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PubMed · 16342952

Partitioning conformational intermediates between competing refolding and aggregation pathways: insights into transthyretin amyloid disease.

Abstract

Amyloid diseases are caused by the aberrant assembly of a protein in the extracellular space. Folded proteins are not amyloidogenic; however, the native state is generally in equilibrium with a minor population of unfolded or partially folded aggregation-competent conformers outside of the cell. Understanding how the partially unfolded conformers kinetically partition between the competing refolding and aggregation pathways provides insight into how misfolding, which occurs continuously, becomes pathogenic. Towards this end, we have previously studied the amyloidogenicity of transthyretin (TTR), a human beta-sheet-rich homotetrameric protein that must undergo rate-limiting tetramer dissociation and partial monomer unfolding to misassemble into amyloid and other aggregates. We demonstrate herein that TTR homotetramers reassemble by an unusual monomer-dimer-trimer-tetramer (MDRT) pathway. Therefore, the rate of every step in the reassembly pathway is dependent on the concentration of folded TTR monomer. Partitioning soluble TTR monomers between the reassembly pathway and the aggregation pathway should therefore depend on the relative concentrations of aggregates and assembly intermediates. Aggregate clearance is envisioned to play an important role in the partitioning of protein in vivo, where partitioning to the aggregation pathway becomes increasingly favorable under conditions where the concentration of aggregates is increased because aggregate clearance is slow relative to the rate of aggregation. This shift from efficient to inefficient aggregate clearance could occur with aging, offering an explanation for the age-associated nature of these neurodegenerative diseases.

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BibTeXRIS

R Luke Wiseman, Evan T Powers, Jeffery W Kelly. 2005-12-20. Partitioning conformational intermediates between competing refolding and aggregation pathways: insights into transthyretin amyloid disease.. https://doi.org/10.1021/bi0511484

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Schistosoma-induced amyloidosis in hamsters is gender-dependent.

BACKGROUND: A high serum level of female protein (FP), found to be a constituent of Syrian hamster amyloid was associated with enhanced amyloidosis. In this work, we studied the sex-limited factors in the induction of amyloidosis in Syrian hamsters infected with either Schistosoma mansoni or S. hematobium cercariae. METHODS: Hamsters were infected with different species of schistosome cercariae and sacrificed after different time periods of infection. Kidney and liver specimens were processed in paraffin, stained with Congo-red and examined by ordinary light and polarized light microscopy. RESULTS: Statistical analysis showed a significant difference in intensity of kidney and liver amyloid deposits (P<0.002 & <0.007 respectively) between females and male hamsters with extensive deposits in the former. Amyloid deposits were correlated significantly to the duration of infection (P<0.001) than the load of worm recovered. CONCLUSION: From this study, we conclude that, in hamster model, Schistosoma-induced amyloidosis is enhanced in females than male hamsters. This may be due to the high serum level of FP that is normally detected in females. As an experimental model for schistosomal nephropathy, we recommend to use male hamsters instead of females to minimize the effect of amyloid deposits, which may mask other pathological changes associated with schistosomal infection.

Amyloidosis↗