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  Key Amino Acid Residues of Ankyrin-Sensitive Phosphatidylethanolamine/Phosphatidylcholine-Lipid Binding Site of beta I-Spectrin

Wolny, M., Grzybek, M., Bok, E., Chorzalska, A., Lenoir, M., Czogalla, A., et al. (2011). Key Amino Acid Residues of Ankyrin-Sensitive Phosphatidylethanolamine/Phosphatidylcholine-Lipid Binding Site of beta I-Spectrin. PLoS ONE, 6(6): e21538.

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 Creators:
Wolny, Marcin, Author
Grzybek, Michal1, Author           
Bok, Ewa, Author
Chorzalska, Anna, Author
Lenoir, Marc, Author
Czogalla, Aleksander, Author
Adamczyk, Klaudia, Author
Kolondra, Adam, Author
Diakowski, Witold, Author
Overduin, Michael, Author
Sikorski, Aleksander F, Author
Affiliations:
1Max Planck Institute of Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              

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 Abstract: It was shown previously that an ankyrin-sensitive, phosphatidylethanolamine/phosphatidylcholine (PE/PC) binding site maps to the N-terminal part of the ankyrin-binding domain of β-spectrin (ankBDn). Here we have identified the amino acid residues within this domain which are responsible for recognizing monolayers and bilayers composed of PE/PC mixtures. In vitro binding studies revealed that a quadruple mutant with substituted hydrophobic residues W1771, L1775, M1778 and W1779 not only failed to effectively bind PE/PC, but its residual PE/PC-binding activity was insensitive to inhibition with ankyrin. Structure prediction and analysis, supported by in vitro experiments, suggests that "opening" of the coiled-coil structure underlies the mechanism of this interaction. Experiments on red blood cells and HeLa cells supported the conclusions derived from the model and in vitro lipid-protein interaction results, and showed the potential physiological role of this binding. We postulate that direct interactions between spectrin ankBDn and PE-rich domains play an important role in stabilizing the structure of the spectrin-based membrane skeleton.

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 Dates: 2011
 Publication Status: Issued
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 Identifiers: eDoc: 585273
Other: 4734
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Title: PLoS ONE
Source Genre: Journal
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Pages: - Volume / Issue: 6 (6) Sequence Number: e21538 Start / End Page: - Identifier: -