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生化/生理作用
半胱胺来自半胱氨酸降解,是最简单的稳定氨基硫醇。 半胱胺用于辅酶A(CoA)的生物和成。半胱胺可用于研究氧化压力和糖基化(转糖化剂)。半胱胺可作为底物,用来研究半胱胺(2--氨基乙硫醇)加双氧酶(ADO)特异性和动力学。
警示用语:
Warning
危险分类
Acute Tox. 4 Oral - Eye Irrit. 2 - Skin Sens. 1 - STOT SE 3
靶器官
Respiratory system
储存分类代码
11 - Combustible Solids
WGK
WGK 3
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
dust mask type N95 (US), Eyeshields, Gloves
历史批次信息供参考:
分析证书(COA)
Lot/Batch Number
Anne-Sophie Racine et al.
Molecular brain, 14(1), 130-130 (2021-08-26)
Somatostatin-expressing interneurons (SOM-INs) are a major subpopulation of GABAergic cells in CA1 hippocampus that receive excitation from pyramidal cells (PCs), and, in turn, provide feedback inhibition onto PC dendrites. Excitatory synapses onto SOM-INs show a Hebbian long-term potentiation (LTP) mediated
Matthieu Lagardère et al.
Scientific reports, 10(1), 19954-19954 (2020-11-19)
Fluorescence live-cell and super-resolution microscopy methods have considerably advanced our understanding of the dynamics and mesoscale organization of macro-molecular complexes that drive cellular functions. However, different imaging techniques can provide quite disparate information about protein motion and organization, owing to
Duncan E Scott et al.
Cell chemical biology, 28(6), 835-847 (2021-03-05)
BRCA2 controls RAD51 recombinase during homologous DNA recombination (HDR) through eight evolutionarily conserved BRC repeats, which individually engage RAD51 via the motif Phe-x-x-Ala. Using structure-guided molecular design, templated on a monomeric thermostable chimera between human RAD51 and archaeal RadA, we
Edward P Harvey et al.
Cell chemical biology, 27(6), 647-656 (2020-05-16)
The BCL-2 family is composed of anti- and pro-apoptotic members that respectively protect or disrupt mitochondrial integrity. Anti-apoptotic overexpression can promote oncogenesis by trapping the BCL-2 homology 3 (BH3) "killer domains" of pro-apoptotic proteins in a surface groove, blocking apoptosis.
Øystein I Helle et al.
Optics express, 27(5), 6700-6710 (2019-03-17)
Optical nanoscopy techniques can image intracellular structures with high specificity at sub-diffraction limited resolution, bridging the resolution gap between optical microscopy and electron microscopy. So far conventional nanoscopy lacks the ability to generate high throughput data, as the imaged region
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