Temperature-dependent structural changes in xylanase II from Trichoderma longibrachiatum.
Carbohydr Res
; 541: 109173, 2024 Jul.
Article
en En
| MEDLINE
| ID: mdl-38833820
ABSTRACT
Endo-ß-1,4-xylanases degrade heteroxylans that constitute the lignocellulosic plant cell wall. This enzyme is widely used in the food, paper, textile, and biorefinery industries. Temperature affects the optimum activity of xylanase and is an important factor in its application. Various structural analyses of xylanase have been performed, but its structural influence by temperature is not fully elucidated. To better understand the structural influence of xylanase due to temperature, the crystal structure of xylanase II from Trichoderma longibrachiatum (TloXynII) at room and cryogenic temperatures was determined at 2.1 and 1.9 Å resolution, respectively. The room-temperature structure of TloXynII (TloXynIIRT) showed a B-factor value 2.09 times higher than that of the cryogenic-temperature structure of TloXynII (TloXynIICryo). Subtle movement of the catalytic and substrate binding residues was observed between TloXynIIRT and TloXynIICryo. In TloXynIIRT, the thumb domain exhibited high flexibility, whereas in TloXynIICryo, the finger domain exhibited high flexibility. The substrate binding cleft of TloXynIIRT was narrower than that of TloXynIICryo, indicating a distinct finger domain conformation. Numerous water molecule networks were observed in the substrate binding cleft of TloXynIICryo, whereas only a few water molecules were observed in TloXynIIRT. These structural analyses expand our understanding of the temperature-dependent conformational changes in xylanase.
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1
Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Temperatura
/
Trichoderma
/
Endo-1,4-beta Xilanasas
Idioma:
En
Revista:
Carbohydr Res
Año:
2024
Tipo del documento:
Article
Pais de publicación:
Países Bajos