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Updated: May 5, 2026

Purification and Aggregation of the Amyloid Precursor Protein Intracellular Domain
Published on: August 28, 2012
Structural insights into the aggregation behavior of Murraya koenigii miraculin-like protein below pH 7.5
Purushotham Selvakumar1, Nidhi Sharma, Prabhat Pratap Singh Tomar
1Department of Biotechnology, Indian Institute of Technology Roorkee, Roorkee, 247 667, India.
Abstract:
Murraya koenigii miraculin-like protein (MKMLP) gradually precipitates below pH 7.5. Here, we explore the basis for this aggregation by identifying the aggregation-prone regions via comparative analysis of crystal structures acquired at several pH values. The prediction of aggregation-prone regions showed the presence of four short peptides either in beta sheets or loops on surface of the protein. These peptides were distributed in two patches far apart on the surface. Comparison of crystal structures of MKMLP, determined at 2.2 Å resolution in pH 7.0 and 4.6 in the present study and determined at 2.9 Å in pH 8.0 in an earlier reported study, reveal subtle conformational differences resulting in gradual exposure of aggregation-prone regions. As the pH is lowered, there are alterations in ionic interactions within the protein interactions of the chain with water molecules and exposure of hydrophobic residues. The analysis of symmetry-related molecular interfaces involving one patch revealed shortening of nonpolar intermolecular contacts as the pH decreased. In particular, a decrease in the intermolecular distance between Trp103 of the aggregation-prone peptide WFITTG (103-108) unique to MLPs was observed. These results demonstrated that aggregation occurs due to the cumulative effect of the changes in interactions in two aggregation-prone defined regions.
Insights
Murraya koenigii miraculin-like protein (MKMLP) aggregates below pH 7.5 due to pH-dependent conformational changes. These changes expose aggregation-prone regions, leading to protein precipitation.
Area of Science:
- Biochemistry
- Structural Biology
- Protein Chemistry
Background:
- Murraya koenigii miraculin-like protein (MKMLP) exhibits pH-dependent precipitation below pH 7.5.
- Understanding the structural basis of this aggregation is crucial for its applications.
Purpose of the Study:
- To identify the aggregation-prone regions of MKMLP.
- To elucidate the structural mechanisms underlying MKMLP precipitation at different pH values.
Main Methods:
- Comparative analysis of crystal structures of MKMLP at various pH values (7.0, 4.6, and 8.0).
- Prediction of aggregation-prone regions using computational methods.
- Analysis of conformational differences and intermolecular interactions.
Main Results:
- Four aggregation-prone peptides were identified in beta sheets and loops, distributed in two surface patches.
- Subtle conformational changes at lower pH values lead to the exposure of these aggregation-prone regions.
- Decreased pH alters ionic interactions, water molecule interactions, and exposes hydrophobic residues, shortening nonpolar intermolecular contacts.
Conclusions:
- MKMLP aggregation is driven by cumulative changes in two defined aggregation-prone regions.
- Conformational flexibility and pH-sensitive interactions dictate protein precipitation.
- The study provides structural insights into the aggregation mechanism of MKMLP.
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