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Modular cytokine receptor-targeting chimeras for targeted degradation of cell surface and extracellular proteins
by
Salangsang, Fernando
, Cotton, Adam D.
, Pance, Katarina
, Byrnes, James R.
, Serrano, Juan-Antonio C.
, Steri, Veronica
, Wells, James A.
, Gramespacher, Josef A.
in
631/250/127/98
/ 631/61/51/1568
/ 631/92/469
/ Agriculture
/ Antibodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ Bispecific antibodies
/ Cell Membrane
/ Cell surface
/ Chemokine CXCL12 - chemistry
/ Chimeras
/ CXCL11 protein
/ CXCL12 protein
/ Cytokines
/ Degradation
/ Genetic code
/ Interleukin 2
/ Life Sciences
/ Lysosomes
/ Modularity
/ Proteins
/ Proteolysis
/ Proteolysis Targeting Chimera
/ Receptors
/ Receptors, Cytokine - chemistry
/ Receptors, Cytokine - metabolism
/ Signal Transduction
2023
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Modular cytokine receptor-targeting chimeras for targeted degradation of cell surface and extracellular proteins
by
Salangsang, Fernando
, Cotton, Adam D.
, Pance, Katarina
, Byrnes, James R.
, Serrano, Juan-Antonio C.
, Steri, Veronica
, Wells, James A.
, Gramespacher, Josef A.
in
631/250/127/98
/ 631/61/51/1568
/ 631/92/469
/ Agriculture
/ Antibodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ Bispecific antibodies
/ Cell Membrane
/ Cell surface
/ Chemokine CXCL12 - chemistry
/ Chimeras
/ CXCL11 protein
/ CXCL12 protein
/ Cytokines
/ Degradation
/ Genetic code
/ Interleukin 2
/ Life Sciences
/ Lysosomes
/ Modularity
/ Proteins
/ Proteolysis
/ Proteolysis Targeting Chimera
/ Receptors
/ Receptors, Cytokine - chemistry
/ Receptors, Cytokine - metabolism
/ Signal Transduction
2023
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Modular cytokine receptor-targeting chimeras for targeted degradation of cell surface and extracellular proteins
by
Salangsang, Fernando
, Cotton, Adam D.
, Pance, Katarina
, Byrnes, James R.
, Serrano, Juan-Antonio C.
, Steri, Veronica
, Wells, James A.
, Gramespacher, Josef A.
in
631/250/127/98
/ 631/61/51/1568
/ 631/92/469
/ Agriculture
/ Antibodies
/ Bioinformatics
/ Biomedical and Life Sciences
/ Biomedical Engineering/Biotechnology
/ Biomedicine
/ Biotechnology
/ Bispecific antibodies
/ Cell Membrane
/ Cell surface
/ Chemokine CXCL12 - chemistry
/ Chimeras
/ CXCL11 protein
/ CXCL12 protein
/ Cytokines
/ Degradation
/ Genetic code
/ Interleukin 2
/ Life Sciences
/ Lysosomes
/ Modularity
/ Proteins
/ Proteolysis
/ Proteolysis Targeting Chimera
/ Receptors
/ Receptors, Cytokine - chemistry
/ Receptors, Cytokine - metabolism
/ Signal Transduction
2023
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Modular cytokine receptor-targeting chimeras for targeted degradation of cell surface and extracellular proteins
Journal Article
Modular cytokine receptor-targeting chimeras for targeted degradation of cell surface and extracellular proteins
2023
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Overview
Targeted degradation of cell surface and extracellular proteins via lysosomal delivery is an important means to modulate extracellular biology. However, these approaches have limitations due to lack of modularity, ease of development, restricted tissue targeting and applicability to both cell surface and extracellular proteins. We describe a lysosomal degradation strategy, termed cytokine receptor-targeting chimeras (KineTACs), that addresses these limitations. KineTACs are fully genetically encoded bispecific antibodies consisting of a cytokine arm, which binds its cognate cytokine receptor, and a target-binding arm for the protein of interest. We show that KineTACs containing the cytokine CXCL12 can use the decoy recycling receptor, CXCR7, to target a variety of target proteins to the lysosome for degradation. Additional KineTACs were designed to harness other CXCR7-targeting cytokines, CXCL11 and vMIPII, and the interleukin-2 (IL-2) receptor-targeting cytokine IL-2. Thus, KineTACs represent a general, modular, selective and simple genetically encoded strategy for inducing lysosomal delivery of extracellular and cell surface targets with broad or tissue-specific distribution.
KineTACs are modular bispecific antibodies for degradation of extracellular and cell-surface proteins.
Publisher
Nature Publishing Group US,Nature Publishing Group
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