Gene cloning and molecular characterization of an extracellular poly(L-lactic acid) depolymerase from Amycolatopsis

Emiko Matsuda1, Naoki Abe, Hideyuki Tamakawa

  • 1Laboratory of Applied Microbiology, Department of Microbial Biotechnology, Graduate School of Agricultural Science, Tohoku University, 1-1 Tsutsumi-dori Amamiya-machi, Aoba-ku, Sendai 981-8555, Japan.

Journal of Bacteriology
|October 21, 2005
PubMed

Insights

A novel bacterium, Amycolatopsis sp. strain K104-1, degrades polylactic acid (PLA) using a purified enzyme, PLA depolymerase (PLD). This enzyme, cloned and expressed as recombinant PLD (rPLD), is crucial for PLA biodegradation.

Area of Science:

  • Biochemistry and Molecular Biology
  • Microbiology
  • Polymer Science

Background:

  • Polylactic acid (PLA) is a biodegradable polymer with increasing applications.
  • Efficient biodegradation of PLA requires specific enzymes.
  • Microbial PLA degradation offers a sustainable disposal route.

Purpose of the Study:

  • To isolate and characterize a bacterium capable of degrading PLA.
  • To identify, purify, and characterize the PLA-degrading enzyme (PLA depolymerase, PLD).
  • To elucidate the gene encoding PLD and its recombinant expression and processing.

Main Methods:

  • Isolation and identification of PLA-degrading bacterium (Amycolatopsis sp. strain K104-1).
  • Purification and characterization of PLA depolymerase (PLD).
  • Cloning and expression of the pld gene in Streptomyces lividans, yielding recombinant PLD (rPLD).
  • Biochemical analysis, Western immunoblotting, and site-directed mutagenesis of PLD.
  • Degradation assays of PLA and other polymers using rPLD.

Main Results:

  • PLA-degrading bacterium Amycolatopsis sp. strain K104-1 was identified.
  • PLA depolymerase (PLD) was purified and its gene cloned and expressed.
  • PLD is synthesized as a precursor requiring autocatalytic prosequence cleavage to form the mature enzyme.
  • Key catalytic residues (H74, D111, S197) homologous to eukaryotic serine proteases were identified and confirmed functionally.
  • Recombinant PLD efficiently degraded high molecular weight PLA into lactic acid monomers and oligomers.
  • PLD exhibited binding to other polymers but selectively degraded only PLA.

Conclusions:

  • Amycolatopsis sp. strain K104-1 produces a potent PLA depolymerase (PLD).
  • The mature PLD enzyme is generated through an autocatalytic processing mechanism.
  • The identified catalytic residues are essential for PLD's depolymerase and caseinolytic activities.
  • Recombinant PLD is a promising biocatalyst for PLA biodegradation and recycling.

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