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===Substrate Structure===
===Substrate Structure===
[[Image:App.png|250 px|right|thumb|'''Figure 1. APP fragment conformational change in gamma secretase.''' APP bound to gamma secretase undergoes a conformational change. The free state consists of 2 helices. The N-terminal helix unfolds into a coil and the C-terminal helix unwinds into a β-strand. This β-strand interacts with PS1 and is the site of cleavage by gamma secretase.]]
[[Image:App.png|250 px|right|thumb|'''Figure 1. APP fragment conformational change in gamma secretase.''' APP bound to gamma secretase undergoes a conformational change. The free state consists of 2 helices. The N-terminal helix unfolds into a coil and the C-terminal helix unwinds into a β-strand. This β-strand interacts with PS1 and is the site of cleavage by gamma secretase.]]
GS has multiple substrates, but the substrate of main concern is [https://en.wikipedia.org/wiki/Amyloid_precursor_protein/ APP]. APP is composed of an N-terminal loop and a TM helix. It uses <scene name='83/832945/App_in_gs_general/1'>lateral diffusion</scene> as a mechanism of entry into the enzyme via the lid complex, and once in place, the TM helix is anchored by <scene name='83/832945/Hydrophobic_interactions/1'>hydrogen bonds.</scene> Upon binding to GS, the C-terminal extracellular helix unwinds. The N-terminal end of the TM helix unwinds into a β-strand (Fig. 1). In order to differentiate between different substrates like APP and notch, the β-strand is often the main point of identification for the enzyme. Substrate binding induces a structural change in GS, creating 2 β-strands that form a β-sheet with the substrate. This β-sheet is in close proximity with the active site, and guides the process of catalysis.<ref name="Zhou">PMID:30630874</ref>.
GS has multiple substrates, but the substrate of main concern is [https://en.wikipedia.org/wiki/Amyloid_precursor_protein/ APP]. APP is composed of an N-terminal loop and a trans-membrane helix. It uses <scene name='83/832945/App_in_gs_general/1'>lateral diffusion</scene> as a mechanism of entry into the enzyme via the lid complex, and once in place, the TM helix is anchored by <scene name='83/832945/Hydrophobic_interactions/1'>van der Waals contacts in PS1</scene>. Upon binding to GS, the C-terminal extracellular helix unwinds. The N-terminal end of the TM helix unwinds into a β-strand (Fig. 1). In order to differentiate between different substrates like APP and notch, the β-strand is often the main point of identification for the enzyme. Substrate binding induces a structural change in GS, creating 2 β-strands that form a β-sheet with the substrate. This β-sheet is in close proximity with the active site, and guides the process of catalysis.<ref name="Zhou">PMID:30630874</ref>.





Revision as of 22:50, 20 April 2020

Gamma Secretase

Human Gamma Secretase. This protease is made up of 4 subunits: NCT (blue), PS1 (green), APH-1 (pink), and PEN2 (yellow). (PDB code: 5FN2)

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References


Student Contributors

Layla Wisser

Daniel Mulawa