Pathogenic proline mutation in the linker between spectrin repeats: disease caused by spectrin unfolding
Open Access
- 27 December 2006
- journal article
- research article
- Published by American Society of Hematology in Blood
- Vol. 109 (8), 3538-3543
- https://doi.org/10.1182/blood-2006-07-038588
Abstract
Pathogenic mutations in α and β spectrin result in a variety of syndromes, including hereditary elliptocytosis (HE), hereditary pyropoikilocytosis (HPP), and hereditary spherocytosis (HS). Although some mutations clearly lie at sites of interaction, such as the sites of spectrin α-βtetramer formation, a surprising number of HE-causing mutations have been identified within linker regions between distal spectrin repeats. Here we apply solution structural and single molecule methods to the folding and stability of recombinant proteins consisting of the first 5 spectrin repeats of α-spectrin, comparing normal spectrin with a pathogenic linker mutation, Q471P, between repeats R4 and R5. Results show that the linker mutation destabilizes a significant fraction of the 5-repeat construct at 37°C, whereas the WT remains fully folded well above body temperature. In WT protein, helical linkers propagate stability from one repeat to the next, but the mutation disrupts the stabilizing influence of adjacent repeats. The results suggest a molecular mechanism for the high frequency of disease caused by proline mutations in spectrin linkers.Keywords
This publication has 38 references indexed in Scilit:
- Cooperative Folding in a Multi-domain ProteinJournal of Molecular Biology, 2005
- Unfolding a Linker between Helical RepeatsJournal of Molecular Biology, 2005
- Independent Movement, Dimerization and Stability of Tandem Repeats of Chicken Brain α-SpectrinJournal of Molecular Biology, 2004
- Structural Insights into the Stability and Flexibility of Unusual Erythroid Spectrin RepeatsStructure, 2004
- De Novo Prediction of Three-dimensional Structures for Major Protein FamiliesJournal of Molecular Biology, 2002
- All-Atom Empirical Potential for Molecular Modeling and Dynamics Studies of ProteinsThe Journal of Physical Chemistry B, 1998
- Assembly of protein tertiary structures from fragments with similar local sequences using simulated annealing and bayesian scoring functionsJournal of Molecular Biology, 1997
- Reduced surface: An efficient way to compute molecular surfacesBiopolymers, 1996
- Erythrocyte spectrin is comprised of many homologous triple helical segmentsNature, 1984
- Self‐Association of Human SpectrinEuropean Journal of Biochemistry, 1978