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Glutathione can occur in reduced (GSH), oxidized (GSSG), or in mixed disulfide forms and is ubiquitous in multiple biological systems serving as the major thiol-disulfide redox buffer of the cell. GSSG is the oxidized form of GSH . It can be reduced back to GSH through the NADPH-dependent enzyme glutathione reductase. GSSG functions as a hydrogen acceptor in the enzymatic determination of NADP+ and NADPH and can be a proximal donor in S-glutathionylation post translational modifications. The ratio of reduced glutathione to oxidized glutathione within cells is often used as an indicator of oxidative stress, with higher concentrations of GSSG predicting increased oxidative stress.
Glutathione can occur in reduced (GSH), oxidized (GSSG), or in mixed disulfide forms and is ubiquitous in multiple biological systems serving as the major thiol-disulfide redox buffer of the cell. GSSG is the oxidized form of GSH . It can be reduced back to GSH through the NADPH-dependent enzyme glutathione reductase. GSSG functions as a hydrogen acceptor in the enzymatic determination of NADP+ and NADPH and can be a proximal donor in S-glutathionylation post translational modifications. The ratio of reduced glutathione to oxidized glutathione within cells is often used as an indicator of oxidative stress, with higher concentrations of GSSG predicting increased oxidative stress.
| 规格 | 价格 | 库存 | 数量 |
|---|---|---|---|
| 100 mg | ¥ 2,210 | 5日内发货 | |
| 500 mg | ¥ 6,230 | 5日内发货 |
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| 产品描述 | Glutathione can occur in reduced (GSH), oxidized (GSSG), or in mixed disulfide forms and is ubiquitous in multiple biological systems serving as the major thiol-disulfide redox buffer of the cell. GSSG is the oxidized form of GSH . It can be reduced back to GSH through the NADPH-dependent enzyme glutathione reductase. GSSG functions as a hydrogen acceptor in the enzymatic determination of NADP+ and NADPH and can be a proximal donor in S-glutathionylation post translational modifications. The ratio of reduced glutathione to oxidized glutathione within cells is often used as an indicator of oxidative stress, with higher concentrations of GSSG predicting increased oxidative stress. |
| 分子量 | 656.6 |
| 分子式 | C20H30N6Na2O12S2 |
| CAS No. | 103239-24-3 |
| Smiles | [Na].[Na].N[C@@H](CCC(=O)N[C@@H](CSSC[C@H](NC(=O)CC[C@H](N)C(O)=O)C(=O)NCC(O)=O)C(=O)NCC(O)=O)C(O)=OjcExt:v:0:0,1:0 |
| 密度 | no data available |
| Sequence | H-gGlu-Cys(1)-Gly-OH.H-gGlu-Cys(1)-Gly-OH.2Na+ |
| Sequence Short | ECGECG |
| 存储 | Shipping with blue ice/Shipping at ambient temperature. 实际储存温度请以COA为准 | ||||||||||||||||||||
| 溶解度信息 | PBS (pH 7.2): 10 mg/mL (15.23 mM), Sonication is recommended. | ||||||||||||||||||||
溶液配制表 | |||||||||||||||||||||
PBS (pH 7.2)
该溶液配制表仅适用于固体产品。对于液体产品,请根据标明的浓度或密度计算稀释方案。 | |||||||||||||||||||||
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