SEE ALSO...
Items 361 to 370 of 453 total
Display:
| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
1,1′-(Decane-1,10-diyl)bis[4-aza-1-azoniabicyclo[2.2.2]octane] Dibromide | 94630-53-2 | sc-287195 | 1 g | $275.00 | ||
1,1'-(Decane-1,10-diyl)bis[4-aza-1-azoniabicyclo[2.2.2]octane] dibromide exhibits intriguing enzymatic characteristics, particularly through its ability to form stable complexes with substrates via ionic interactions. The compound's unique bicyclic structure allows for enhanced molecular flexibility, promoting efficient substrate binding and transition state formation. Its distinctive charge distribution influences reaction kinetics, enabling rapid catalytic cycles and precise control over enzymatic activity in complex biochemical environments. | ||||||
CR8, (R)-Isomer | 294646-77-8 | sc-311306 | 5 mg | $174.00 | ||
CR8, (R)-Isomer exhibits intriguing enzymatic properties characterized by its selective binding affinity and stereospecific interactions with substrates. Its unique chiral configuration enhances catalytic efficiency, allowing for precise modulation of reaction pathways. The compound's ability to stabilize transition states through hydrogen bonding and hydrophobic interactions leads to accelerated reaction kinetics. Additionally, its structural motifs facilitate allosteric regulation, influencing enzyme activity in complex biochemical networks. | ||||||
Trimethylstearylammonium Chloride | 112-03-8 | sc-296635 | 25 g | $55.00 | ||
Trimethylstearylammonium Chloride demonstrates distinctive enzymatic properties by acting as a surfactant that influences protein folding and stability. Its long hydrophobic stearyl chain enhances membrane permeability, promoting interactions with lipid environments. This compound can modulate enzyme activity by altering the microenvironment around active sites, affecting substrate accessibility. Furthermore, its quaternary ammonium nature facilitates specific ionic interactions, which can fine-tune catalytic efficiency and reaction dynamics. | ||||||
Lck Inhibitor III | 1188890-30-3 | sc-311372 | 5 mg | $660.00 | ||
Lck Inhibitor III functions as a potent enzyme modulator, characterized by its ability to disrupt the ATP-binding site of Lck. This compound engages in unique hydrophobic interactions, promoting conformational changes that hinder enzyme activity. Its kinetic behavior showcases non-competitive inhibition, allowing it to influence the enzyme's turnover rate without directly competing with substrate binding. The distinct molecular interactions contribute to its role in regulating cellular signaling cascades. | ||||||
Tetrabutylammonium Dibromoaurate | 50481-01-1 | sc-296481 | 1 g | $1063.00 | ||
Tetrabutylammonium Dibromoaurate acts as a distinctive enzyme facilitator, leveraging its quaternary ammonium configuration to engage in specific molecular interactions. The presence of gold ions introduces unique electronic properties, which can modulate enzyme activity through electron transfer mechanisms. Its hydrophobic tetrabutyl groups enhance compatibility with lipid membranes, potentially influencing enzyme localization and stability, while also affecting the overall reaction pathways and kinetics in biochemical systems. | ||||||
Tetra-n-octylammonium Iodide | 16829-91-7 | sc-296479 | 5 g | $390.00 | ||
Tetra-n-octylammonium iodide acts as a surfactant that can modulate enzyme activity through its unique amphiphilic structure. Its long hydrophobic alkyl chains enhance membrane permeability, facilitating substrate access to active sites. The quaternary ammonium group can interact with charged residues, potentially altering enzyme conformation and kinetics. This compound's ability to stabilize enzyme-substrate complexes may lead to enhanced reaction rates, showcasing its role in biochemical pathways. | ||||||
BYK 49187 | 163120-31-8 | sc-362721 | 1 mg | $105.00 | 1 | |
BYK 49187 functions as an enzyme by promoting specific molecular interactions that enhance catalytic efficiency. Its unique structure allows for effective substrate binding through hydrophobic and electrostatic interactions, optimizing the transition state. The compound's ability to alter reaction kinetics is attributed to its influence on the activation energy barrier, while its conformational flexibility enables it to adapt to various substrates, enhancing overall enzymatic activity. | ||||||
(Ferrocenylmethyl)trimethylammonium Bromide | 106157-30-6 | sc-294593 sc-294593A | 1 g 5 g | $330.00 $1120.00 | ||
(Ferrocenylmethyl)trimethylammonium Bromide acts as a unique enzyme facilitator, utilizing its ferrocenyl group to create strong coordination bonds with metal ions, which can enhance enzyme activity. The trimethylammonium component introduces a positive charge, promoting ionic interactions with negatively charged substrates. This compound's ability to modulate enzyme conformations through hydrophobic interactions and steric effects can significantly influence reaction kinetics and substrate specificity in enzymatic pathways. | ||||||
Tetrabutylammonium Dibromoiodide | 15802-00-3 | sc-296483 sc-296483A | 1 g 10 g | $75.00 $471.00 | ||
Tetrabutylammonium Dibromoiodide acts as a distinctive enzyme facilitator, exhibiting a propensity for forming robust ionic interactions with target molecules. The presence of iodine enhances its reactivity, allowing for unique pathways in enzymatic processes. Its bulky tetrabutyl groups introduce significant steric effects, which can modulate enzyme dynamics and influence substrate accessibility. This compound's unique halogen interactions may also impact the overall reaction rates and mechanisms in biochemical systems. | ||||||
Tetrabutylammonium Dibromochloride | 64531-21-1 | sc-296482 | 25 g | $850.00 | ||
Tetrabutylammonium Dibromochloride functions as a unique enzyme modulator, characterized by its ability to form stable complexes with various substrates. The quaternary ammonium structure promotes ionic interactions, enhancing substrate binding and specificity. Its halide components can influence reaction kinetics by altering the activation energy, while the bulky tetrabutyl groups provide steric hindrance, potentially affecting enzyme conformation and catalytic efficiency in biochemical reactions. | ||||||