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===Background===
===Background===
Gamma secretase (GS) is a transmembrane [https://en.wikipedia.org/wiki/Aspartic_protease aspartatic protease] that catalyzes peptide bond hydrolysis of type I integral membrane proteins such as Notch, amyloid precursor protein (APP), and various other substrates. GS recognizes and catalyzes the cleavage of its substrate into 3 residue segments. Products of initial APP cleavage include the 48-residue peptide Aβ48 or the 49-residue peptide Aβ49. GS then cleaves these peptides into a variety of peptide fragments separated by 3 residues; Aβ49 is cleaved into Aβ46, Aβ43, and Aβ40; Aβ48 is cleaved into Aβ45, Aβ42, and Aβ38. These Aβ products are connected to neurological diseases like [https://en.wikipedia.org/wiki/Alzheimer%27s_disease Alzheimer's disease (AD)] with varying length peptide products showing different disease symptoms. The connection between GS and AD has made a popular drug target. Various inhibitors of GS have been identified but no inhibitors have been clinically approved for treating AD, as the important neurological functions of GS has led to dangerous side effects upon inhibition<ref name="Zhou">PMID:30630874</ref>.
Gamma secretase (GS) is a transmembrane [https://en.wikipedia.org/wiki/Aspartic_protease aspartatic protease] that catalyzes peptide bond hydrolysis of type I integral membrane proteins such as Notch, amyloid precursor protein (APP), and various other substrates. GS recognizes and catalyzes the cleavage of its substrate into 3 residue segments.<ref name="Bolduc" /> Products of initial APP cleavage include the 48-residue peptide Aβ48 or the 49-residue peptide Aβ49. GS then cleaves these peptides into a variety of peptide fragments separated by 3 residues; Aβ49 is cleaved into Aβ46, Aβ43, and Aβ40; Aβ48 is cleaved into Aβ45, Aβ42, and Aβ38. These Aβ products are connected to neurological diseases like [https://en.wikipedia.org/wiki/Alzheimer%27s_disease Alzheimer's disease (AD)] with varying length peptide products showing different disease symptoms. The connection between GS and AD has made a popular drug target. Various inhibitors of GS have been identified but no inhibitors have been clinically approved for treating AD, as the important neurological functions of GS has led to dangerous side effects upon inhibition<ref name="Zhou">PMID:30630874</ref>.


===Overall Structure===
===Overall Structure===
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==Relevance==
==Relevance==
[[Image:Amyloid_plaques.png|250 px|right|thumb|'''Figure 2. Aβ plaque formation overview.''' APP is first converted into a product such as Aβ42, and these peptides then aggregate to form Aβ plaques.]]
[[Image:Amyloid_plaques.png|250 px|right|thumb|'''Figure 2. Aβ plaque formation overview.''' APP is first converted into a product such as Aβ42, and these peptides then aggregate to form Aβ plaques.<ref name="Bachurin">PMID:28084618</ref>]]
GS is connected with the development of AD. In this, Aβ fragment build up leads to  [https://en.wikipedia.org/wiki/Amyloid amyloid]plaques in brain.<ref name="Devendra">PMID:29477076</ref> These plaques then go on to cause severe neural dysfunction over time.  
GS is connected with the development of AD. In this, Aβ fragment build up leads to  [https://en.wikipedia.org/wiki/Amyloid amyloid]plaques in brain.<ref name="Devendra">PMID:29477076</ref> These plaques then go on to cause severe neural dysfunction over time.  



Revision as of 12:18, 21 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