Protease: Difference between revisions

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Another class of protease is aspartate proteases.  This family includes [[HIV protease]].  HIV produces its proteins as one long chain; HIV protease cleaves the long protein into functional units. Because it cleaves long proteins, it has a <scene name='HIV-1_protease/2nmz_tunnel/1'>tunnel</scene> to accommodate the long peptide substrate, and the top "flaps" of the protein can <scene name='User:David_Canner/Sandbox_HIV/Hiv_tunnel_morph_flaps/2'>open and close</scene>to allow the substrate in and products out.    Aspartate proteases include <scene name='User:David_Canner/Sandbox_HIV/Catalytic_asp/1'>two aspartate</scene> residues in the active site, which increase the reactivity of an active site <scene name='31/315240/Saquinavir_cat_water/2'>water</scene> molecule to directly cleave the substrate protein.
Another class of protease is aspartate proteases.  This family includes [[HIV protease]].  HIV produces its proteins as one long chain; HIV protease cleaves the long protein into functional units. Because it cleaves long proteins, it has a <scene name='HIV-1_protease/2nmz_tunnel/1'>tunnel</scene> to accommodate the long peptide substrate, and the top "flaps" of the protein can <scene name='User:David_Canner/Sandbox_HIV/Hiv_tunnel_morph_flaps/2'>open and close</scene>to allow the substrate in and products out.    Aspartate proteases include <scene name='User:David_Canner/Sandbox_HIV/Catalytic_asp/1'>two aspartate</scene> residues in the active site, which increase the reactivity of an active site <scene name='31/315240/Saquinavir_cat_water/2'>water</scene> molecule to directly cleave the substrate protein.


A third class of proteases are metalloproteases such as carboxypeptidase.  Carboxypeptidases remove the C terminal amino acids from proteins.  The active site contains a zinc, which is bound to the protein
A third class of proteases are metalloproteases such as carboxypeptidase.  Carboxypeptidases remove the C terminal amino acids from proteins.  The active site contains <scene name='47/478539/Cv/2'>zinc</scene> , which is bound to the protein through interactions with histidine (H), serine (S) aspartic acid (E) residues.





Revision as of 13:42, 20 April 2017

Proteases

Trypsin

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References

Proteopedia Page Contributors and Editors (what is this?)

Ann Taylor, Karsten Theis, Michal Harel