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  3. GltI/YbeJ Protein, E.coli (His-SUMO)

The GltI/YbeJ protein is a key component of the ABC transporter complex GltIJKL and is essential for active transport of glutamate and aspartate. As the solute-binding protein in the complex, GltI binds glutamate and aspartate. GltI/YbeJ Protein, E.coli (His-SUMO) is the recombinant E. coli-derived GltI/YbeJ protein, expressed by E. coli , with N-His, N-SUMO labeled tag.

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Description

The GltI/YbeJ protein is a key component of the ABC transporter complex GltIJKL and is essential for active transport of glutamate and aspartate. As the solute-binding protein in the complex, GltI binds glutamate and aspartate. GltI/YbeJ Protein, E.coli (His-SUMO) is the recombinant E. coli-derived GltI/YbeJ protein, expressed by E. coli , with N-His, N-SUMO labeled tag.

Background

GltI/YbeJ protein is an integral component of the ABC transporter complex GltIJKL, crucial for the active uptake of glutamate and aspartate. Operating as a solute-binding protein within the complex, GltI plays a pivotal role in binding both glutamate and aspartate. This complex comprises two ATP-binding proteins (GltL), two transmembrane proteins (GltJ and GltK), and the solute-binding protein GltI. Together, these components orchestrate the efficient transport of glutamate and aspartate across the cell membrane, highlighting the essential function of GltI/YbeJ in this process.

Species

E.coli

Source

E. coli

Tag

N-His;N-SUMO

Accession

P37902 (D23-N302)

Gene ID

946938  [NCBI]

Molecular Construction
N-term
6*His-SUMO
GltI (D23-N302)
Accession # P37902
C-term
Synonyms
gltI; ybeJ; yzzK; b0655; JW5092Glutamate/aspartate import solute-binding protein
AA Sequence

DDAAPAAGSTLDKIAKNGVIVVGHRESSVPFSYYDNQQKVVGYSQDYSNAIVEAVKKKLNKPDLQVKLIPITSQNRIPLLQNGTFDFECGSTTNNVERQKQAAFSDTIFVVGTRLLTKKGGDIKDFANLKDKAVVVTSGTTSEVLLNKLNEEQKMNMRIISAKDHGDSFRTLESGRAVAFMMDDALLAGERAKAKKPDNWEIVGKPQSQEAYGCMLRKDDPQFKKLMDDTIAQVQTSGEAEKWFDKWFKNPIPPKNLNMNFELSDEMKALFKEPNDKALN

Molecular Weight

Approximately 47.2 kDa

Purity

Greater than 90% as determined by reducing SDS-PAGE.

Endotoxin Level

<1 EU/μg, determined by LAL method.

Documentation

GltI/YbeJ Protein, E.coli (His-SUMO) Related Classifications

Help & FAQs
  • How should lyophilized recombinant proteins be reconstituted and stored?

    1. Before opening the cap, centrifuge the vial at 13000 rpm for 20-30 seconds. This step will ensure that any lyophilized powder that may have adhered to the cap or walls is collected at the bottom of the vial, minimizing the risk of product loss. 2. Taking 10 μg as an example, first add 20 μL of reconstituted solution provided by MCE and use a pipette to gently resuspend the lyophilized protein until it is fully dissolved.. (For most proteins, the reconstitution solution we provide is sterile water. If a diluent other than water is required, it will be indicated in the product's Certificate of Analysis (COA).). 3. Add an additional 80 μL of buffer/culture medium containing carrier protein (either 0.1% BSA, 5% HSA, 10% FBS, or 5% trehalose), and then use a pipette to gently mix until uniform. The final concentration is should not be lower than 100 μg/mL. 4. Aliquot at least 20 μL per tube. 5. After aliquoting, store it frozen at a temperature ranging from -20ºC to -80ºC, and it can be preserved for 3 to 6 months.

  • How should solution-form recombinant proteins be stored?

    1. The product can be stored in its original form and diluted as needed upon use. 2. Alternatively, dilute with a buffer/culture medium containing a carrier protein (either 0.1% BSA, 5% HSA, 10% FBS, or 5% alginate), mix well by pipetting, and ensure that

  • Why is it necessary to add carrier proteins?

    Carrier proteins are commonly added to enhance the stability of recombinant proteins, preventing them from adhering to the walls of the container during freezing or thawing processes. Plastic tubes have a certain adsorptive capacity for proteins, which may lead to difficulty in separating the protein from the tube walls, resulting in a decrease in the actual concentration of the protein in the solution and thus affecting its activity. To minimize such losses, it is recommended to add a commonly used carrier protein solution prior to the long-term storage of recombinant protein products.

  • Carrier protein types and options?

    In cases where the carrier protein is not expected to influence the experimental outcomes, an appropriate carrier protein, such as 0.1% BSA (Bovine Serum Albumin), 5% HSA (Human Serum Albumin), 10% FBS (Fetal Bovine Serum), or 5% trehalose, can be incorpo

  • Reconstitution Calculator

  • Dilution Calculator

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The reconstitution calculator equation

Volume (to add to vial) = Mass (in vial) ÷ Desired Reconstitution Concentration

Volume (to add to vial) = Mass (in vial) ÷ Desired Reconstitution Concentration
= ÷

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)
× = ×
C1   V1   C2   V2

The specific activity calculator equation

Specific Activity (Unit/mg) = 106 ÷ Biological Activity (ED50)

Specific Activity (Unit/mg) = 106 ÷ Biological Activity (ED50)
Unit/mg = 106 ÷ ng/mL

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Product Name:
GltI/YbeJ Protein, E.coli (His-SUMO)
Cat. No.:
HY-P71460
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