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- 详细信息
- 询价记录
- 文献和实验
- 技术资料
- 保质期:
1年
- 英文名:
Xyloglucanase (GH5) (Paenibacillus sp.)
- 库存:
请咨询
- 供应商:
上海经科化学科技有限公司
- 保存条件:
2-8℃
- 规格:
3000U
木葡聚糖酶Xyloglucanase GH74介绍:
中文名称:木葡聚糖酶GH74[类芽孢杆菌]
英文名称:Xyloglucanase (GH74) (Paenibacillus sp.)
货号:E-XGP74
规格:200 Units at 70oC
价格:3446元
High purity recombinant Xyloglucanase (GH5) (Paenibacillus sp.) for use in research, biochemical enzyme assays and in vitro diagnostic analysis.
| Content: | 3,000 Units |
| Shipping Temperature: | Ambient |
| Storage Temperature: | 2-8oC |
| Formulation: | In 3.2 M ammonium sulphate |
| Physical Form: | Suspension |
| Stability: | > 1 year under recommended storage conditions |
| Enzyme Activity: | Xyloglucanase |
| EC Number: | 3.2.1.151 |
| CAZy Family: | GH5 |
| CAS Number: | 76901-10-5 |
| Synonyms: | xyloglucan-specific endo-beta-1,4-glucanase; [(1→6)-alpha-D-xylo]-(1→4)-beta-D-glucan glucanohydrolase |
| Source: | Paenibacillus sp. |
| Molecular Weight: | 42,300 |
| Concentration: | Supplied at ~ 1,000 U/mL |
| Expression: | Recombinant from Paenibacillus sp. |
| Specificity: | endo-hydrolysis of 1,4-β-D-glucosidic linkages in xyloglucan. |
| Specific Activity: | ~ 78 U/mg (40oC, pH 5.5 on tamarind xyloglucan) |
| Unit Definition: | One Unit of xyloglucanase activity is defined as the amount of enzyme required to release one µmole of glucose reducing-sugar equivalents per minute from xyloglucan (5 mg/mL) in sodium acetate buffer (100 mM), pH 5.5 at 40oC. |
| Temperature Optima: | 50oC |
| pH Optima: | 5.5 |
| Application examples: | Applications in carbohydrate and biofuels research. |
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- 内容
- 询问日期
文献和实验1.Transcellular progression of infection threads in Medicago truncatula roots is controlled by locally confined cell wall modifications.
Su, C., Zhang, G., Rodriguez-Franco, M., Wietschorke, J., Liang, P., Yang, W., Uhler, L., Li, X. & Ott, T. (2022). BioRxiv, 2022-07.
2.Structures of the xyloglucans in the monocotyledon family Araceae (aroids).
Hsiung, S. Y., Li, J., Imre, B., Kao, M. R., Liao, H. C., Wang, D., Chen, C. C., Liang, P. H., Harris, P. J. & Hsieh, Y. S. (2023). Planta, 257(2), 39.
3.Conservation of endo-glucanase 16 (EG16) activity across highly divergent plant lineages.
Behar, H., Tamura, K., Wagner, E. R., Cosgrove, D. J., & Brumer, H. (2021). Biochemical Journal, 478(16), 3063-3078.
4.Ancient origin of fucosylated xyloglucan in charophycean green algae.
Mikkelsen, M. D., Harholt, J., Westereng, B., Domozych, D., Fry, S. C., Johansen, I. E., Fangel, J. U., Lęzyk, M., Tao Feng, T., Nancke, L., Mikkelsen, J. D., William G. T. Willats, W. G. T. & Ulvskov , P. (2021). Communications Biology, 4(1), 1-12.
5.Configuration of active site segments in lytic polysaccharide monooxygenases steers oxidative xyloglucan degradation.
Sun, P., Laurent, C. V., Scheiblbrandner, S., Frommhagen, M., Kouzounis, D., Sanders, M. G., van Berkel, W. J. H., Ludwig, R. & Kabel, M. A. (2020). Biotechnology for Biofuels, 13, 1-19.









