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A Cell Free Assay System Estimating the Neutralizing Capacity of GM-CSF Antibody using Recombinant Soluble GM-CSF Receptor
Published on: June 27, 2011
Ligand binding domain of granulocyte colony-stimulating factor receptor
O Hiraoka1, H Anaguchi, K Yamasaki
1Protein Engineering Research Institute, Osaka, Japan.
Insights
The study purified the murine granulocyte colony-stimulating factor (G-CSF) receptor
Area of Science:
- Biochemistry
- Structural Biology
- Molecular Biology
Background:
- The amino-terminal domain (BN domain) of the G-CSF receptor is crucial for G-CSF binding.
- Understanding the structure of the BN domain is key to receptor function.
Purpose of the Study:
- To characterize the structure and binding properties of the murine BN domain (mBN).
- To compare the structural features of the mBN domain with other cytokine receptors.
Main Methods:
- Expression of mBN as a fusion protein in E. coli.
- Purification of mBN using Factor Xa digestion.
- Characterization of G-CSF binding using dissociation constant (Kd) determination.
- Structural analysis using Circular Dichroism (CD) and Nuclear Magnetic Resonance (NMR) spectroscopy.
- Disulfide bond mapping via peptide analysis.
Main Results:
- The purified mBN domain specifically bound G-CSF with a Kd of 3-8 x 10(-8) M.
- CD and NMR spectroscopy indicated a GH receptor-like structure with beta-sheets and turns.
- Three disulfide bonds were identified: Cys107-Cys118, Cys153-Cys162, and Cys143-Cys194.
- The mBN domain shares structural similarities with the human GH receptor, but with variations in the third disulfide bond.
- Disruption of disulfide bonds destabilized the mBN domain structure.
Conclusions:
- The murine BN domain of the G-CSF receptor exhibits a GH receptor-like structure.
- Disulfide bonds are essential for maintaining the stable fold of the BN domain.
- These findings provide insights into the biophysical and structural properties of the G-CSF receptor.
Abstract:
The amino-terminal domain of the cytokine receptor homologous region (BN domain; roughly 100 amino acid residues) in the receptor for murine granulocyte colony-stimulating factor (G-CSF) was secreted as a maltose-binding protein fusion into the Escherichia coli periplasm. The murine BN domain (mBN) was prepared from the fusion protein by restriction protease Factor Xa digestion and purified to homogeneity. The purified BN domain specifically and stoichiometrically bound G-CSF, with an apparent dissociation constant (Kd) of 3-8 x 10(-8) M. The CD spectrum of the mBN domain was similar to that of the extracellular region of the human growth hormone (GH) receptor, which is composed of turns and beta-sheets held together by disulfide bonds. Tertiary folding and the beta-sheet of this small domain was confirmed by NMR spectroscopy. Disulfide bonds determined by peptide mapping were in the following locations: Cys107-Cys118, Cys153-Cys162, and Cys143-Cys194. Among them, the first and the second produce small loops (roughly 10 amino acid residues) as found in the human GH receptor. These results suggested that the mBN domain of the G-CSF receptor expressed by E. coli has a GH receptor-like structure. However, the third disulfide bond varied considerably between the G-CSF and GH receptors. Disruption of these disulfide bonds in the BN domain of the G-CSF receptor suggested that all of them are critical for maintaining a stably folded protein. Our results will facilitate understanding of the biophysical and structural properties of this receptor.
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