

| 货号 | RD448012 |
|---|---|
| 品牌 | abinScience |
| 描述 |
Recombinant Rat HAO1 Protein, N-His (RD448012) expressed in E. coli, spanning Asp61-Ile370. Purity: >90% by SDS-PAGE.
Highlights
|
| 表达系统 | E. coli |
| Accession号 | B0BNF9 |
| 蛋白长度 | Asp61-Ile370 |
| 应用 | ELISA, Immunogen, SDS-PAGE, WB, Bioactivity testing in progress |
| 种属 | Rattus norvegicus (Rat) |
| 性质 | Recombinant |
| 内毒素水平 | Please contact with the lab for this information. |
| 纯度 | >90% as determined by SDS-PAGE. |
| 预测分子量 | 36.16 kDa |
| 状态 | Lyophilized |
| 保存溶液 | Lyophilized from a solution in PBS pH 7.4, 1 mM EDTA, 4% Trehalose, 1% Mannitol. Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA. |
| 重悬 | Reconstitute in sterile water for a stock solution. A copy of datasheet will be provided with the products, please refer to it for details. |
| 运输 | In general, proteins are provided as lyophilized powder/frozen liquid. They are shipped out with dry ice/blue ice unless customers require otherwise. |
| 稳定性和存储 | Use a manual defrost freezer and avoid repeated freeze thaw cycles. Store at 2 to 8°C for frequent use. Store at -20 to -80°C for twelve months from the date of receipt. |
| 别名 | 2-Hydroxyacid oxidase 1, EC:1.1.3.15, EC:1.2.3.5, GO, GOX, GOX1, Glycolate oxidase, Glyoxylate oxidase, HAO1, HAOX1 |
| 背景 | 2-Hydroxyacid oxidase 1 is a ~40 kDa protein. Broad substrate specificity (S)-2-hydroxy-acid oxidase that preferentially oxidizes glycolate. The glyoxylate produced by the oxidation of glycolate can then be utilized by alanine-glyoxylate aminotransferase for the peroxisomal synthesis of glycine; this pathway appears to be an important step for the detoxification of glyoxylate which, if allowed to accumulate, may be metabolized to oxalate with formation of kidney stones. Can also catalyze the oxidation of glyoxylate, and long chain hydroxyacids such as 2-hydroxyhexadecanoate and 2-hydroxyoctanoate. Active in vitro with the artificial electron acceptor 2,6-dichlorophenolindophenol (DCIP), but O2 is believed to be the physiological electron acceptor, leading to the production of H2O2. |
| Note | For research use only |

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