonathan J Lyon,Andrew J Murray
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