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Function within Disorder: Small heat shock proteins use different functional regions to chaperone tau aggregation
Mia Cervantes1,2, Maria K Janowska1, Lisa M Tuttle1
1Department of Biochemistry, School of Medicine, University of Washington, Seattle, Washington, USA.
Small heat shock proteins (sHSPs) like HSPB1 and HSPB5 prevent tau aggregation in neurodegenerative diseases. They use distinct mechanisms, regulated by stress and phosphorylation, to maintain protein homeostasis.
Area of Science:
- Neurobiology
- Molecular Biology
- Protein Biochemistry
Background:
- Tau aggregation is a hallmark of neurodegenerative tauopathies.
- Small heat shock proteins (sHSPs) are crucial for protein homeostasis and preventing aggregation.
- HSPB1 (Hsp27) and HSPB5 (αB-crystallin) are brain-expressed sHSPs that interact with tau.
Purpose of the Study:
- To elucidate the distinct mechanisms by which HSPB1 and HSPB5 inhibit tau aggregation.
- To identify the specific regions within sHSPs responsible for their anti-aggregation activity.
- To understand how cellular stress and post-translational modifications regulate sHSP function in tauopathies.
Main Methods:
- In vitro assays to monitor tau aggregation.
- Construction and testing of chimeric HSPB1/HSPB5 proteins with swapped N-terminal regions.
- Analysis of functional regions within the disordered N-terminal domains (NTRs).
Main Results:
- HSPB1 and HSPB5 delay tau aggregation via distinct mechanisms controlled by their NTRs.
- HSPB1 inhibits tau aggregation under normal conditions; HSPB5 requires stress activation (e.g., acidosis).
- Specific functional motifs within the NTRs modulate chaperone activity and client engagement.
Conclusions:
- Disordered N-terminal regions of sHSPs contain critical functional motifs for tau aggregation inhibition.
- sHSP activity is finely tuned by cellular stress and post-translational modifications like phosphorylation.
- These findings offer insights into therapeutic strategies targeting sHSPs for tauopathies.
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