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| Taglio della confezione | SKU | Disponibilità | Prezzo |
|---|---|---|---|
| 5 mg | Per informazioni sulla disponibilità, contatta il Servizio Clienti. | 508,00 € |
Informazioni su questo articolo
NACRES:
NA.26
UNSPSC Code:
12352200
Form:
buffered aqueous solution
Assay:
≥90% (SDS-GE)
Recombinant:
expressed in E. coli
Mol wt:
22,043.9 Da
508,00 €
Per informazioni sulla disponibilità, contatta il Servizio Clienti.
Servizio Tecnico
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Permettici di aiutartirecombinant
expressed in E. coli
Quality Level
assay
≥90% (SDS-GE)
form
buffered aqueous solution
mol wt
22,043.9 Da
solubility
water: soluble
shipped in
ambient
storage temp.
−20°C
General description
Research area: Cell structure. Membrane Scaffold Protein 1D1 (MSP1D1) is a variant of MSP1 where the first eleven amino acids in the helix 1 portion are deleted of the original MSP1 sequence. It consists of an N-terminal histidine-tagged protein with a tobacco etch virus (TEV) protease cleavage site that is present between the protein sequence and histidine-tag. MSP1D1(–)variant of MSP1D1 lacks the histidine-tag and the TEV protease-recognition sequence.
Application
For guidelines on the use of this and other MSP′s to prepare Nanodiscs, please visit our Protocols for Membrane Scaffold Proteins and Nanodisc Formation page.
Biochem/physiol Actions
Nano-disctechnology is an approach that allows aqueous soluble membrane proteins in anative-like bilayer environment that enables the membrane proteins to remainactive and stable. The concept of this technology is derived from high-densitylipoprotein (HDL) particles and apolipoprotein, their primary proteincomponent. The nano-disc is a non-covalent structure consisting of MSP that isgenetically engineered to mimic the activity of apolipoprotein A1 (Apo-A1) andphospholipid bilayer. In the presence of synthetic phospholipids, MSP1D1 canself-assemble into discoidal nanoparticlesknown as nano-discs. These nano-discs are suitable for studying membraneproteins and are applicable in the field of medicine and biotechnology.[1]
Legal Information
Nanodisc technology, and many of its uses, are covered by the following patents held by the University of Illinois.
- 7,691,414 Membrane scaffold proteins
- 7,662,410 Membrane scaffold proteins and embedded membrane proteins
- 7,622,437 Tissue factor compositions and methods
- 7,592,008 Membrane scaffold proteins
- 7,575,763 Membrane scaffold proteins and tethered membrane proteins
- 7,083,958 Membrane scaffold proteins
- 7,048,949 Membrane scaffold proteins
1 of 1
Questo articolo | |||
|---|---|---|---|
| assay ≥90% (SDS-GE) | assay ≥90% (SDS-GE) | assay ≥90% (SDS-GE) | assay ≥90% (SDS-GE) |
| recombinant expressed in E. coli | recombinant expressed in E. coli | recombinant expressed in E. coli | recombinant expressed in E. coli |
| form buffered aqueous solution | form buffered aqueous solution | form buffered aqueous solution | form buffered aqueous solution |
| mol wt 22,043.9 Da | mol wt - | mol wt - | mol wt 45,541.2 Da |
| shipped in ambient | shipped in ambient | shipped in ambient | shipped in ambient |
| solubility water: soluble | solubility - | solubility - | solubility water: soluble |
Classe di stoccaggio
12 - Non Combustible Liquids
wgk
WGK 2
flash_point_f
Not applicable
flash_point_c
Not applicable
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Protocolli
Nanodisc technology aids membrane protein solubilization, overcoming associated challenges in diverse protein classes.
Contenuto correlato
Instructions
Ramona Faas et al.
Biotechnology reports (Amsterdam, Netherlands), 17, 45-48 (2018-01-31)
Membrane scaffold proteins (MSPs) are synthetic derivatives of apolipoprotein A-I, a major protein component of human high-density lipoprotein complexes. The most common among these is the variant MSP1D1, which has been in the focus of research on membrane mimetics in
Numero articolo commerciale globale
| SKU | GTIN |
|---|---|
| MSP03-5MG | 04061831159639 |



