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Characterization of a Thermostable and Surfactant-Tolerant Chondroitinase B from a Marine Bacterium Microbulbifer sp. ALW1.
Mou, Mingjing; Hu, Qingsong; Li, Hebin; Long, Liufei; Li, Zhipeng; Du, Xiping; Jiang, Zedong; Ni, Hui; Zhu, Yanbing.
Affiliation
  • Mou M; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Hu Q; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Li H; Department of Pharmacy, Xiamen Medical College, Xiamen 361023, China.
  • Long L; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Li Z; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Du X; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Jiang Z; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Ni H; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
  • Zhu Y; College of Ocean Food and Biological Engineering, Jimei University, Xiamen 361021, China.
Int J Mol Sci ; 23(9)2022 Apr 30.
Article in En | MEDLINE | ID: mdl-35563396
Chondroitinase plays an important role in structural and functional studies of chondroitin sulfate (CS). In this study, a new member of chondroitinase B of PL6 family, namely ChSase B6, was cloned from marine bacterium Microbulbifer sp. ALW1 and subjected to enzymatic and structural characterization. The recombinant ChSase B6 showed optimum activity at 40 °C and pH 8.0, with enzyme kinetic parameters of Km and Vmax against chondroitin sulfate B (CSB) to be 7.85 µg/mL and 1.21 U/mg, respectively. ChSase B6 demonstrated thermostability under 60 °C for 2 h with about 50% residual activity and good pH stability under 4.0-10.0 for 1 h with above 60% residual activity. In addition, ChSase B6 displayed excellent stability against the surfactants including Tween-20, Tween-80, Trion X-100, and CTAB. The degradation products of ChSase B6-treated CSB exhibited improved antioxidant ability as a hydroxyl radical scavenger. Structural analysis and site-directed mutagenesis suggested that the conserved residues Lys248 and Arg269 were important for the activity of ChSase B6. Characterization, structure, and molecular dynamics simulation of ChSase B6 provided a guide for further tailoring for its industrial application for chondroitin sulfate bioresource development.
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Full text: 1 Database: MEDLINE Main subject: Surface-Active Agents / Alteromonadaceae Language: En Journal: Int J Mol Sci Year: 2022 Type: Article Affiliation country: China

Full text: 1 Database: MEDLINE Main subject: Surface-Active Agents / Alteromonadaceae Language: En Journal: Int J Mol Sci Year: 2022 Type: Article Affiliation country: China