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- 保存条件:
Powder: -20°C, 3 years; 4°C, 2 years.In solvent: -80°C, 6 months; -20°C, 1 month.
- 库存:
货期:1-2天
- 供应商:
MedChemExpress LLC
- CAS号:
219793-45-0
- 规格:
10 mM * 1 mL/1 mg/5 mg/10 mg/50 mg/100 mg
| 规格: | 10 mM * 1 mL | 产品价格: | ¥660.0 |
|---|---|---|---|
| 规格: | 1 mg | 产品价格: | ¥228.0 |
| 规格: | 5 mg | 产品价格: | ¥600.0 |
| 规格: | 10 mg | 产品价格: | ¥790.0 |
| 规格: | 50 mg | 产品价格: | ¥1380.0 |
| 规格: | 100 mg | 产品价格: | ¥2350.0 |
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BTB06584
CAS No. : 219793-45-0
MCE 国际站:BTB06584
产品活性:BTB06584 是一种选择性的且依赖 IF1 的线粒体 F1Fo-ATPase 抑制剂,且不影响 ATP 的合成。BTB06584 可延迟缺血性细胞死亡。
研究领域:Membrane Transporter/Ion Channel
作用靶点:ATP Synthase
In Vitro: In HL-1 cells, BTB06584 (100 μM) inhibits F1Fo-ATPase activity with no effect on the mitochondrial membrane potential (ΔΨm ) or O2 consumption. BTB06584 (100 μM) pretreatmet protects against ischaemic cell death in HL-1 cells prior to a period of ischaemia. ATP consumption is decreased following inhibition of respiration, and ischaemic cell death is reduced.
BTB06584 efficiency is increased by IF1 overexpression and reduced by silencing the protein.
In Vivo: BTB06584 (1 μM; 24 hours) treatment rescued defective haemoglobin synthesis in zebrafish pinotage (pnt) mutants in which expression of the Atpif1a gene is lost. The concentrations of BTB06584 that restore haemoglobin biosynthesis also alter mitochondrial bioenergetics in living fish.
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文献和实验如产气杆菌,分解枸橼酸盐生成碳酸盐,同时分解培养基的铵盐生成氨,由此使培养基变为碱性,使指示剂溴麝香草酚蓝(BTB)由淡绿转为深蓝,此为枸橼酸盐利用试验阳性。、 2.蛋白质代谢测定 (1)吲哚试验(Indol test):含有色氨酸酶的细菌(如大肠杆菌、变形杆菌等)可分解色氨酸生成吲哚,若加入二甲基氨基苯甲醛,与吲哚结合,形成玫瑰吲哚,呈红色,称吲哚试验阳性。 (2)硫化氢试验:变形杆菌、乙型副伤寒杆菌等能分解含硫氨基酸如胱氨酸、甲硫氨酸等,生成硫化氢。在有醋酸铅或硫酸
,生成红色化合物,称VP阳性。大肠杆菌分解葡萄糖产生丙酮酸,VP阴性。 (3)甲基红试验:产气杆菌使丙酮酸脱羧后形成中性产物,培养液pH>5.4,甲基红指示剂呈桔黄色,为甲基红试验阴性,大肠杆菌分解葡萄糖产生丙酮酸,培养液呈酸性pH (4)枸橼酸盐利用试验(Citrate ultiliazation test):能利用枸橼酸盐作为唯一碳源的细菌如产气杆菌,分解枸橼酸盐生成碳酸盐,同时分解培养基的铵盐生成氨,由此使培养基变为碱性,使指示剂溴麝香草酚蓝(BTB)由淡绿转为深蓝,此为
[资源] 所有的看家基因(housekeeping genes)列表+引物设计服务
NM_004515 Homo sapiens interleukin enhancer binding factor 2, 45kDa (ILF2), mRNA 1000 NM_004651 Homo sapiens ubiquitin specific protease 11 (USP11), mRNA 1950 NM_004888 Homo sapiens ATPase, H+ transporting, lysosomal 13kDa, V1 subunit G isoform
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