Sandbox Reserved 1846: Difference between revisions

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=== Catalytic Triad ===
=== Catalytic Triad ===
LCC catalyzes the breakdown of PET using a serine hydrolase mechanism with a catalytic triad of Ser165, His242, and Asp210. (1) The reaction begins when His242 deprotonates Ser165, which activates it as a nucleophile. (2) Ser165 then attacks the carbonyl carbon of an ester bond in the PET polymer  to form a tetrahedral intermediate. (3) This tetrahedral intermediate is stabilized by an oxyanion hole formed by the backbone amides of Met166 and Tyr95. (4) The intermediate collapses; one product is released and an acyl-enzyme intermediate is formed. (5) A water molecule, activated by His242, then attacks the acyl-enzyme. This releases the second product and resets the enzyme’s active site.
LCC catalyzes the breakdown of PET using a serine hydrolase mechanism with a <scene name='10/1075247/Catalytic_triad3_w_label/3'>Catalytic Triad</scene> of Ser165, His242, and Asp210. (1) The reaction begins when His242 deprotonates Ser165, which activates it as a nucleophile. (2) Ser165 then attacks the carbonyl carbon of an ester bond in the PET polymer  to form a tetrahedral intermediate. (3) This tetrahedral intermediate is stabilized by an oxyanion hole formed by the backbone amides of Met166 and Tyr95. (4) The intermediate collapses; one product is released and an acyl-enzyme intermediate is formed. (5) A water molecule, activated by His242, then attacks the acyl-enzyme. This releases the second product and resets the enzyme’s active site.
[[Image:Mech2.png|800 px|right|thumb|Figure 1: LCC mechanism. LCC hydrolyzes PET using a catalytic triad (Ser165, His242, Asp210) to cleave ester bonds via a tetrahedral intermediate.]]
[[Image:Mech2.png|800 px|right|thumb|Figure 1: LCC mechanism. LCC hydrolyzes PET using a catalytic triad (Ser165, His242, Asp210) to cleave ester bonds via a tetrahedral intermediate.]]



Revision as of 22:33, 14 April 2025

This Sandbox is Reserved from March 18 through September 1, 2025 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson and Mark Macbeth at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1828 through Sandbox Reserved 1846.
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Leaf Branch Compost Cutinase

Leaf Branch Compost Cutinase (PDB: 4EB0)

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Student Contributors

Ashley Callaghan Rebecca Hoff Simone McCowan