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Updated: Dec 10, 2025

Identification of Functional Protein Regions Through Chimeric Protein Construction
Published on: January 8, 2019
Molecular insights into the differential structure-dynamics-stability features of interleukin-8 orthologs:
Krishnakant Gangele1, Khushboo Gulati1, Nidhi Joshi1
1Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee 247667, Uttarakhand, India.
Insights
Canine Interleukin-8 (IL8) exhibits reduced stability and heparin binding compared to human IL8 due to amino acid differences. This molecular divergence impacts its interactions with receptors and GAGs, revealing functional specificity between orthologs.
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- Chemokines, like Interleukin-8 (IL8), are crucial for leukocyte migration via G-protein coupled receptors (GPCRs) and glycosaminoglycans (GAGs).
- Human IL8 structure-function relationships are well-documented, but information on IL8 orthologs and their functional divergence is limited.
Purpose of the Study:
- To investigate the structure-dynamics-stability-function relationship of canine and human IL8 orthologs.
- To understand the molecular basis for functional divergence between IL8 orthologs.
Main Methods:
- Comparative molecular analysis of canine and human IL8 proteins.
- In-silico molecular evolutionary analysis.
- Solution Nuclear Magnetic Resonance (NMR) spectroscopy.
Main Results:
- Canine IL8 shares overall structural similarity with human IL8 but shows differences in backbone dynamics and excited states due to amino acid substitutions.
- Canine IL8 displays attenuated stability and heparin binding affinity compared to human IL8.
- Sequence and structural analyses confirm specific interactions with the CXCR1 receptor and heparin, highlighting functional divergence.
Conclusions:
- Amino acid substitutions in canine IL8 lead to distinct dynamic properties, reduced stability, and altered heparin binding compared to human IL8.
- These molecular differences contribute to functional specificity and divergence between canine and human IL8 orthologs.
- The study provides insights into the evolutionary adaptations of IL8 and its interactions.
Abstract:
Chemokines are a sub-group of chemotactic cytokines that regulate the leukocyte migration by binding to G-protein coupled receptors (GPCRs) and cell surface glycosaminoglycans (GAGs). Interleukin-8 (CXCL8/IL8) is one of the most essential CXC chemokine that has been reported to be involved in various pathophysiological conditions. Structure-function relationships of human IL8 have been studied extensively. However, no such detailed information is available on IL8 orthologs, although they exhibit significant functional divergence. In order to unravel the differential structure-dynamics-stability-function relationship of IL8 orthologs, comparative molecular analysis was performed on canine (laurasians) and human (primates) IL8 proteins using in-silico molecular evolutionary analysis and solution NMR spectroscopy methods. The residue level NMR studies suggested that, although the overall structural architecture of canine IL8 is similar to that of human IL8, systematic differences were observed in their backbone dynamics and low-energy excited states due to amino acid substitutions. Further, these substitutions also resulted in attenuation of stability and heparin binding affinity in the canine IL8 as compared to its human counterpart. Indeed, structural and sequence analysis evidenced for specificity of molecular interactions with cognate receptor (CXCR1) and glycosaminoglycan (heparin), thus providing evidence for a noticeable functional specificity and divergence between the two IL8 orthologs.
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