Gamma secretase

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== Gamma Secretase Interaction In Alzheimer's Disease ==
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{{BAMBED
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<scene name='81/812869/Matilda_scene_5/1'>Gamma-secretase (GS)</scene> is a multi-subunit protease complex which cleaves many transmembrane proteins; it is known as an intramembrane protease. γ-secretase is highly studied in its cleavage of amyloid precursor protein (APP) releasing beta-amyloid (Aβ peptides) which further oligomerize to form neurofibrillary tangles and plaques in Alzheimer’s disease.<ref name= "mckeon">DOI: 10.1016/B978-012351830-9/50024-X</ref>
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|DATE=December 3, 2020
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|OLDID=3326284
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|BAMBEDDOI=10.1002/bmb.21560
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}}
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__NoTOC__== Gamma Secretase Interaction In Alzheimer's Disease ==
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<StructureSection load='5A63' size='340' side='right' caption='Cryo EM structure of glycosylated Gamma Secretase Complex; Nicastrin (grey), presenilin (green), γ secretase subunit APH-1A (pink), γ secretase subunit PEN-2 (yellow) (PDB code [[5a63]])' scene=''>
<StructureSection load='5A63' size='340' side='right' caption='Cryo EM structure of glycosylated Gamma Secretase Complex; Nicastrin (grey), presenilin (green), γ secretase subunit APH-1A (pink), γ secretase subunit PEN-2 (yellow) (PDB code [[5a63]])' scene=''>
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<scene name='81/812869/Matilda_scene_5/1'>Gamma-secretase (GS)</scene> is a multi-subunit protease complex which cleaves many transmembrane proteins; it is known as an intramembrane protease. γ-secretase is highly studied in its cleavage of amyloid precursor protein (APP) releasing beta-amyloid (Aβ peptides) which further oligomerize to form neurofibrillary tangles and plaques in Alzheimer’s disease.<ref name= "mckeon">DOI:10.1016/B978-012351830-9/50024-X</ref>
== Background ==
== Background ==
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In APP, the cleavage site is between the helix and the N-terminal β-strand.<ref name="Zhou" /> GS can cleave via different pathways, depending on its starting point, but the 2 most commonly used pathways produce Aβ48 and Aβ49.<ref name="Bolduc">PMID:27580372</ref>. Tripeptide cleavage starting between <scene name='83/832945/3_residues_for_cleavage/2'>Thr719 and Leu720</scene> results in Aβ48. Cleavage between <scene name='83/832945/3_residues_for_cleavage/3'>Leu720 and Val721</scene> yields Aβ49. The accumulation of these Aβ peptides has strong implications in Alzheimer's disease.<ref name="Zhou">PMID:30630874</ref>
In APP, the cleavage site is between the helix and the N-terminal β-strand.<ref name="Zhou" /> GS can cleave via different pathways, depending on its starting point, but the 2 most commonly used pathways produce Aβ48 and Aβ49.<ref name="Bolduc">PMID:27580372</ref>. Tripeptide cleavage starting between <scene name='83/832945/3_residues_for_cleavage/2'>Thr719 and Leu720</scene> results in Aβ48. Cleavage between <scene name='83/832945/3_residues_for_cleavage/3'>Leu720 and Val721</scene> yields Aβ49. The accumulation of these Aβ peptides has strong implications in Alzheimer's disease.<ref name="Zhou">PMID:30630874</ref>
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</StructureSection>
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==3D structures of γ secretase==
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==3D structures of γ secretase complex==
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Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
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[[5a63]], [[5fn5]] – hGS – human – Cryo EM<br />
 
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[[4uis]] – hGS + lysozyme – Cryo EM<br />
 
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[[6iyc]] – hGS + amyloid-beta A4 protein – Cryo EM<br />
 
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[[5fn3]], [[5fn4]] – hGS + poly-Ala – Cryo EM<br />
 
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[[6idf]] – hGS + notch 1 – Cryo EM<br />
 
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[[5fn2]] – hGS + drug – Cryo EM<br />
 
[[4r12]] – hGS nicastrin component<br />
[[4r12]] – hGS nicastrin component<br />
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[[2n7q]], [[2n7r]] – hGS nicastrin component transmembrane domain - NMR<br />
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[[2n7q]], [[2n7r]] – hGS nicastrin component transmembrane domain - NMR<br />
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[[5a63]], [[5fn5]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin – human – Cryo EM<br />
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[[4uis]] – hGS + lysozyme – Cryo EM<br />
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[[8im7]], [[8oqy]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin – Cryo EM<br />
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[[6iyc]], [[8k8e]], [[8oqz]], [[8x52]], [[8x53]], [[8x54]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin + amyloid-beta A4 protein – Cryo EM<br />
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[[5fn3]], [[5fn4]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin + poly-Ala – Cryo EM<br />
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[[6idf]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin + notch 1 – Cryo EM<br />
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[[5fn2]], [[8kco]], [[8kcp]], [[8kcs]], [[8kct]], [[8kcu]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin + drug – Cryo EM<br />
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[[6lqg]], [[6lr4]], [[7c9i]], [[7d8x]], [[7y5t]], [[7y5x]], [[7y5z]] – hGS APH-1A+PEN-2 subunits + nicastrin + presenilin + inhibitor – Cryo EM<br />
== References ==
== References ==
<references/>
<references/>
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</StructureSection>
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==Student Contributors==
==Student Contributors==
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[[Category:Topic Page]]
[[Category:Topic Page]]
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[[Category:Featured in BAMBED]]

Current revision

This page, as it appeared on December 3, 2020, was featured in this article in the journal Biochemistry and Molecular Biology Education.

Gamma Secretase Interaction In Alzheimer's Disease

Cryo EM structure of glycosylated Gamma Secretase Complex; Nicastrin (grey), presenilin (green), γ secretase subunit APH-1A (pink), γ secretase subunit PEN-2 (yellow) (PDB code 5a63)

Drag the structure with the mouse to rotate


Student Contributors

Daniel Mulawa

Layla Wisser

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