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Structural Properties of CXCL4L1 and Its Recognition of the CXCR3 N-Terminus. | LitMetric

AI Article Synopsis

  • CXCL4L1 is a more powerful antiangiogenic ligand than CXCL4, with its effectiveness linked to its ability to bind to receptors CXCR3A and CXCR3B.
  • Using a GB1 protein scaffold, researchers studied the binding characteristics of CXCL4 and CXCL4L1, discovering that CXCL4L1 tends to dissociate into monomers at low concentrations, while CXCL4 remains stable as a tetramer.
  • The binding affinity to CXCR3A is influenced by sulfation of certain residues, but the additional extension in CXCR3B does not enhance binding, suggesting that CXCL4L1's monomerization propensity and binding strength are key to its antiangiogenic properties

Article Abstract

Chemokine CXCL4L1, a homologue of CXCL4, is a more potent antiangiogenic ligand. Its structural property is correlated with the downstream receptor binding. The two chemokines execute their functions by binding the receptors of CXCR3A and CXCR3B. The receptors differ by an extra 51-residue extension in the CXCR3B N-terminus. To understand the binding specificity, a GB1 protein scaffold was used to carry different CXCR3 extracellular elements, and artificial CXCL4 and CXCL4L1 monomers were engineered for the binding assay. We first characterized the molten globule property of CXCL4L1. The structural property causes the CXCL4L1 tetramer to dissociate into monomers in low concentrations, but native CXCL4 adopts a stable tetramer structure in solution. In the titration experiments, the combination of the CXCR3A N-terminus and receptor extracellular loop 2 provided moderate and comparable binding affinities to CXCL4 and CXCL4L1, while sulfation on the CXCR3A N-terminal tyrosine residues provided binding specificity. However, the CXCR3B N-terminal extension did not show significant enhancement in the binding of CXCL4 or CXCL4L1. This result indicates that the tendency to form a chemokine monomer and the binding affinity together contribute the high antiangiogenic activity of CXCL4L1.

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Source
http://dx.doi.org/10.1021/acs.biochem.2c00525DOI Listing

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