Thermo Fisher 26173 50 mg Sulfo-SDA(Sulfo-NHS-Diaziridine) (sulfosuccinimide 4,4'-Azidovaleramide)
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26173 50 mgSulfo-SDA (Sulfo-NHS-diaziridine) (sulfosuccinimide 4,4'-azidovaleramide)

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Thermo Scientific Pierce Sulfo-SDA (Sulfo-NHS-Diaziridine) activates proven Photochemical compositions based on NHS esters and bisaziridine are combined with conjugates containing amine molecules and virtually any other functional group. The 3.9Å spacer arm separates the two photoreactive groups.

Features of Sulfo-SDA (Sulfo-NHS-Diaziridine):

Water solubility—increased solubility in aqueous solutions through sulfonic acid groups
Heterobifunctional—NHS ester group reacts with primary amines to form covalent amide bonds at pH 7 to 9; When activated with long-wavelength UV light (330-370 nm), Diaziridine (azidopentanoic acid) group can occur with any amino acid side chain or peptide backbone Efficient reaction
Controllable—Use common laboratory UV lamps to activate two-step chemical cross-linking
Easy to use—These cross-linkers work in typical Photostable under laboratory lighting conditions, so there is no need to conduct experiments in the dark
Better than aromatic azides—The bisaziridine photoreactive group is stable under normal lighting Better photostability than the phenyl azide group of traditional photoreactive cross-linkers, and long-wave UV light can activate the bisazidine group more efficiently

Succinimide-bisazide SDA reagents are a new class of cross-linkers that combine proven amine reactivity chemistry with an innovative, highly efficient photochemistry based on bisazidine for coupling amine-containing molecules to virtually any other On the functional group. SDA cross-linkers include six compounds with varying spacer arm lengths that are capable of cleaving cross-linked proteins in the presence or absence of charged groups for membrane permeability. Protein cross-linking is an important technique for understanding protein structure and stabilizing protein-protein interactions, and these SDA reagents expand the efficiency and range of interactions that can be explored with this method.

Typical bifunctional amine or sulfhydryl reactive cross-linkers require specific amino acid groups (such as lysine or cysteine) at the correct distance on both proteins to capture protein interactions. The SDA cross-linker allows specific labeling of one protein through the use of amine-reactive N-hydroxysuccinimide (NHS) esters and then through the use of bisazines attached to any amino acid side chain or peptide backbone of another protein. UV-activated cross-linking achieved with the pyridine moiety circumvents this limitation. Bisaziridine-based photocrosslinkers have better photostability than phenylazide-based photocrosslinkers and are easily activated using long-wavelength UV light (330-370 nm).

A wide range of bisethylene cross-linkers are available
NHS ester bisethylene derivatives (SDA, LC-SDA and SDAD) lack charged groups and Membrane permeable. This property makes it suitable for intracellular and intramembrane coupling. In contrast, Sulfo-SDA, Sulfo-LC-SDA, and Sulfo-SDAD contain negatively charged sulfate groups that increase their water solubility and reduce cell membrane permeability, thereby facilitating their extracellular use. Protein cross-linking. SDAD and Sulfo-SDAD also have disulfide bonds within the spacer that can be cleaved by reducing agents.

• Short (3.9Å) and long (12.5Å) spacer types
• Membrane permeable (NHS) and impermeable (Sulfo-NHS) types
• Non-cleavable and cleavable (disulfide spacer) types

Related products
SDA (NHS-Diaziridine)
Sulfo-LC-SDA (Sulfo- NHS-LC-Diaziridine)
Sulfo-SDAD (Sulfo-NHS-SS- Diaziridine)
For Research Use Only. Not for use in diagnostic procedures.