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===Active Site===
===Active Site===
The <scene name='83/832945/Asp_257_and_asp_385/12'>active site</scene> is located between TM6 and TM7 of the PS1 subunit, which is mainly hydrophilic and disordered. Each of these transmembrane helices has an aspartate residue, <scene name='83/832945/Asp_257_and_asp_385/10'>Asp257 and Asp385</scene>, which are located approximately 10.6 A˚ apart when inactive.<ref name="Bai">PMID:26280335</ref> The PAL sequence of <scene name='83/832945/Asp_257_and_asp_385/11'>Pro433, Ala434, and Leu435</scene> is in close proximity with the catalytic aspartates and is important to substrate recognition. GS becomes active upon substrate binding, when TM2 and TM6 each rotate about 15 degrees to more closely associate. Two  β-strands are induced in PS1, creating an antiparallel β-sheet with the β-strand of APP.(B STRAND SOURCE The β-strand of the substrate interacts via main chain H-bonds with the PAL sequence, stabilizing the active site. Asp257 and Asp385 hydrogen bond to each other and are located 6–7 Å away from the scissile peptide bond of the substrate, allowing catalysis to occur.<ref name="Yang" /> The cleavage site is between the helix and the N-terminal β-strand of APP. GS cleaves in 3 residue segments which is driven by the presence of three amino acid binding pockets in the active site. 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 Thr719 and Leu720 results in Aβ48. Cleavage between Leu720 and Val721 yields Aβ49.<ref name="Zhou">PMID:30630874</ref>
The <scene name='83/832945/Asp_257_and_asp_385/12'>active site</scene> is located between TM6 and TM7 of the PS1 subunit, which is mainly hydrophilic and disordered. Each of these transmembrane helices has an aspartate residue, <scene name='83/832945/Asp_257_and_asp_385/10'>Asp257 and Asp385</scene>, which are located approximately 10.6 A˚ apart when inactive.<ref name="Bai">PMID:26280335</ref> The PAL sequence of <scene name='83/832945/Asp_257_and_asp_385/11'>Pro433, Ala434, and Leu435</scene> is in close proximity with the catalytic aspartates and is important to substrate recognition. GS becomes active upon substrate binding, when TM2 and TM6 each rotate about 15 degrees to more closely associate. Two  β-strands are induced in PS1, creating an <scene name='83/832945/Beta_sheet_complex/1'>antiparallel β-sheet</scene> with the β-strand of APP.(B STRAND SOURCE The β-strand of the substrate interacts via main chain H-bonds with the PAL sequence, stabilizing the active site. Asp257 and Asp385 hydrogen bond to each other and are located 6–7 Å away from the scissile peptide bond of the substrate, allowing catalysis to occur.<ref name="Yang" /> The cleavage site is between the helix and the N-terminal β-strand of APP. GS cleaves in 3 residue segments which is driven by the presence of three amino acid binding pockets in the active site. 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 Thr719 and Leu720 results in Aβ48. Cleavage between Leu720 and Val721 yields Aβ49.<ref name="Zhou">PMID:30630874</ref>





Revision as of 04:31, 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)

Drag the structure with the mouse to rotate

References


Student Contributors

Layla Wisser

Daniel Mulawa