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Strategic Endothelial Cell Tube Formation Assay: Comparing Extracellular Matrix and Growth Factor Reduced Extracellular Matrix
Published on: August 14, 2016
Extracellular matrix components modulate different stages in β2-microglobulin amyloid formation
Núria Benseny-Cases1, Theodoros K Karamanos1, Cody L Hoop2
1From the Astbury Centre for Structural Molecular Biology and School of Molecular and Cellular Biology, Faculty of Biological Sciences, University of Leeds, Leeds LS2 9JT, United Kingdom and.
Abstract:
Amyloid deposition of WT human β2-microglobulin (WT-hβ2m) in the joints of long-term hemodialysis patients is the hallmark of dialysis-related amyloidosis. In vitro, WT-hβ2m does not form amyloid fibrils at physiological pH and temperature unless co-solvents or other reagents are added. Therefore, understanding how fibril formation is initiated and maintained in the joint space is important for elucidating WT-hβ2m aggregation and dialysis-related amyloidosis onset. Here, we investigated the roles of collagen I and the commonly administered anticoagulant, low-molecular-weight (LMW) heparin, in the initiation and subsequent aggregation phases of WT-hβ2m in physiologically relevant conditions. Using thioflavin T fluorescence to study the kinetics of amyloid formation, we analyzed how these two agents affect specific stages of WT-hβ2m assembly. Our results revealed that LMW-heparin strongly promotes WT-hβ2m fibrillogenesis during all stages of aggregation. However, collagen I affected WT-hβ2m amyloid formation in contrasting ways: decreasing the lag time of fibril formation in the presence of LMW-heparin and slowing the rate at higher concentrations. We found that in self-seeded reactions, interaction of collagen I with WT-hβ2m amyloid fibrils attenuates surface-mediated growth of WT-hβ2m fibrils, demonstrating a key role of secondary nucleation in WT-hβ2m amyloid formation. Interestingly, collagen I fibrils did not suppress surface-mediated assembly of WT-hβ2m monomers when cross-seeded with fibrils formed from the N-terminally truncated variant ΔN6-hβ2m. Together, these results provide detailed insights into how collagen I and LMW-heparin impact different stages in the aggregation of WT-hβ2m into amyloid, which lead to dramatic effects on the time course of assembly.
Insights
Low-molecular-weight heparin promotes amyloid formation of wild-type human beta-2 microglobulin (WT-hβ2m), while collagen I has complex effects, influencing secondary nucleation and fibril growth in dialysis-related amyloidosis.
Area of Science:
- Biochemistry
- Medical Research
- Protein Aggregation
Background:
- Dialysis-related amyloidosis is characterized by amyloid deposition of wild-type human beta-2 microglobulin (WT-hβ2m) in joints.
- WT-hβ2m typically does not form amyloid fibrils in vitro under physiological conditions without additives.
- Understanding the initiation and maintenance of WT-hβ2m fibril formation is crucial for addressing dialysis-related amyloidosis.
Purpose of the Study:
- To investigate the roles of collagen I and low-molecular-weight (LMW) heparin in WT-hβ2m amyloid fibril formation.
- To elucidate how these agents affect the initiation and aggregation phases of WT-hβ2m under physiologically relevant conditions.
Main Methods:
- Utilized thioflavin T fluorescence to monitor amyloid formation kinetics.
- Analyzed the impact of collagen I and LMW-heparin on specific stages of WT-hβ2m assembly.
- Employed self-seeding and cross-seeding experiments with WT-hβ2m and a truncated variant.
Main Results:
- LMW-heparin significantly promoted WT-hβ2m fibrillogenesis across all aggregation stages.
- Collagen I decreased lag time with LMW-heparin but slowed aggregation rates at higher concentrations.
- Collagen I interaction with WT-hβ2m fibrils attenuated surface-mediated growth, highlighting the role of secondary nucleation.
Conclusions:
- Collagen I and LMW-heparin differentially modulate WT-hβ2m aggregation pathways.
- These interactions significantly impact the kinetics of amyloid formation relevant to dialysis-related amyloidosis.
- Secondary nucleation plays a key role in WT-hβ2m amyloid formation, influenced by collagen I.
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