Ankyrin

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== Structural highlights ==
== Structural highlights ==
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Ankyrin contains four domains: the N terminal which contains 24 ankyrin repeats, a spectrin-binding domain, a death domain which binds to proteins involved in apoptosis and a C terminal regulatory domain. The full-length 328-amino acid mouse protein contains an ATP/GTP-binding domain in its N-terminal half and an ankyrin repeat region in its C-terminal half. It also has a nuclear localization signal, 2 protein-destabilizing PEST sequences, and 2 phosphorylation sites. The '''ankyrin repeat''' is a protein-protein interaction motif. It is a 33 residue segment consisting of a helix-loop-helix motif. The long ankyrin repeat in human ankyrin-R contains 12 ankyrin repeats (residues 402-827) and is called D34 region. <scene name='45/454440/Cv/2'>Click here to see 12 ankyrin repeats</scene>.
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Ankyrin contains four domains: the N terminal which contains 24 ankyrin repeats, a spectrin-binding domain, a death domain which binds to proteins involved in apoptosis and a C terminal regulatory domain. The full-length 328-amino acid mouse protein contains an ATP/GTP-binding domain in its N-terminal half and an ankyrin repeat region in its C-terminal half. It also has a nuclear localization signal, 2 protein-destabilizing PEST sequences, and 2 phosphorylation sites. The '''ankyrin repeat''' is a protein-protein interaction motif. It is a 33 residue segment consisting of a helix-loop-helix motif. The long ankyrin repeat in human ankyrin-R contains 12 ankyrin repeats (residues 402-827) and is called D34 region. <scene name='45/454440/Cv/2'>Click here to see 12 ankyrin repeats</scene>. <scene name='45/454440/Cv/3'>One ankyrin repeat</scene> from [[1n0r]].
</StructureSection>
</StructureSection>

Revision as of 12:36, 11 November 2015

Human ankyrin-1 ankyrin repeat region (containing 12 repeats) complex with Cl- (green) and Br- (dark red) ions 1n11

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3D Structures of Ankyrin

Updated on 11-November-2015

Proteopedia Page Contributors and Editors (what is this?)

Michal Harel, Alexander Berchansky, Narendra Kumar Verma

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