Journal of Biological Chemistry 2015-11-27

Slow Off-rates and Strong Product Binding Are Required for Processivity and Efficient Degradation of Recalcitrant Chitin by Family 18 Chitinases.

Mihhail Kurašin, Silja Kuusk, Piret Kuusk, Morten Sørlie, Priit Väljamäe

文献索引:J. Biol. Chem. 290 , 29074-85, (2015)

全文:HTML全文

摘要

Processive glycoside hydrolases are the key components of enzymatic machineries that decompose recalcitrant polysaccharides, such as chitin and cellulose. The intrinsic processivity (P(Intr)) of cellulases has been shown to be governed by the rate constant of dissociation from polymer chain (koff). However, the reported koff values of cellulases are strongly dependent on the method used for their measurement. Here, we developed a new method for determining koff, based on measuring the exchange rate of the enzyme between a non-labeled and a (14)C-labeled polymeric substrate. The method was applied to the study of the processive chitinase ChiA from Serratia marcescens. In parallel, ChiA variants with weaker binding of the N-acetylglucosamine unit either in substrate-binding site -3 (ChiA-W167A) or the product-binding site +1 (ChiA-W275A) were studied. Both ChiA variants showed increased off-rates and lower apparent processivity on α-chitin. The rate of the production of insoluble reducing groups on the reduced α-chitin was an order of magnitude higher than koff, suggesting that the enzyme can initiate several processive runs without leaving the substrate. On crystalline chitin, the general activity of the wild type enzyme was higher, and the difference was magnifying with hydrolysis time. On amorphous chitin, the variants clearly outperformed the wild type. A model is proposed whereby strong interactions with polymer in the substrate-binding sites (low off-rates) and strong binding of the product in the product-binding sites (high pushing potential) are required for the removal of obstacles, like disintegration of chitin microfibrils. © 2015 by The American Society for Biochemistry and Molecular Biology, Inc.


相关化合物

  • 硼氢化钠
  • 邻氨基苯甲酸
  • 甲壳素
  • N,N'-二乙酰壳二糖
  • 氰基硼氢钠

相关文献:

A new route for synthesis of silver:gold alloy nanoparticles loaded within phosphatidylcholine liposome structure as an effective antibacterial agent against Pseudomonas aeruginosa.

2015-03-01

[J. Liposome Res. 25(1) , 38-45, (2015)]

Development of Man-rGO for Targeted Eradication of Macrophage Ablation.

2015-09-08

[Mol. Pharm. 12 , 3226-36, (2015)]

Dual-Mode SERS-Fluorescence Immunoassay Using Graphene Quantum Dot Labeling on One-Dimensional Aligned Magnetoplasmonic Nanoparticles.

2015-06-10

[ACS Appl. Mater. Interfaces 7 , 12168-75, (2015)]

One Step Preparation of Reduced Graphene Oxide/Pd-Fe3 O4 @Polypyrrole Composites and Their Application in Catalysis.

2015-09-01

[Chem. Asian J. 10 , 1940-7, (2015)]

Surface modification-induced phase transformation of hexagonal close-packed gold square sheets.

2015-01-01

[Nat. Commun. 6 , 6571, (2015)]

更多文献...