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==Introduction==
==Introduction==
Leaf branch compost [https://en.wikipedia.org/wiki/Cutinase cutinase] <scene name='10/1075246/4eb0_in_pink/5'>(LCC)</scene> is a versatile enzyme that can break down both natural plant polymers and synthetic plastics.<ref name="Tournier">PMID:32269349</ref><ref name="Sui">PMID:37849919</ref>. Its biological function is to degrade [https://en.wikipedia.org/wiki/Cutin cutin], the waxy biopolymer on plant surfaces that prevents water loss and protects the plant from environmental stressors.<ref name="Lichtenhaler">PMID:9668620</ref> LCC was discovered in a [https://en.wikipedia.org/wiki/Compost compost] heap, where degradative enzymes are often found.<ref name="Ueda">PMID:34160605</ref><ref name="Kolattukudy">PMID:17779010</ref>  
Leaf branch compost [https://en.wikipedia.org/wiki/Cutinase cutinase] <scene name='10/1075246/4eb0_in_pink/5'>(LCC)</scene> is a versatile enzyme that can break down both natural plant polymers and synthetic plastics.<ref name="Tournier">PMID:32269349</ref><ref name="Sui">PMID:37849919</ref> Its biological function is to degrade [https://en.wikipedia.org/wiki/Cutin cutin], the waxy biopolymer on plant surfaces that prevents water loss and protects the plant from environmental stressors.<ref name="Lichtenhaler">PMID:9668620</ref> LCC was discovered in a [https://en.wikipedia.org/wiki/Compost compost] heap, where degradative enzymes are often found.<ref name="Ueda">PMID:34160605</ref><ref name="Kolattukudy">PMID:17779010</ref>  


Because cutinases are members of the α/β-hydrolase superfamily and can hydrolyze polymer esters, LCC has shown high efficiency in hydrolyzing [https://en.wikipedia.org/wiki/Polyethylene_terephthalate polyethylene terephthalate] (PET), which is a widely used plastic that contributes to pollution. Unlike many other PET-degrading enzymes, LCC has a high [https://en.wikipedia.org/wiki/Specificity_constant catalytic efficiency] ''and'' is thermostable, which means it can function at temperatures that are optimal for industrial recycling processes.<ref name="Khairul">PMID:36293501</ref><ref name="Burgin">PMID:38538850</ref> By breaking PET into its monomers, LCC promotes [https://en.wikipedia.org/wiki/Closed-loop_recycling closed-loop recycling] of plastic waste and reduces environmental accumulation.<ref name="Sui"/>
Because cutinases are members of the α/β-hydrolase superfamily and can hydrolyze polymer esters, LCC has shown high efficiency in hydrolyzing [https://en.wikipedia.org/wiki/Polyethylene_terephthalate polyethylene terephthalate] (PET), which is a widely used plastic that contributes to pollution. Unlike many other PET-degrading enzymes, LCC has a high [https://en.wikipedia.org/wiki/Specificity_constant catalytic efficiency] ''and'' is thermostable, which means it can function at temperatures that are optimal for industrial recycling processes.<ref name="Khairul">PMID:36293501</ref><ref name="Burgin">PMID:38538850</ref> By breaking PET into its monomers, LCC promotes [https://en.wikipedia.org/wiki/Closed-loop_recycling closed-loop recycling] of plastic waste and reduces environmental accumulation.<ref name="Sui"/>

Revision as of 20:23, 28 April 2025

Leaf Branch Compost Cutinase

Leaf Branch Compost Cutinase (PDB: 4EB0)

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References

A binding model of the substrate 2-HE(MHET)3 in wild-type LLC (4eb0.pdb) was constructed and refined to mimic the 3D structure illustrated in Figure 2 of reference [1]. The software Maestro (Schrödinger, Inc; version 14.2.118) was used to construct the initial binding structure, followed by energy minimization in the context of the rigid protein that had previously been processed to add/refine all hydrogen atoms. The ligand model was then used without further modification to identify and illustrate the cited active-site residues.

  1. ↑ Cite error: Invalid <ref> tag; no text was provided for refs named Tournier

Student Contributors

Ashley Callaghan, Rebecca Hoff, & Simone McCowan