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Exo1 | exoglucanase isoenzyme

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  • 询价
  • Agrisera
  • 瑞典
  • AS08 322
  • 2025年11月09日
  • 1 : 10 000 (ELISA), 1 : 5 000 (WB)
  • Rabbit
  • Hordeum vulgare
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    • 详细信息
    • 技术资料
    • 免疫原

      synthetic peptide conjugated to KLH

    • 形态

      Lyophilized

    • 保存条件

      Store lyophilized/reconstituted at -20°C; once rec

    • 克隆性

      Polyclonal

    • 适应物种

      Hordeum vulgare

    • 级别

      分子生物学级

    • 供应商

      Agrisera

    • 宿主

      Rabbit

    • 应用范围

      1 : 10 000 (ELISA), 1 : 5 000 (WB)

    • 靶点

      Family 3 beta-d-glucan glucohydrolases are widely distributed in higher plants. The enzymes catalyse the hydrolytic removal of beta-d-glucosyl residues from non-reducing termini of a range of beta-d-glucans and beta-d-oligoglucosides. Their broad specific

    • 抗体名

      Exo1 | exoglucanase isoenzyme 1

    • 规格

      100 µl

    Family 3 beta-d-glucan glucohydrolases are widely distributed in higher plants. The enzymes catalyse the hydrolytic removal of beta-d-glucosyl residues from non-reducing termini of a range of beta-d-glucans and beta-d-oligoglucosides. Their broad specificity can be rationalized from X-ray crystallographic data obtained from a barley beta-d-glucan glucohydrolase in complex with non-hydrolysable S-glycoside substrate analogues, and from molecular modelling of enzyme-substrate complexes. The glucosyl residue occupying binding subsite -1 is tightly locked into a fixed position through extensive hydrogen bonding with six amino acid residues near the bottom of an active site pocket. In contrast, the glucosyl residue at subsite +1 is located between two tryptophan residues at the entrance of the pocket, where it is less tightly constrained. The relative flexibility of binding at subsite +1, coupled with the projection of the remainder of bound substrate away from the enzyme’s surface, means that the overall active site can accommodate a range of substrates with variable spatial dispositions of adjacent beta-d-glucosyl residues. The broad specificity for glycosidic linkage type would enable the enzyme to perform diverse functions during plant development.

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