scholarly journals Interplay of disordered and ordered regions of a human small heat shock protein yields an ensemble of “quasi-ordered” states

2019 ◽  
Author(s):  
Amanda F. Clouser ◽  
Hannah E.R. Baughman ◽  
Benjamin Basanta ◽  
Miklos Guttman ◽  
Abhinav Nath ◽  
...  

ABSTRACTSmall heat shock proteins (sHPSs) are nature’s “first responders” to cellular stress, interacting with affected proteins to prevent their aggregation. Little is known about sHSP structure beyond its structured α-crystallin domain (ACD), which is flanked by disordered regions. In the human sHSP HSPB1, the disordered N-terminal region (NTR) represents nearly 50% of the sequence. Here, we present a hybrid approach involving NMR, hydrogen-deuterium exchange mass spectrometry, and modeling to provide the first residue-level characterization of the NTR. The results support a model in which multiple grooves on the ACD interact with specific NTR regions, creating an ensemble of “quasi-ordered” NTR states that can give rise to the known heterogeneity and plasticity of HSPB1. Phosphorylation-dependent interactions inform a mechanism by which HSPB1 is activated under stress conditions. Additionally, we examine the effects of disease-associated NTR mutations on HSPB1 structure and dynamics, leveraging our emerging structural insights.

eLife ◽  
2019 ◽  
Vol 8 ◽  
Author(s):  
Amanda F Clouser ◽  
Hannah ER Baughman ◽  
Benjamin Basanta ◽  
Miklos Guttman ◽  
Abhinav Nath ◽  
...  

Small heat shock proteins (sHSPs) are nature’s ‘first responders’ to cellular stress, interacting with affected proteins to prevent their aggregation. Little is known about sHSP structure beyond its structured α-crystallin domain (ACD), which is flanked by disordered regions. In the human sHSP HSPB1, the disordered N-terminal region (NTR) represents nearly 50% of the sequence. Here, we present a hybrid approach involving NMR, hydrogen-deuterium exchange mass spectrometry, and modeling to provide the first residue-level characterization of the NTR. The results support a model in which multiple grooves on the ACD interact with specific NTR regions, creating an ensemble of ‘quasi-ordered’ NTR states that can give rise to the known heterogeneity and plasticity of HSPB1. Phosphorylation-dependent interactions inform a mechanism by which HSPB1 is activated under stress conditions. Additionally, we examine the effects of disease-associated NTR mutations on HSPB1 structure and dynamics, leveraging our emerging structural insights.


Biochemistry ◽  
2013 ◽  
Vol 52 (32) ◽  
pp. 5491-5502 ◽  
Author(s):  
James J. Marsh ◽  
Henry S. Guan ◽  
Sheng Li ◽  
Peter G. Chiles ◽  
Danny Tran ◽  
...  

ChemBioChem ◽  
2012 ◽  
Vol 13 (15) ◽  
pp. 2243-2250 ◽  
Author(s):  
Liangjie Tang ◽  
Stephen J. Coales ◽  
Jeffrey A. Morrow ◽  
Tim Edmunds ◽  
Yoshitomo Hamuro

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