User:Milica Nenadovich/Sandbox 1

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==Structure==
==Structure==
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[[Image: LOOOOPS.png|200 px|right|thumb|'''Figure 3.''' Unresolved residues of "loop left" structure (PDB: 8H7C).]]
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[[Image: Loops.png|200 px|right|thumb|'''Figure 3.''' Unresolved residues of "loop left" structure (PDB: 8H7C).]]
====Alpha-Helix Bundle====
====Alpha-Helix Bundle====
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The crystallization of the ''de novo'' protein, WA20, revealed a an <scene name='10/1075192/Overlay_rotate/2'>alpha-helix bundle</scene> homodimer structure, which served as the foundation for the design of Syn-F4 <ref name="Arai"/>. While structurally similar, Syn-F4 features a novel active site characterized by the presence of a <scene name='10/1075192/Central_hole_lone/2'>central hole</scene> <ref name="Kurihara"/>. Despite its simple appearance, the structure is highly coordinated and efficient due to this active site. [[Image:LoopLeftLoopRight.png|350 px|left|thumb|'''Figure 4.''' A schematic representing the differential conformations of the "loop-left" and "loop-right" Syn-F4 structures (Image created in BioRender.com).]] The symmetry of the four-helix bundle, combined with the configuration of the central hole, facilitates catalytic activity by effectively cleaving the ester bond in ferric enterobactin <ref name="Kurihara"/>.
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The crystallization of the ''de novo'' protein, WA20, revealed a an <scene name='10/1075192/Overlay_rotate/2'>alpha-helix bundle</scene> homodimer structure, which served as the foundation for the design of Syn-F4 <ref name="Arai"/>. While structurally similar, Syn-F4 features a novel active site characterized by the presence of a <scene name='10/1075192/Central_hole_lone/2'>central hole</scene> <ref name="Kurihara"/>. Despite its simple appearance, the structure is highly coordinated and efficient due to this active site. [[Image:LOOOOPS.png|350 px|left|thumb|'''Figure 4.''' A schematic representing the differential conformations of the "loop-left" and "loop-right" Syn-F4 structures (Image created in BioRender.com).]] The symmetry of the four-helix bundle, combined with the configuration of the central hole, facilitates catalytic activity by effectively cleaving the ester bond in ferric enterobactin <ref name="Kurihara"/>.
====Stabilizing Factors====
====Stabilizing Factors====

Revision as of 15:53, 22 April 2025

Syn-F4, a de novo Ferric Enterobactin Esterase

Syn-F4 (PDB: 8H7C). A de novo ferric enterobactin esterase.

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  • Milica Nenadovich
  • Reesha Bhagat

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Milica Nenadovich

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