广州伟伯科技有限公司
您的位置:首页 > 产品中心 > 1360651-24-6, Fmoc-L-photo-leucine
产品搜索:

Fmoc-L-photo-leucine

产品编号:4156919
规格:≥98%
CAS NO:1360651-24-6
包装规格:50 MG
产品类别:进口试剂
品牌:Sigma-Aldrich
优惠价:立即咨询
产品价格
产品编号包装单位单价(元)国内现货国外库存询价单
415691950 MG2430
产品别名

1360651-24-6

Fmoc-L-photo-leucine

Photo-crosslinking amino acid

(S)-2-(((9H-Fluoren-9-yl)methoxy)carbonylamino)-3-(3-methyl-3H-diazirin-3-yl)propanoic acid

Photoprobe building block

(S)-2-(Fmoc-amino)-3-(3H-diazirin-3-yl)butanoic acid

Photo-Leu

结构式
基本信息
Empirical Formula【经验(实验)分子式】
C20H19N3O4
Molecular weight
365.38
Application【应用】
Fmoc-L-Photo-Leucine is a diazirine-containing, Fmoc-protected leucine amino acid and multifunctional photo-crosslinker. Its incorporation into peptides or small-molecule probes and tools allows for photoaffinity labeling of cellular targets and protein-protein interactions upon UV light (∼360 nm) irradiation to form a covalent bond. This and other multifunctional probe building blocks will continue to accelerate drug discovery research for probing cellular mechanisms, target ID/validation, and understanding traditionally undruggable targets. An unprotected version is also available as 907278.
Other Notes【其他说明】
Synthesis of a polymyxin derivative for photolabeling studies in the gram-negative bacterium Escherichia coli

Developing diazirine-based chemical probes to identify histone modification ′readers′ and ′erasers′

Protein-Polymer Conjugation via Ligand Affinity and Photoactivation of Glutathione S-Transferase

Fishing for Drug Targets: A Focus on Diazirine Photoaffinity Probe Synthesis

Photo-affinity labeling (PAL) in chemical proteomics: a handy tool to investigate protein-protein interactions (PPIs)
产品性质
Assay【测定】
≥98%
form【形式】
powder
reaction suitability
reaction type: Fmoc solid-phase peptide synthesis
application(s)
peptide synthesis
functional group【官能团】
Fmoc
storage temp.【储存温度】
2-8℃
安全信息
Storage Class Code【储存分类代码】
11 - Combustible Solids
WGK
WGK 3
广州伟伯科技有限公司 版权所有 CopyRight ©2006-2024, All Rights Reserved
工信部备案号:粤ICP备08114744号   Page Run Time: 0.0090