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- 详细信息
- 文献和实验
- 技术资料
- 免疫原:
FLASH antibody was raised against a synthetic peptide corresponding to amino acids near the carboxy terminus of human FLASH which differ from those of mouse by one amino acid.<br>The immunogen is located within the last 50 amino acids of FLASH.
- 保存条件:
stored at 4℃ for three months and -20℃, stable for up to one year
- 保质期:
1年
- 级别:
科研级别
- 库存:
100
- 供应商:
艾美捷科技
- 宿主:
兔
- 应用范围:
E, WB, ICC, IF
- 抗体英文名:
FLASH Antibody
- 抗体名:
FLASH Antibody
- 规格:
0.02mg
FLASH 抗体,FLASH Antibody,FLASH 抗体,FLASH Antibody
产品名称:FLASH 抗体-FLASH Antibody
产品货号:PSI-2271-0.02mg
产品规格:0.02mg
背景资料:FLASH Antibody: A novel mammalian CED-4 homologous was recently identified and cloned in mouse and human and designated FLASH (for FLICE-associated huge protein). FLASH is involved in Fas induced apoptosis. It is recruited to Fas after the receptor cross-linking. Overexpression of wild type of FLASH facilitates and its dominant negative form inhibits Fas induced apoptosis. FLASH interacts with the DEDs of caspase-8 and FADD through the DED-like domain of FLASH and mediates activation of caspase-8. There are parallels between FLASH and Apaf-1/CED-4 although there are arguments against their structural similarity. FLASH is widely expressed.
保存建议:FLASH 抗体-FLASH Antibody stored at 4℃ for three months and -20℃, stable for up to one year
应用类型:E, WB, ICC, IF
点击:FLASH 抗体-FLASH Antibody查看更详细产品说明,更多应用、储存、价格、货期等信息请垂询艾美捷科技有限公司。更多ProSci公司特色试剂盒、特色抗体以及特色试剂等产品评论,请点击查看艾美捷特色产品中心。
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文献和实验Protein Labeling With FlAsH and ReAsH
. The recently developed Fluorescein Arsenical Hairpin (FlAsH/tetracysteine) binder technology emerged as a promising alternative to FP for protein labeling and cellular localization studies. The combination of a small genetically encoded peptide tag with a small
How does RNAi work? Genetic and biochemical data indicate a possible two-step mechanism for RNA interference (RNAi): an initiation step and an effector step. a | In the first step, input double-stranded (ds
1978年,Sill发明了FLASH色谱,文章发表在J.O.C上,从此FLASH色谱方法得以建立,新的设备也不断涌现,在国内,大连理工大学的彭勤纪教授自国外归国后,引进了该技术并进行了系统综述,发表在《化工进展》上,该文章首次将FLASH色谱译为“快速色谱”。狭义的快速色谱是指用压缩气体产生压力,加速流动相洗脱速度的低压短柱制备液相色谱系统,广义的快速色谱系统是指一切输液方式的中低压液相色谱系统。快速色谱有人还译为“闪式色谱”“FLASH色谱”。 经过20余年的发展
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