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Proteomics

Our Protein Research section covers the spectrum of research products for proteomics.

There are products for Protein Purification, including Protein Extraction, Fractionation, Sample Preparation and Protein Concentration.

Our Protein Analysis products cover Protein Electrophoresis, Western Blot, and Mass Spectrometry.  A wide selection of Protein Labeling and Protein Modification tools are available for protein binding and protein structure studies.

A large selection of Protein Assays are available, including unique Protein Estimation Assays.

HOOK™-NHS-LC-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up to 35 a..
$0.00
HOOK™ NHS-LC-LC-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up to 3..
$0.00
HOOK™ NHS-SS-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up to 35 a..
$0.00
HOOK™ PEG2-Iodoacetyl-Biotin reacts with protein free sulhydryl groups.   Sulfhydryl reactive reagents are more specific and react only with free sulfhydryl residues (-SH or thiol groups). The side chain of the amino acid cysteine is the most common source of free sulfhydryl groups. If..
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HOOK™ PFP-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up to 35 are ..
$0.00
The use of biotin for non-radioactive labeling of proteins and nucleic acids has now become an increasingly popular technique in life science research. Several factors must be considered when coupling a biotin reagent to a protein to ensure a successful reaction. The primary consideration is the sel..
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HOOK™ Sulfo-NHS-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up to 3..
$0.00
Gene/Protein:
HOOK™-Sulfo-NHS-LC-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up t..
$0.00
HOOK™ Sulfo-NHS-LC-LC-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which u..
$0.00
Gene/Protein:
HOOK™ Sulfo-NHS-SS-Biotin reacts with protein primary amines.  Amines, lysine ε-amines and N-terminal α-amines, are the most abundant group in protein molecules and represent the most common target for biotinylation. For example, BSA contains 59 primary amines, of which up t..
$0.00
HyperCarrier™ is normal BSA that has been treated with ethylene diamine, which substitutes anionic carboxyl groups with cationic aminoethyl-amide groups.   Researchers were able to demonstrate that a cationized form of BSA, produced by replacing anionic side chain carboxylic groups with..
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The expression of recombinant proteins is a popular and routinely used technique in protein studies.  The expression of recombinant proteins often has one drawback and that is the recombinant proteins aggregate and form inclusion bodies, especially when expressed at high levels.  The aggre..
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