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ATP5G3 blocking peptide

ATP5G3 Blocking Peptide (N-Term)

Gene Names
ATP5G3; P3
Synonyms
ATP5G3; ATP5G3 Blocking Peptide (N-Term); ATP synthase F(0) complex subunit C3; mitochondrial; ATP synthase lipid-binding protein; ATP synthase proteolipid P3; ATP synthase proton-transporting mitochondrial F(0) complex subunit C3; ATPase protein 9; ATPase subunit c; ATP5G3 blocking peptide
Ordering
Specificity
The synthetic peptide sequence is selected from aa 32-42 of HUMAN ATP5G3
Form/Format
Synthetic peptide was lyophilized with 100% acetonitrile and is supplied as a powder. Reconstitute with 0.1 ml DI water for a final concentration of 1 mg/ml.
Sequence Length
142
Cellular Location
Mitochondrion membrane; Multi-pass membrane protein
Preparation and Storage
Maintain refrigerated at 2-8 degree C for up to 6 months. For long term storage store at -20 degree C.
Related Product Information for ATP5G3 blocking peptide
Mitochondrial membrane ATP synthase (F(1)F(0) ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F(1) - containing the extramembraneous catalytic core and F(0) - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation. Part of the complex F(0) domain. A homomeric c-ring of probably 10 subunits is part of the complex rotary element.

NCBI and Uniprot Product Information

NCBI GI #
NCBI GeneID
518
UniProt Accession #
Molecular Weight
14,693 Da
NCBI Official Full Name
ATP synthase F(0) complex subunit C3, mitochondrial
NCBI Official Synonym Full Names
ATP synthase, H+ transporting, mitochondrial Fo complex subunit C3 (subunit 9)
NCBI Official Symbol
ATP5G3
NCBI Official Synonym Symbols
P3
NCBI Protein Information
ATP synthase F(0) complex subunit C3, mitochondrial
UniProt Protein Name
ATP synthase F(0) complex subunit C3, mitochondrial
UniProt Gene Name
ATP5G3
UniProt Entry Name
AT5G3_HUMAN

NCBI Description

This gene encodes a subunit of mitochondrial ATP synthase. Mitochondrial ATP synthase catalyzes ATP synthesis, utilizing an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. ATP synthase is composed of two linked multi-subunit complexes: the soluble catalytic core, F1, and the membrane-spanning component, Fo, comprising the proton channel. The catalytic portion of mitochondrial ATP synthase consists of 5 different subunits (alpha, beta, gamma, delta, and epsilon) assembled with a stoichiometry of 3 alpha, 3 beta, and a single representative of the other 3. The proton channel seems to have nine subunits (a, b, c, d, e, f, g, F6 and 8). This gene is one of three genes that encode subunit c of the proton channel. Each of the three genes have distinct mitochondrial import sequences but encode the identical mature protein. Alternatively spliced transcript variants encoding different proteins have been identified. [provided by RefSeq, Jun 2010]

Uniprot Description

ATP5G3: Mitochondrial membrane ATP synthase (F(1)F(0) ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F(1) - containing the extramembraneous catalytic core and F(0) - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F(1) is coupled via a rotary mechanism of the central stalk subunits to proton translocation. Part of the complex F(0) domain. A homomeric c-ring of probably 10 subunits is part of the complex rotary element. Belongs to the ATPase C chain family.

Protein type: Energy Metabolism - oxidative phosphorylation; Membrane protein, integral; Membrane protein, multi-pass

Chromosomal Location of Human Ortholog: 2q31.1

Cellular Component: mitochondrial outer membrane; mitochondrial proton-transporting ATP synthase complex

Biological Process: ATP biosynthetic process; mitochondrial ATP synthesis coupled proton transport

Research Articles on ATP5G3

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Product Notes

The ATP5G3 atp5g3 (Catalog #AAA9230439) is a Blocking Peptide and is intended for research purposes only. The product is available for immediate purchase. It is sometimes possible for the material contained within the vial of "ATP5G3, Blocking Peptide" to become dispersed throughout the inside of the vial, particularly around the seal of said vial, during shipment and storage. We always suggest centrifuging these vials to consolidate all of the liquid away from the lid and to the bottom of the vial prior to opening. Please be advised that certain products may require dry ice for shipping and that, if this is the case, an additional dry ice fee may also be required.

Precautions

All products in the AAA Biotech catalog are strictly for research-use only, and are absolutely not suitable for use in any sort of medical, therapeutic, prophylactic, in-vivo, or diagnostic capacity. By purchasing a product from AAA Biotech, you are explicitly certifying that said products will be properly tested and used in line with industry standard. AAA Biotech and its authorized distribution partners reserve the right to refuse to fulfill any order if we have any indication that a purchaser may be intending to use a product outside of our accepted criteria.

Disclaimer

Though we do strive to guarantee the information represented in this datasheet, AAA Biotech cannot be held responsible for any oversights or imprecisions. AAA Biotech reserves the right to adjust any aspect of this datasheet at any time and without notice. It is the responsibility of the customer to inform AAA Biotech of any product performance issues observed or experienced within 30 days of receipt of said product. To see additional details on this or any of our other policies, please see our Terms & Conditions page.

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