Three-directional engineering of IsPETase with enhanced protein yield, activity, and durability

  • Lee, Seul Hoo; 
  • Seo, Hogyun; 
  • Hong, Hwaseok; 
  • Park, Jiyoung; 
  • Ki, Dongwoo; 
  • ... Kim, Kyung-Jin; 
  • 외 2명
Citations

WEB OF SCIENCE

31
Citations

SCOPUS

34

초록

The mesophilic PETase from Ideonella sakaiensis (IsPETase) has been shown to exhibit high PET hydrolysis activity, but its low stability limits its industrial applications. Here, we developed a variant, Z1-PETase, with enhanced soluble protein yield and durability while maintaining or improving activity at lower temperatures. The selected Z1-PETase not only exhibited a 20-fold improvement in soluble protein yield compared to the previously engineered IsPETase(S121E/D186H/S242T/N246D) (4p) variant, but also demonstrated a 30% increase in low-temperature activity at 40 degrees C, along with an 11 degrees C increase in its TmD value. The PET depolymerization test across a temperature range low to high (30-70.degrees C) confirmed that Z1-PETase exhibits high accessibility of mesophilic PET hydrolase and rapid depolymerizing rate at higher temperature in accordance with the thermal behaviors of polymer and enzyme. Additionally, structural interpretation indicated that the stabilization of specific active site loops in Z1-PETase contributes to enhanced thermostability without adversely impactingenzymatic activity. In a pH-stat bioreactor, Z1-PETase depolymerized > 90% of both transparent and colored post-consumer PET powders within 24 and 8 h at 40 degrees C and 55. C, respectively, demonstrating that the utility of this IsPETase variant in the bio-recycling of PET.

키워드

PET hydrolase; Protein engineering; Durability; Thermostable; Ideonella sakaiensis; ENZYMATIC-HYDROLYSIS; POLY(ETHYLENE-TEREPHTHALATE); PETASE
제목
Three-directional engineering of IsPETase with enhanced protein yield, activity, and durability
저자
Lee, Seul Hoo; Seo, Hogyun; Hong, Hwaseok; Park, Jiyoung; Ki, Dongwoo; Kim, Mijeong; Kim, Hyung-Joon; Kim, Kyung-Jin
DOI
10.1016/j.jhazmat.2023.132297
발행일
2023-10-05
유형
Article
저널명
Journal of Hazardous Materials
권
459