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Spike RBD Products

The coronavirus Spike protein receptor binding domain (RBD) resides within the S1 subunit and is responsible for binding to host cell receptors and initiating viral infection. Past coronaviruses SARS and MERS along with the global pandemic caused by SARS-CoV-2 have sparked great interest and scientific discovery leading to new vaccines and drug development. At the heart of coronavirus biology lies the Spike protein and its receptor-binding domain.

The Spike RBD is a 26 kDa domain consisting of a twisted five-stranded antiparallel beta sheet and sits at the apex of each Spike protein monomer. The Spike RBD is flexible thanks to a hinge region that allows for conformational changes that expose (up or open conformation) or hide (down or closed conformation) its receptor contacts. For SARS-CoV-2, the Spike RBD recognizes and tightly binds to the human receptor ACE-2. In the closely related MERS coronavirus, human DPPIV/CD26 acts as the receptor.

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286 results for "Spike RBD" in Products

Spike RBD Products

The coronavirus Spike protein receptor binding domain (RBD) resides within the S1 subunit and is responsible for binding to host cell receptors and initiating viral infection. Past coronaviruses SARS and MERS along with the global pandemic caused by SARS-CoV-2 have sparked great interest and scientific discovery leading to new vaccines and drug development. At the heart of coronavirus biology lies the Spike protein and its receptor-binding domain.

The Spike RBD is a 26 kDa domain consisting of a twisted five-stranded antiparallel beta sheet and sits at the apex of each Spike protein monomer. The Spike RBD is flexible thanks to a hinge region that allows for conformational changes that expose (up or open conformation) or hide (down or closed conformation) its receptor contacts. For SARS-CoV-2, the Spike RBD recognizes and tightly binds to the human receptor ACE-2. In the closely related MERS coronavirus, human DPPIV/CD26 acts as the receptor.

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Catalog #: FAB10827R
Applications: Flow
Reactivity: SARS-CoV-2
Applications: ELISA
Applications: ELISA, Block
Reactivity: SARS-CoV-2

Detects SARS-CoV-2 Spike RBD and Spike S1 in sandwich ELISAs

Applications: ELISA, Block
Reactivity: SARS-CoV-2

Detects SARS-CoV-2 Spike RBD and Spike S1 in sandwich ELISAs

Applications: ELISA, Block
Reactivity: SARS-CoV-2

Detects SARS-CoV-2 Spike RBD and Spike S1 in sandwich ELISAs

Applications: BA

Delta Variant (India) L452R T478K

Applications: BA

HEK293 Expressed, High ACE-2 Binding

Applications: IHC, Block
Reactivity: SARS-CoV-2

Recombinant Monoclonal Antibody. His-tagged VHH domain.

Applications: WB
Reactivity: SARS-CoV-2
Applications: IHC, Block
Reactivity: SARS-CoV-2
Applications: BA

HEK293 Expressed

Applications: BA
Applications: IHC, Block
Reactivity: SARS-CoV-2

Recombinant Monoclonal Antibody. His-tagged VHH domain.

Applications: BA

Tn5 Insect Cell Expressed, High ACE-2 Binding Analyzed by SEC-MALS

Applications: BA

Biotinylated via Amines

Applications: WB, Simple Western
Reactivity: SARS-CoV-2
Applications: BA

Mammalian CHO Cell Expressed, High ACE-2 Binding

Applications: WB, Flow
Reactivity: SARS-CoV-2

Recombinant Monoclonal Antibody.

Applications: Flow, ICC
Reactivity: SARS-CoV-2
Applications: WB, Flow, ICC
Reactivity: SARS-CoV-2
Applications: BA, BA

HEK293 Expressed, High ACE-2 Binding

Applications: BA

HEK293 Expressed. Trimerization domain.

Applications: BA

N501Y Mutation found in UK, South African, and Brazilian Variants

Applications: BA

N501Y Mutation found in Alpha, Beta, and Gamma Variants

Applications: Block, ICC, Neut
Reactivity: SARS-CoV-2
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