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===Background===
===Background===
Gamma Secretase (GS) is a transmembrane [https://en.wikipedia.org/wiki/Aspartic_protease aspartatic protease]. It catalyzes peptide bond hydrolysis of type I integral membrane proteins such as Notch, amyloid precursor protein (APP), and various other substrates. It recognizes and catalyzes the reaction with its substrate using 3 residue segments. These substrates generate amyloid-β peptides(Aβ). This product is important for various neural processes, and it is well known for its implications with [https://en.wikipedia.org/wiki/Alzheimer%27s_disease Alzheimer's disease (AD).] This has made GS a popular drug target, specifically using gamma secretase inhibitors. However, due to the nature of the enzyme having various neural functions, there are dangerous side effects when it is inhibited.
Gamma Secretase (GS) is a transmembrane [https://en.wikipedia.org/wiki/Aspartic_protease aspartatic protease]. It catalyzes peptide bond hydrolysis of type I integral membrane proteins such as Notch, amyloid precursor protein (APP), and various other substrates. It recognizes and catalyzes the reaction with its substrate using 3 residue segments. These 3 residue segments give rise to specific cleavage points for each substrate. APP is the primary substrate of focus, and it is cleaved to form amyloid-β peptides(Aβ). This product is important for various neural processes, and it is well known for its implications with [https://en.wikipedia.org/wiki/Alzheimer%27s_disease Alzheimer's disease (AD).] This has made GS a popular drug target, specifically using gamma secretase inhibitors. However, due to the nature of the enzyme having various neural functions, there are dangerous side effects when it is inhibited.


===Overall Structure===
===Overall Structure===
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===Lid Complex===
===Lid Complex===
The <scene name='83/832945/Lidremake/1'>lid complex</scene> is the first point of entry and recognition for the substrate. This lid is located within the NCT subunit between Asn55 and Asn435. This lobe of NCT is divided into two separate subunits, being the large and small lobes. Phe287 from the large lobe acts as pivot between them. This <scene name='83/832945/Pivot/1'>Phe is further surrounded by Phe103, Leu171, Phe176, and Ile180</scene> of the small subunit, and these residues compose a greasy pocket for that provides an environment for easy movement. The lid consists of 5 aromatic residues which are highly involved with stabilizing the closed conformation. In particular, this conformation is stabilized by <scene name='83/832945/Trp164scene/1'>Trp164, which interacts with Pro424, Phe448, and the aliphatic side chain of Gln420</scene>. Once the substrate binds and the lid is opened, a charged, hydrophilic pocket is revealed. This pocket contains <scene name='83/832945/Gluandtyr_remake/1'>Glu333 and Tyr337 surrounded by several charged residues</scene>, and is further involved with substrate binding and recognition once the lid is removed<ref name="Bai">PMID:26280335</ref> .
The <scene name='83/832945/Lidremake/1'>lid complex</scene> is the first point of entry and recognition for the substrate. This lid is located within the NCT subunit between Asn55 and Asn435. This lobe of NCT is divided into two separate subunits, being the large and small lobes. Phe287 from the large lobe acts as pivot between them. This <scene name='83/832945/Pivot/1'>Phe is further surrounded by Phe103, Leu171, Phe176, and Ile180</scene> of the small subunit, and these residues compose a greasy pocket for that provides an environment for easy movement. The lid consists of 5 aromatic residues which are highly involved with stabilizing the closed conformation. In particular, this conformation is stabilized by <scene name='83/832945/Trp164scene/1'>Trp164, which interacts with Pro424, Phe448, and the aliphatic side chain of Gln420</scene>. Once the substrate binds and the lid is opened, a charged, hydrophilic pocket is revealed. This pocket contains <scene name='83/832945/Gluandtyr_remake/1'>Glu333 and Tyr337 surrounded by several charged residues</scene>, and is further involved with substrate binding and recognition once the lid is removed. However, this lid complex is relatively far away from the catalytic site of the enzyme. Once the substrate binds, the enzyme undergoes a conformational change to shorten this distance, and the rotation of the large lobe in relation to the small lobe reorients the substrate for cleavage by aligning the pocket in NCT to the active site in PS1 <ref name="Bai">PMID:26280335</ref>.
 





Revision as of 22:32, 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