The chemical class of C9orf5 Inhibitors represents a diverse and sophisticated collection of compounds, each playing a role in the modulation of the protein encoded by the C9orf5 gene. This class underscores a strategic approach in targeting various biochemical pathways and cellular processes to influence protein function, especially in scenarios where direct inhibitors are not clearly defined. The assortment of mechanisms utilized by these compounds highlights the intricate nature of protein regulation and the potential for modulating protein activity through indirect influence on related cellular pathways.
Central to this class are compounds like Melatonin and Theophylline. Melatonin, known for its role in regulating circadian rhythms, also modulates oxidative stress, suggesting a possible impact on C9orf5 activity.
Flavonoids such as Rutin and Luteolin bring another dimension to this class. Rutin's ability to modulate vascular function and inflammation, along with Luteolin's impact on inflammation and cellular signaling, illustrate how natural compounds found in plants can play a role in influencing protein activities like those of C9orf5. These compounds demonstrate the intersection between natural plant-derived substances and their implications in modulating protein function.
Ellagic Acid and Astaxanthin, both found in natural sources, emphasize the significance of dietary components in influencing cellular physiology. Ellagic Acid, found in fruits, and Astaxanthin, a carotenoid, show how compounds that affect oxidative stress and inflammation can have potential implications for proteins involved in similar pathways.
Nicotinamide, a form of vitamin B3, and Alpha-Linolenic Acid, an omega-3 fatty acid, further expand the scope of this class. Nicotinamide's role in modulating cellular metabolism and DNA repair, along with Alpha-Linolenic Acid's impact on inflammation and lipid metabolism, highlight the intricate ways in which different compounds can influence protein functions.
Carnosine and Silymarin represent the potential of compounds to affect protein functions through modulation of protein glycation, oxidative stress, and liver function. These compounds illustrate the importance of targeting specific biochemical pathways for influencing protein activity.
Ginkgo Biloba Extract, known for its effect on blood circulation and oxidative stress, underscores the role of traditional herbal supplements in potentially influencing protein activities like C9orf5.
In summary, the "C9orf5 Inhibitors" class represents a comprehensive and multi-faceted approach to influencing protein activity. This class not only sheds light on the complex regulation of proteins like C9orf5 but also underscores the broader implications of such modulation in cellular physiology. The diversity of mechanisms within this class reflects the intricate nature of cellular functioning and the ongoing efforts to understand and manipulate protein activity for various purposes. As research continues to advance, this class of inhibitors offers valuable insights into protein regulation, opening new avenues for intervention and advancing our understanding of cellular and molecular biology.
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Schermo:
| Nome del prodotto | CAS # | Codice del prodotto | Quantità | Prezzo | CITAZIONI | Valutazione |
|---|---|---|---|---|---|---|
Wortmannin | 19545-26-7 | sc-3505 sc-3505A sc-3505B | 1 mg 5 mg 20 mg | $66.00 $219.00 $417.00 | 97 | |
Un metabolita che agisce come inibitore della fosfoinositide 3-chinasi (PI3K), potenzialmente in grado di influenzare le proteine coinvolte nelle vie di segnalazione. | ||||||
LY 294002 | 154447-36-6 | sc-201426 sc-201426A | 5 mg 25 mg | $121.00 $392.00 | 148 | |
Un inibitore chimico delle PI3K, che può alterare le vie di segnalazione a valle in cui una proteina come C9orf51 può essere coinvolta. | ||||||
Rapamycin | 53123-88-9 | sc-3504 sc-3504A sc-3504B | 1 mg 5 mg 25 mg | $62.00 $155.00 $320.00 | 233 | |
Un immunosoppressore che inibisce mTOR e può influenzare le vie di sintesi proteica che possono coinvolgere C9orf51. | ||||||
Trichostatin A | 58880-19-6 | sc-3511 sc-3511A sc-3511B sc-3511C sc-3511D | 1 mg 5 mg 10 mg 25 mg 50 mg | $149.00 $470.00 $620.00 $1199.00 $2090.00 | 33 | |
Un inibitore dell'istone deacetilasi che può modificare i modelli di espressione genica, potenzialmente influenzando le proteine regolate da meccanismi epigenetici. | ||||||
5-Azacytidine | 320-67-2 | sc-221003 | 500 mg | $280.00 | 4 | |
Un composto che si incorpora nel DNA e nell'RNA e agisce come inibitore della DNA metiltransferasi, alterando eventualmente l'espressione delle proteine. | ||||||
MG-132 [Z-Leu- Leu-Leu-CHO] | 133407-82-6 | sc-201270 sc-201270A sc-201270B | 5 mg 25 mg 100 mg | $56.00 $260.00 $980.00 | 163 | |
Un inibitore del proteasoma che può impedire la degradazione delle proteine, influenzando potenzialmente i livelli di C9orf51. | ||||||
SB 203580 | 152121-47-6 | sc-3533 sc-3533A | 1 mg 5 mg | $88.00 $342.00 | 284 | |
Inibitore della p38 MAP chinasi in grado di modificare l'attivazione di proteine coinvolte nelle vie di risposta allo stress e all'infiammazione. | ||||||
SP600125 | 129-56-6 | sc-200635 sc-200635A | 10 mg 50 mg | $40.00 $150.00 | 257 | |
Un inibitore della c-Jun N-terminal kinase (JNK), che può influenzare le vie di segnalazione e le interazioni proteiche. | ||||||
PD 98059 | 167869-21-8 | sc-3532 sc-3532A | 1 mg 5 mg | $39.00 $90.00 | 212 | |
Un inibitore di MEK in grado di prevenire l'attivazione di MAPK/ERK, con possibili effetti sulle proteine regolate da questa via. | ||||||
Curcumin | 458-37-7 | sc-200509 sc-200509A sc-200509B sc-200509C sc-200509D sc-200509F sc-200509E | 1 g 5 g 25 g 100 g 250 g 1 kg 2.5 kg | $36.00 $68.00 $107.00 $214.00 $234.00 $862.00 $1968.00 | 47 | |
Un composto che può modulare più vie di segnalazione e potrebbe influenzare l'attività di varie proteine. | ||||||