AI Article Synopsis

  • Extracellular lipase (SrL), a multifunctional enzyme, was studied using site-directed mutagenesis to explore the roles of certain amino acids in its active site.
  • Mutations of specific residues (Ser10, Asn82, His216) resulted in a loss of lipase activity, while altering Asn213 led to enhanced activity with specific substrates.
  • Molecular dynamics simulations revealed important interactions for enzymatic activity and identified new potential substrate binding site components, highlighting the complexity of enzyme-substrate interactions.

Article Abstract

extracellular lipase (SrL) is a multifunctional hydrolase belonging to the SGNH family. Here site-directed mutagenesis (SDM) was used for the first time to investigate the functional significance of the conserved amino acid residues Ser10, Gly54, Asn82, Asn213, and His216 in the active site of SrL. The hydrolytic activity of SrL variants was determined using -nitrophenyl (NP) esters with C4, C8, and C16 fatty acid chains. Mutation of Ser10, Asn82, or His216, but not Gly54, to Ala abolished lipase activity for all substrates. In contrast, the Asn213Ala variant showed increased enzymatic activity for C8 and C16 NP esters. Molecular dynamics (MD) simulations showed that the interactions between the long alkyl chain substrate (C16) and Ser10 and Asn82 were strongest in Asn213Ala SrL. In addition to Asn82, Gly54, and Ser10, several new constituents of the substrate binding site were recognized (Lys28, Ser53, Thr89, and Glu212), as well as strong electrostatic interactions between Lys28 and Glu212. In addition to the H bonds Ser10-His216 and His216-Ser214, Tyr11 interacted strongly with Ser10 and His216 in all complexes with an active enzyme form. A previously unknown strong H bond between the catalytically important Asn82 and Gly54 was uncovered, which stabilizes the substrate in an orientation suitable for the enzyme reaction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10779480PMC
http://dx.doi.org/10.3390/ijms25010595DOI Listing

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