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Pathogenic proline mutation in the linker between spectrin repeats: disease caused by spectrin unfolding.


ABSTRACT: Pathogenic mutations in alpha and beta 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 alpha-betatetramer 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 alpha-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 degrees 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.

SUBMITTER: Johnson CP 

PROVIDER: S-EPMC1852230 | biostudies-literature | 2007 Apr

REPOSITORIES: biostudies-literature

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Pathogenic proline mutation in the linker between spectrin repeats: disease caused by spectrin unfolding.

Johnson Colin P CP   Gaetani Massimiliano M   Ortiz Vanessa V   Bhasin Nishant N   Harper Sandy S   Gallagher Patrick G PG   Speicher David W DW   Discher Dennis E DE  

Blood 20061227 8


Pathogenic mutations in alpha and beta 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 alpha-betatetramer 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 t  ...[more]

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